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| Nutropin About Nutropin DESCRIPTION: Nutropin® [somatropin (rDNA origin) for injection] is a human growth hormone (hGH) produced by recombinant DNA technology. Nutropin has 191 amino acid residues and a molecular weight of 22,125 daltons. The amino acid sequence of the product is identical to that of pituitary-derived human growth hormone. The protein is synthesized by a specific laboratory strain of E. coli as a precursor consisting of the rhGH molecule preceded by the secretion signal from an E. coli protein. This precursor is directed to the plasma membrane of the cell. The signal sequence is removed and the native protein is secreted into the periplasm so that the protein is folded appropriately as it is synthesized. Nutropin is a highly purified preparation. Biological potency is determined using a cell proliferation bioassay. Nutropin is a sterile, white, lyophilized powder intended for subcutaneous administration after reconstitution with Bacteriostatic Water for Injection, USP (benzyl alcohol preserved). The reconstituted product is nearly isotonic at a concentration of 5 mg/mL growth hormone (GH) and has a pH of approximately 7.4. Each 5 mg Nutropin vial contains 5 mg (approximately 15 IU) somatropin, lyophilized with 45 mg mannitol, 1.7 mg sodium phosphates (0.4 mg sodium phosphate monobasic and 1.3 mg sodium phosphate dibasic), and 1.7 mg glycine. Each 10 mg Nutropin vial contains 10 mg (approximately 30 IU) somatropin, lyophilized with 90 mg mannitol, 3.4 mg sodium phosphates (0.8 mg sodium phosphate monobasic and 2.6 mg sodium phosphate dibasic), and 3.4 mg glycine. Bacteriostatic Water for Injection, USP, is sterile water containing 0.9 percent benzyl alcohol per mL as an antimicrobial preservative packaged in a multidose vial. The diluent pH is 4.5-7.0. -------------------------------------------------------------------------------- CLINICAL PHARMACOLOGY General In vitro and in vivo preclinical and clinical testing have demonstrated that Nutropin is therapeutically equivalent to pituitary-derived human GH (hGH). Pediatric patients who lack adequate endogenous GH secretion, patients with chronic renal insufficiency, and patients with Turner syndrome that were treated with Nutropin resulted in an increase in growth rate and an increase in insulin-like growth factor-I (IGF-I) levels similar to that seen with pituitary-derived hGH. Actions that have been demonstrated for Nutropin, somatrem, and/or pituitary-derived hGH include: Tissue Growth --1) Skeletal Growth: GH stimulates skeletal growth in pediatric patients with growth failure due to a lack of adequate secretion of endogenous GH or secondary to chronic renal insufficiency and in patients with Turner syndrome. Skeletal growth is accomplished at the epiphyseal plates at the ends of a growing bone. Growth and metabolism of epiphyseal plate cells are directly stimulated by GH and one of its mediators, IGF-I. Serum levels of IGF-I are low in children and adolescents who are GH deficient, but increase during treatment with GH. In pediatric patients, new bone is formed at the epiphyses in response to GH and IGF-I. This results in linear growth until these growth plates fuse at the end of puberty. 2) Cell Growth: Treatment with hGH results in an increase in both the number and the size of skeletal muscle cells. 3) Organ Growth: GH influences the size of internal organs, including kidneys, and increases red cell mass. Treatment of hypophysectomized or genetic dwarf rats with GH results in organ growth that is proportional to the overall body growth. In normal rats subjected to nephrectomy-induced uremia, GH promoted skeletal and body growth. Protein Metabolism --Linear growth is facilitated in part by GH-stimulated protein synthesis. This is reflected by nitrogen retention as demonstrated by a decline in urinary nitrogen excretion and blood urea nitrogen during GH therapy. Carbohydrate Metabolism --GH is a modulator of carbohydrate metabolism. For example, patients with inadequate secretion of GH sometimes experience fasting hypoglycemia that is improved by treatment with GH. GH therapy may decrease insulin sensitivity. Untreated patients with chronic renal insufficiency and Turner syndrome have an increased incidence of glucose intolerance. Administration of hGH to adults or children resulted in increases in serum fasting and postprandial insulin levels, more commonly in overweight or obese individuals. In addition, mean fasting and postprandial glucose and hemoglobin A 1c levels remained in the normal range. Lipid Metabolism --In GH-deficient patients, administration of GH resulted in lipid mobilization, reduction in body fat stores, increased plasma fatty acids, and decreased plasma cholesterol levels. Mineral Metabolism --The retention of total body potassium in response to GH administration apparently results from cellular growth. Serum levels of inorganic phosphorus may increase slightly in patients with inadequate secretion of endogenous GH, chronic renal insufficiency, or patients with Turner syndrome during GH therapy due to metabolic activity associated with bone growth as well as increased tubular reabsorption of phosphate by the kidney. Serum calcium is not significantly altered in these patients. Sodium retention also occurs. Adults with childhood-onset GH deficiency show low bone mineral density (BMD). (See PRECAUTIONS: Laboratory Tests .) Connective Tissue Metabolism --GH stimulates the synthesis of chondroitin sulfate and collagen as well as the urinary excretion of hydroxyproline. Pharmacokinetics Subcutaneous Absorption--The absolute bioavailability of recombinant human growth hormone (rhGH) after subcutaneous administration in healthy adult males has been determined to be 81±20%. The mean terminal t 1/2 after subcutaneous administration is significantly longer than that seen after intravenous administration (2.1±0.43 hr vs. 19.5±3.1 min) indicating that the subcutaneous absorption of the compound is slow and rate-limiting. Distribution--Animal studies with rhGH showed that GH localizes to highly perfused organs, particularly the liver and kidney. The volume of distribution at steady state for rhGH in healthy adult males is about 50 mL/kg body weight, approximating the serum volume. Metabolism--Both the liver and kidney have been shown to be important metabolizing organs for GH. Animal studies suggest that the kidney is the dominant organ of clearance. GH is filtered at the glomerulus and reabsorbed in the proximal tubules. It is then cleaved within renal cells into its constituent amino acids, which return to the systemic circulation. Elimination--The mean terminal t 1/2 after intravenous administration of rhGH in healthy adult males is estimated to be 19.5±3.1 minutes. Clearance of rhGH after intravenous administration in healthy adults and children is reported to be in the range of 116-174 mL/hr/kg. Bioequivalence of Formulations--Nutropin has been determined to be bioequivalent to Nutropin AQ® [somatropin (rDNA origin) injection] based on the statistical evaluation of AUC and C max . Special Populations Pediatric--Available literature data suggest that rhGH clearances are similar in adults and children. Gender--No data are available for exogenously administered rhGH. Available data for methionyl recombinant GH, pituitary-derived GH, and endogenous GH suggest no consistent gender-based differences in GH clearance. Geriatrics--Limited published data suggest that the plasma clearance and average steady-state plasma concentration of rhGH may not be different between young and elderly patients. Race--Reported values for half-lives for endogenous GH in normal adult black males are not different from observed values for normal adult white males. No data for other races are available. Growth Hormone Deficiency (GHD)--Reported values for clearance of rhGH in adults and children with GHD range 138-245 mL/hr/kg and are similar to those observed in healthy adults and children. Mean terminal t 1/2 values following intravenous and subcutaneous administration in adult and pediatric GHD patients are also similar to those observed in healthy adult males. Renal Insufficiency--Children and adults with chronic renal failure (CRF) and end-stage renal disease (ESRD) tend to have decreased clearance compared to normals. Endogenous GH production may also increase in some individuals with ESRD. However, no rhGH accumulation has been reported in children with CRF or ESRD dosed with current regimens. Turner Syndrome--No pharmacokinetic data are available for exogenously administered rhGH. However, reported half-lives, absorption, and elimination rates for endogenous GH in this population are similar to the ranges observed for normal subjects and GHD populations. Hepatic Insufficiency--A reduction in rhGH clearance has been noted in patients with severe liver dysfunction. The clinical significance of this decrease is unknown. Summary of Nutropin Pharmacokinetic Parameters in Healthy Adult Males 0.1 mg (approximately 0.3 IU a )/kg SC C max (µg/L) T max (hr) t 1/2 (hr) (AUC 0-(infinity) µg·hr/L) CL/F SC (mL/[hr·kg]) MEAN b 67.2 6.2 2.1 643 158 CV% 29 37 20 12 12 Abbreviations: C max =maximum concentration; t 1/2 =half life; AUC 0-(infinity) =area under the curve; CL/F SC =systemic clearance; F SC =subcutaneous bioavailability (not determined); CV%=coefficient of variation in %; SC=subcutaneous a Based on current International Standard of 3 IU=1 mg b n=36 Efficacy Studies Effects of Nutropin on Growth Failure Due to Chronic Renal Insufficiency (CRI) Two multicenter, randomized, controlled clinical trials were conducted to determine whether treatment with Nutropin prior to renal transplantation in patients with chronic renal insufficiency could improve their growth rates and height deficits. One study was a double-blind, placebo-controlled trial and the other was an open-label, randomized trial. The dose of Nutropin in both controlled studies was 0.05 mg/kg/day (0.35 mg/kg/wk) administered daily by subcutaneous injection. Combining the data from those patients completing two years in the two controlled studies results in 62 patients treated with Nutropin and 28 patients in the control groups (either placebo-treated or untreated). The mean first year growth rate was 10.8 cm/yr for Nutropin-treated patients, compared with a mean growth rate of 6.5 cm/yr for placebo/untreated controls (p<0.00005). The mean second year growth rate was 7.8 cm/yr for the Nutropin-treated group, compared with 5.5 cm/yr for controls (p<0.00005). There was a significant increase in mean height standard deviation (SD) score in the Nutropin group (-2.9 at baseline to -1.5 at Month 24, n=62) but no significant change in the controls (-2.8 at baseline to -2.9 at Month 24, n=28). The mean third year growth rate of 7.6 cm/yr in the Nutropin-treated patients (n=27) suggests that Nutropin stimulates growth beyond two years. However, there are no control data for the third year because control patients crossed over to Nutropin treatment after two years of participation. The gains in height were accompanied by appropriate advancement of skeletal age. These data demonstrate that Nutropin therapy improves growth rate and corrects the acquired height deficit associated with chronic renal insufficiency. Currently there are insufficient data regarding the benefit of treatment beyond three years. Although predicted final height was improved during Nutropin therapy, the effect of Nutropin on final adult height remains to be determined. Post-Transplant Growth The North American Pediatric Renal Transplant Cooperative Study (NAPRTCS) has reported data for growth post-transplant in children who did not receive GH. The average change in height SD score during the initial two years post-transplant was 0.18 (n=300, J Pediatr. 1993;122:397-402). Controlled studies of GH treatment for the short stature associated with CRI were not designed to compare the growth of treated or untreated patients after they received renal transplants. However, growth data are available from a small number of patients who have been followed for at least 11 months. Of the 7 control patients, 4 increased their height SD score and 3 had either no significant change or a decrease in height SD score. The 13 patients treated with Nutropin prior to transplant had either no significant change or an increase in height SD score after transplantation, indicating that the individual gains achieved with GH therapy prior to transplant were maintained after transplantation. The differences in the height deficit narrowed between the treated and untreated groups in the post-transplant period. Turner Syndrome One long-term, randomized, open-label, multicenter, concurrently controlled study, two long-term, open-label, multicenter, historically controlled studies and one long-term, randomized, dose-response study were conducted to evaluate the efficacy of GH for the treatment of girls with short stature due to Turner syndrome. In the randomized study GDCT, comparing GH-treated patients to a concurrent control group who received no GH, the GH-treated patients who received a dose of 0.3 mg/kg/week given 6 times per week from a mean age of 11.7 years for a mean duration of 4.7 years attained a mean near final height of 146.0 cm (n=27) as compared to the control group who attained a near final height of 142.1 cm (n=19). By analysis of covariance, the effect of GH therapy was a mean height increase of 5.4 cm (p=0.001). In two of the studies (85-023 and 85-044), the effect of long-term GH treatment (0.375 mg/kg/week given either 3 times per week or daily) on adult height was determined by comparing adult heights in the treated patients with those of age-matched historical controls with Turner syndrome who never received any growth-promoting therapy. In Study 85-023, estrogen treatment was delayed until patients were at least age 14. GH therapy resulted in a mean adult height gain of 7.4 cm (mean duration of GH therapy of 7.6 years) vs. matched historical controls by analysis of covariance. In Study 85-044, patients treated with early GH therapy were randomized to receive estrogen-replacement therapy (conjugated estrogens, 0.3 mg escalating to 0.625 mg daily) at either age 12 or 15 years. Compared with matched historical controls, early GH therapy (mean duration of GH therapy 5.6 years) combined with estrogen replacement at age 12 years resulted in an adult height gain of 5.9 cm (n=26), whereas girls who initiated estrogen at age 15 years (mean duration of GH therapy 6.1 years) had a mean adult height gain of 8.3 cm (n=29). Patients who initiated GH therapy after age 11 (mean age 12.7 years; mean duration of GH therapy 3.8 years) had a mean adult height gain of 5.0 cm (n=51). Thus, in both studies, 85-023 and 85-044, the greatest improvement in adult height was observed in patients who received early GH treatment and estrogen after age 14 years. In a randomized, blinded, dose-response study, GDCI, patients were treated from a mean age of 11.1 years for a mean duration of 5.3 years with a weekly dose of either 0.27 mg/kg or 0.36 mg/kg administered 3 or 6 times weekly. The mean near final height of patients receiving growth hormone was 148.7 cm (n=31). This represents a mean gain in adult height of approximately 5 cm compared with previous observations of untreated Turner syndrome girls. In these studies, Turner syndrome patients (n=181) treated to final adult height achieved statistically significant average estimated adult height gains ranging 5.0-8.3 cm. Study/Group Study Design a N at Adult Height GH Age (yr) Estrogen Age (yr) GH Duration (yr) Adult Height Gain (cm) b GDCT RCT 27 11.7 13 4.7 5.4 85-023 MHT 17 9.1 15.2 7.6 7.4 85-044: A * MHT 29 9.4 15.0 6.1 8.3 B * 26 9.6 12.3 5.6 5.9 C * 51 12.7 13.7 3.8 5.0 GDCI RDT 31 11.1 8-13.5 5.3 ~5 c a RCT: randomized controlled trial; MHT: matched historical controlled trial; RDT: randomized dose-response trial. b Analysis of covariance vs. controls c Compared with historical data *A: GH age <11 yr, estrogen age 15 yr B: GH age <11 yr, estrogen age 12 yr C: GH age >11 yr, estrogen at Month 12 Adult Growth Hormone Deficiency (GHD) Two multicenter, double-blind, placebo-controlled clinical trials were conducted using Nutropin in GH-deficient adults. One study was conducted in subjects with adult-onset GHD, mean age 48.3 years, n=166, at doses of 0.0125 or 0.00625 mg/kg/day; doses of 0.025 mg/kg/day were not tolerated in these subjects. A second study was conducted in previously treated subjects with childhood-onset GHD, mean age 23.8 years, n=64, at randomly assigned doses of 0.025 or 0.0125 mg/kg/day. The studies were designed to assess the effects of replacement therapy with GH on body composition. Significant changes from baseline to Month 12 of treatment in body composition (i.e., total body % fat mass, trunk % fat mass, and total body % lean mass by DEXA scan) were seen in all Nutropin groups in both studies (0.0001 for change from baseline and vs. placebo), whereas no statistically significant changes were seen in either of the placebo groups. In the adult-onset study, the Nutropin group improved mean total body fat from 35.0% to 31.5%, mean trunk fat from 33.9% to 29.5%, and mean lean body mass from 62.2% to 65.7%, whereas the placebo group had mean changes of 0.2% or less (p=not significant). Due to the possible effect of GH-induced fluid retention on DEXA measurements of lean body mass, DEXA scans were repeated approximately 3 weeks after completion of therapy; mean % lean body mass in the Nutropin group was 65.0%, a change of 2.8% from baseline, compared with a change of 0.4% in the placebo group (p0.0001 between groups). In the childhood-onset study, the high-dose Nutropin group improved mean total body fat from 38.4% to 32.1%, mean trunk fat from 36.7% to 29.0%, and mean lean body mass from 59.1% to 65.5%; the low-dose Nutropin group improved mean total body fat from 37.1% to 31.3%, mean trunk fat from 37.9% to 30.6%, and mean lean body mass from 60.0% to 66.0%; the placebo group had mean changes of 0.6% or less (p=not significant). Mean Changes from Baseline to Month 12 in Proportion of Fat and Lean by DEXA for Studies M0431g and M0381g (Adult-onset and Childhood-onset GHD, respectively) M0431g M0381g Proportion Placebo (n=62) Nutropin (n=63) Between- groups t-test p-value Placebo (n=13) Nutropin 0.0125 mg/kg/day (n=15) Nutropin 0.025 mg/kg/day (n=15) Placebo vs. pooled Nutropin t-test p-value Total body percent fat Baseline 36.8 35.0 0.38 35.0 37.1 38.4 0.45 Month 12 36.8 31.5 35.2 31.3 32.1 Baseline to Month 12 change -0.1 -3.6 0.0001 +0.2 -5.8 -6.3 0.0001 Post-washout 36.4 32.2 N/A N/A N/A Baseline to post-washout change -0.4 -2.8 0.0001 N/A N/A N/A Trunk percent fat Baseline 35.3 33.9 0.50 32.5 37.9 36.7 0.23 Month 12 35.4 29.5 33.1 30.6 29.0 Baseline to Month 12 change 0.0 -4.3 0.0001 +0.6 -7.3 -7.6 0.0001 Post-washout 34.9 30.5 N/A N/A N/A Baseline to post-washout change -0.3 -3.4 N/A N/A N/A Total body percent lean Baseline 60.4 62.2 0.37 62.0 60.0 59.1 0.48 Month 12 60.5 65.7 61.8 66.0 65.5 Baseline to Month 12 change +0.2 +3.6 0.0001 -0.2 +6.0 +6.4 0.0001 Post-washout 60.9 65.0 N/A N/A N/A Baseline to post-washout change +0.4 +2.8 0.0001 N/A N/A N/A In the adult-onset study, significant decreases from baseline to Month 12 in LDL cholesterol and LDL:HDL ratio were seen in the Nutropin group compared to the placebo group, 0.02; there were no statistically significant between-group differences in change from baseline to Month 12 in total cholesterol, HDL cholesterol, or triglycerides. In the childhood-onset study, significant decreases from baseline to Month 12 in total cholesterol, LDL cholesterol, and LDL:HDL ratio were seen in the high-dose Nutropin group only, compared to the placebo group, 0.05. There were no statistically significant between-group differences in HDL cholesterol or triglycerides from baseline to Month 12. Muscle strength, physical endurance, and quality of life measurements were not markedly abnormal at baseline, and no statistically significant effects of Nutropin therapy were observed in the two studies. -------------------------------------------------------------------------------- INDICATIONS AND USAGE Pediatric Patients Nutropin® [somatropin (rDNA origin) for injection] is indicated for the long-term treatment of growth failure due to a lack of adequate endogenous GH secretion. Nutropin® [somatropin (rDNA origin) for injection] is also indicated for the treatment of growth failure associated with chronic renal insufficiency up to the time of renal transplantation. Nutropin therapy should be used in conjunction with optimal management of chronic renal insufficiency. Nutropin® [somatropin (rDNA origin) for injection] is also indicated for the long-term treatment of short stature associated with Turner syndrome. Adult Patients Nutropin® [somatropin (rDNA origin) for injection] is indicated for the replacement of endogenous GH in patients with adult GH deficiency who meet both of the following two criteria: Biochemical diagnosis of adult GH deficiency by means of a subnormal response to a standard growth hormone stimulation test (peak GHAdult-onset: Patients who have adult GH deficiency either alone or with multiple hormone deficiencies (hypopituitarism) as a result of pituitary disease, hypothalamic disease, surgery, radiation therapy, or trauma; or Childhood-onset: Patients who were GH deficient during childhood, confirmed as an adult before replacement therapy with Nutropin is started. -------------------------------------------------------------------------------- CONTRAINDICATIONS Growth hormone should not be initiated to treat patients with acute critical illness due to complications following open heart or abdominal surgery, multiple accidental trauma or to patients having acute respiratory failure. Two placebo-controlled clinical trials in non-growth hormone-deficient adult patients (n=522) with these conditions revealed a significant increase in mortality (41.9% vs. 19.3%) among somatropin-treated patients (doses 5.3-8 mg/day) compared to those receiving placebo (see WARNINGS ). Nutropin should not be used for growth promotion in pediatric patients with closed epiphyses. Nutropin should not be used in patients with active neoplasia. GH therapy should be discontinued if evidence of neoplasia develops. Nutropin, when reconstituted with Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), should not be used in patients with a known sensitivity to benzyl alcohol. -------------------------------------------------------------------------------- WARNINGS See CONTRAINDICATIONS for information on increased mortality in patients with acute critical illnesses in intensive care units due to complications following open heart or abdominal surgery, multiple accidental trauma or with acute respiratory failure. The safety of continuing growth hormone treatment in patients receiving replacement doses for approved indications who concurrently develop these illnesses has not been established. Therefore, the potential benefit of treatment continuation with growth hormone in patients having acute critical illnesses should be weighed against the potential risk. Benzyl alcohol as a preservative in Bacteriostatic Water for Injection, USP, has been associated with toxicity in newborns. When administering Nutropin to newborns, reconstitute with Sterile Water for Injection, USP. USE ONLY ONE DOSE PER NUTROPIN VIAL AND DISCARD THE UNUSED PORTION. -------------------------------------------------------------------------------- PRECAUTIONS General: Nutropin should be prescribed by physicians experienced in the diagnosis and management of patients with GH deficiency, Turner syndrome, or chronic renal insufficiency. No studies have been completed of Nutropin therapy in patients who have received renal transplants. Currently, treatment of patients with functioning renal allografts is not indicated. Experience with prolonged rhGH treatment in adults is limited. Geriatric Usage: Clinical studies of Nutropin did not include sufficient numbers of subjects aged 65 and over to determine whether they respond differently from younger subjects. Other reported clinical experience has not identified differences in responses between the elderly and younger patients. In general, dose selection for an elderly patient should be cautious, usually starting at the low end of the dosing range, reflecting the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy. Patients with epiphyseal closure who were treated with GH-replacement therapy in childhood should be re-evaluated according to the criteria in the INDICATIONS AND USAGE SECTION before continuation of GH therapy at the reduced dose level recommended for GH-deficient adults. Because Nutropin may reduce insulin sensitivity, patients should be monitored for evidence of glucose intolerance. For patients with diabetes mellitus, the insulin dose may require adjustment when GH therapy is instituted. Because GH may reduce insulin sensitivity, particularly in obese individuals, patients should be observed for evidence of glucose intolerance. Patients with diabetes or glucose intolerance should be monitored closely during GH therapy. Nutropin therapy in adults with GHD of adult onset was associated with an increase of median fasting insulin in the Nutropin 0.0125 mg/kg/day group from 9.0 µU/mL at baseline to 13.0 µU/mL at Month 12 with a return to the baseline median after a 3-week post-washout period off GH therapy. In the placebo group there was no change from 8.0 µU/mL at baseline to Month 12, and after the post-washout the median was 9.0 µU/mL. The between-treatment-groups difference in change from baseline to Month 12 was significant, 0.0001. In childhood-onset subjects there was a change of median fasting insulin in the Nutropin 0.025 mg/kg/day group from 11.0 µU/mL at baseline to 20.0 µU/mL at Month 12, in the Nutropin 0.0125 mg/kg/day group from 8.5 µU/mL to 11.0 µU/mL, and in the placebo group from 7.0 µU/mL to 8.0 µU/mL. The between-treatment-groups difference for these changes was significant, p=0.0007. In subjects with adult-onset GHD, there was no between-treatment-group difference in changes from baseline to Month 12 in mean HbA1c, p=0.08. In childhood-onset mean HbA1c increased in the Nutropin 0.025 mg/kg/day group from 5.2% at baseline to 5.5% at Month 12, and did not change in the Nutropin 0.0125 mg/kg/day group from 5.1% at baseline or in the placebo group from 5.3% at baseline. The between-treatment-groups difference was significant, p=0.009. Patients with a history of an intracranial lesion should be examined frequently for progression or recurrence of the lesion. In pediatric patients, clinical literature has demonstrated no relationship between GH-replacement therapy and CNS tumor recurrence or new extracranial tumors. In adults, it is unknown whether there is any relationship between GH-replacement therapy and CNS tumor recurrence. Patients with growth failure secondary to chronic renal insufficiency should be examined periodically for evidence of progression of renal osteodystrophy. Slipped capital femoral epiphysis or avascular necrosis of the femoral head may be seen in children with advanced renal osteodystrophy, and it is uncertain whether these problems are affected by GH therapy. X-rays of the hip should be obtained prior to initiating GH therapy for CRI patients. Physicians and parents should be alert to the development of a limp or complaints of hip or knee pain in patients treated with Nutropin. Slipped capital femoral epiphysis may occur more frequently in patients with endocrine disorders or in patients undergoing rapid growth. Progression of scoliosis can occur in patients who experience rapid growth. Because GH increases growth rate, patients with a history of scoliosis who are treated with GH should be monitored for progression of scoliosis. GH has not been shown to increase the incidence of scoliosis. Skeletal abnormalities including scoliosis are commonly seen in untreated Turner syndrome patients. Physicians should be alert to these abnormalities, which may manifest during GH therapy. Patients with Turner syndrome should be evaluated carefully for otitis media and other ear disorders since these patients have an increased risk of ear or hearing disorders. In a randomized, controlled trial, there was a statistically significant increase, as compared to untreated controls, in otitis media (43% vs. 26%) and ear disorders (18% vs. 5%) in patients receiving GH. In addition, patients with Turner syndrome should be monitored closely for cardiovascular disorders (e.g., stroke, aortic aneurysm, hypertension) as these patients are also at risk for these conditions. Intracranial hypertension (IH) with papilledema, visual changes, headache, nausea, and/or vomiting has been reported in a small number of patients treated with GH products. Symptoms usually occurred within the first eight (8) weeks of the initiation of GH therapy. In all reported cases, IH-associated signs and symptoms resolved after termination of therapy or a reduction of the GH dose. Funduscopic examination of patients is recommended at the initiation and periodically during the course of GH therapy. Patients with CRI and Turner syndrome may be at increased risk for development of IH. See WARNINGS for use of Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), in newborns. As with any protein, local or systemic allergic reactions may occur. Parents/Patient should be informed that such reactions are possible and that prompt medical attention should be sought if allergic reactions occur. Laboratory Tests: Serum levels of inorganic phosphorus, alkaline phosphatase, and parathyroid hormone (PTH) may increase with Nutropin therapy. Untreated hypothyroidism prevents optimal response to Nutropin. Patients with Turner syndrome have an inherently increased risk of developing autoimmune thyroid disease. Changes in thyroid hormone laboratory measurements may develop during Nutropin treatment. Therefore, patients should have periodic thyroid function tests and should be treated with thyroid hormone when indicated. Drug Interaction: Excessive glucocorticoid therapy will inhibit the growth-promoting effect of human GH. Patients with ACTH deficiency should have their glucocorticoid-replacement dose carefully adjusted to avoid an inhibitory effect on growth. The use of Nutropin in patients with chronic renal insufficiency receiving glucocorticoid therapy has not been evaluated. Concomitant glucocorticoid therapy may inhibit the growth-promoting effect of Nutropin. If glucocorticoid-replacement is required, the glucocorticoid dose should be carefully adjusted. There was no evidence in the controlled studies of Nutropin's interaction with drugs commonly used in chronic renal insufficiency patients. Limited published data indicate that GH treatment increases cytochrome P450 (CP450) mediated antipyrine clearance in man. These data suggest that GH administration may alter the clearance of compounds known to be metabolized by CP450 liver enzymes (e.g., corticosteroids, sex steroids, anticonvulsants, cyclosporin). Careful monitoring is advisable when GH is administered in combination with other drugs known to be metabolized by CP450 liver enzymes. Carcinogenesis, Mutagenesis, Impairment of Fertility: Carcinogenicity, mutagenicity, and reproduction studies have not been conducted with Nutropin. Pregnancy: Pregnancy (Category C). Animal reproduction studies have not been conducted with Nutropin. It is also not known whether Nutropin can cause fetal harm when administered to a pregnant woman or can affect reproduction capacity. Nutropin should be given to a pregnant woman only if clearly needed. Nursing Mothers: It is not known whether Nutropin is excreted in human milk. Because many drugs are excreted in human milk, caution should be exercised when Nutropin is administered to a nursing mother. Information for Patients: Patients being treated with GH and/or their parents should be informed of the potential benefits and risks associated with treatment. If home use is determined to be desirable by the physician, instructions on appropriate use should be given, including a review of the contents of the Patient Information Insert. This information is intended to aid in the safe and effective administration of the medication. It is not a disclosure of all possible adverse or intended effects. If home use is prescribed, a puncture-resistant container for the disposal of used syringes and needles should be recommended to the patient. Patients and/or parents should be thoroughly instructed in the importance of proper disposal and cautioned against any reuse of needles and syringes (see Patient Information Insert). -------------------------------------------------------------------------------- ADVERSE REACTIONS As with all protein pharmaceuticals, a small percentage of patients may develop antibodies to the protein. GH antibody binding capacities below 2 mg/L have not been associated with growth attenuation. In some cases when binding capacity exceeds 2 mg/L, growth attenuation has been observed. In clinical studies of pediatric patients that were treated with Nutropin for the first time, 0/107 growth hormone-deficient (GHD) patients, 0/125 CRI patients, and 0/112 Turner syndrome patients screened for antibody production developed antibodies with binding capacities >/=2 mg/L at six months. Additional short-term immunologic and renal function studies were carried out in a group of patients with chronic renal insufficiency after approximately one year of treatment to detect other potential adverse effects of antibodies to GH. Testing included measurements of C1q, C3, C4, rheumatoid factor, creatinine, creatinine clearance, and BUN. No adverse effects of GH antibodies were noted. In addition to an evaluation of compliance with the prescribed treatment program and thyroid status, testing for antibodies to GH should be carried out in any patient who fails to respond to therapy. In studies in patients treated with Nutropin, injection site pain was reported infrequently. Leukemia has been reported in a small number of GHD patients treated with GH. It is uncertain whether this increased risk is related to the pathology of GH deficiency itself, GH therapy, or other associated treatments such as radiation therapy for intracranial tumors. On the basis of current evidence, experts cannot conclude that GH therapy is responsible for these occurrences. The risk to GHD, CRI, or Turner syndrome patients, if any, remains to be established. Other adverse drug reactions that have been reported in GH-treated patients include the following: 1) Metabolic: Mild, transient peripheral edema. In GHD adults, edema or peripheral edema was reported in 41% of GH-treated patients and 25% of placebo-treated patients. 2) Musculoskeletal: Arthralgias; carpal tunnel syndrome. In GHD adults, arthralgias and other joint disorders were reported in 27% of GH-treated patients and 15% of placebo-treated patients. 3) Skin: Rare increased growth of pre-existing nevi; patients should be monitored for malignant transformation. 4) Endocrine: Gynecomastia. Rare pancreatitis. -------------------------------------------------------------------------------- OVERDOSAGE Acute overdosage could lead to hyperglycemia. Long-term overdosage could result in signs and symptoms of gigantism and/or acromegaly consistent with the known effects of excess GH. (See recommended and maximal dosage instructions given below.) -------------------------------------------------------------------------------- DOSAGE AND ADMINISTRATION The Nutropin dosage and administration schedule should be individualized for each patient. Response to growth hormone therapy in pediatric patients tends to decrease with time. However, in pediatric patients failure to increase growth rate, particularly during the first year of therapy, suggests the need for close assessment of compliance and evaluation of other causes of growth failure, such as hypothyroidism, under-nutrition, and advanced bone age. Dosage Pediatric Growth Hormone Deficiency (GHD) A weekly dosage of up to 0.30 mg/kg of body weight divided into daily subcutaneous injection is recommended. Adult Growth Hormone Deficiency (GHD) The recommended dosage at the start of therapy is not more than 0.006 mg/kg given as a daily subcutaneous injection. The dose may be increased according to individual patient requirements to a maximum of 0.025 mg/kg daily in patients under 35 years and to a maximum of 0.0125 mg/kg daily in patients over 35 years. To minimize the occurrence of adverse events in older or overweight patients, lower doses may be necessary. During therapy, dosage should be decreased if required by the occurrence of side effects or excessive IGF-I levels. Chronic Renal Insufficiency (CRI) A weekly dosage of up to 0.35 mg/kg of body weight divided into daily subcutaneous injection is recommended. Nutropin therapy may be continued up to the time of renal transplantation. In order to optimize therapy for patients who require dialysis, the following guidelines for injection schedule are recommended: Hemodialysis patients should receive their injection at night just prior to going to sleep or at least 3-4 hours after their hemodialysis to prevent hematoma formation due to the heparin. Chronic Cycling Peritoneal Dialysis (CCPD) patients should receive their injection in the morning after they have completed dialysis. Chronic Ambulatory Peritoneal Dialysis (CAPD) patients should receive their injection in the evening at the time of the overnight exchange. Turner Syndrome A weekly dosage of up to 0.375 mg/kg of body weight divided into equal doses 3 to 7 times per week by subcutaneous injection is recommended. Administration After the dose has been determined, reconstitute as follows: each 5 mg vial should be reconstituted with 1-5 mL of Bacteriostatic Water for Injection, USP (benzyl alcohol preserved); or each 10 mg vial should be reconstituted with 1-10 mL of Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), only. For use in newborns see WARNINGS . The pH of Nutropin after reconstitution with Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), is approximately 7.4. To prepare the Nutropin solution, inject the Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), into the Nutropin vial, aiming the stream of liquid against the glass wall. Then swirl the product vial with a GENTLE rotary motion until the contents are completely dissolved. DO NOT SHAKE . Because Nutropin is a protein, shaking can result in a cloudy solution. The Nutropin solution should be clear immediately after reconstitution. Occasionally, after refrigeration, you may notice that small colorless particles of protein are present in the Nutropin solution. This is not unusual for solutions containing proteins. If the solution is cloudy immediately after reconstitution or refrigeration, the contents MUST NOT be injected. Before needle insertion, wipe the septum of both the Nutropin and diluent vials with rubbing alcohol or an antiseptic solution to prevent contamination of the contents by microorganisms that may be introduced by repeated needle insertions. It is recommended that Nutropin be administered using sterile, disposable syringes and needles. The syringes should be of small enough volume that the prescribed dose can be drawn from the vial with reasonable accuracy. -------------------------------------------------------------------------------- STABILITY AND STORAGE Before Reconstitution--Nutropin® [somatropin (rDNA origin) for injection] and Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), must be stored at 2-8°C/36-46°F (under refrigeration). Avoid freezing the vials of Nutropin and Bacteriostatic Water for Injection, USP (benzyl alcohol preserved). Expiration dates are stated on the labels. After Reconstitution--Vial contents are stable for 14 days when reconstituted with Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), and stored at 2-8°C/36-46°F (under refrigeration). Store the unused portion of Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), at 2-8°C/36-46°F (under refrigeration). Avoid freezing the reconstituted vial of Nutropin and the Bacteriostatic Water for Injection, USP (benzyl alcohol preserved). -------------------------------------------------------------------------------- HOW SUPPLIED Nutropin is supplied as 5 mg (approximately 15 IU) or 10 mg (approximately 30 IU) of lyophilized, sterile somatropin per vial. Each 5 mg carton contains two vials of Nutropin® [somatropin (rDNA origin) for injection] (5 mg per vial) and one 10 mL multiple dose vial of Bacteriostatic Water for Injection, USP (benzyl alcohol preserved). NDC 50242-072-02 Each 10 mg carton contains two vials of Nutropin® [somatropin (rDNA origin) for injection] (10 mg per vial) and two 10 mL multiple dose vials of Bacteriostatic Water for Injection, USP (benzyl alcohol preserved). NDC 50242-018-20 Nutropin® [somatropin (rDNA origin) for injection] manufactured by: Genentech, Inc. 1 DNA Way South San Francisco, CA 94080-4990 Bacteriostatic Water for Injection, USP (benzyl alcohol preserved), manufactured for: Genentech, Inc. 4808605 ©1999 Genentech, Inc. Revised January 1999 PRODUCT PHOTO(S): NOTE: These photos can be used only for identification by shape, color, and imprint. They do not depict actual or relative size. The product samples shown here have been supplied by the manufacturer and reproduced in full color by PDR as a quick-reference identification aid. While every effort has been made to assure accurate reproduction, please remember that any visual identification should be considered preliminary. In cases of poisoning or suspected overdosage, the drug' identity should be verified by chemical analysis. (Above information has been provided by PDR.) Benefits: Reverses the effects of aging Reverses muscle wasting 14% Reduction in Weight and body fat after six months, without dieting Lowers blood pressure and cholesterol 9% increase in lean muscle after six months, without exercise Increases energy level, endurance and exercise capacity Increases cardiac output and athletic performance Reduces stress and enhances immune system Growth hormone accelerates wound healing and skin regeneration Improves memory retention and cognitive functions Increase recovery from athletic injury Improves vision Achive a younger, tighter, thicker skin Improves kidney function Reverse osteoporosis Improves sleep -------------------------------------------------------------------------------- Related Resources: No suggestions are available at this time. Dr. Eve Van Cauter, GH researcher, University of Chicago Medical Center. "All of these ideas about treating people with growth hormone have been directed towards people sixty-five and older. If you look at the data, people have so-called 'elderly' levels by age forty. Perhaps we should be giving GH... Read More Human Growth Hormone Benefits: 9% Increase in lean muscle Accelerates Wound Healing Increases Bone Density Learn More Testosterone Benefits: Builds Lean Muscle Improves Sexual Performance Increases Energy Learn More 24 week combined testosterone injectable program 2 x 10ml/200mg of injectable Testosterone Cypionate 2 x 10ml/200mg of injectable Nandrolone Decanoate 60 x 11 mg Tamoxifen Citrate (Anti-Estrogen) or similar 2 x 10,000 units of HCG – Chorionic Gonadotrophin (Post Cycle Therapy) All labs (Full panel blood testing), physician, and prescription fees Medical monitoring and supervision Syringes, swabs, disposable containers Unlimited telephone consultations including diet, nutrition and exercise advice The best customer service and patient support available Regular follow-up and courtesy calls Shipping and insurance of your program via FedEx |
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| Post Whore ![]() Join Date: Jan 2004
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Rep Power: 6 ![]() | I'll add on about Nutropin depot What Is Nutropin Depot? The first long-acting dosage form of Nutropin for pediatric growth hormone deficiency, Nutropin Depot is indicated for the long-term treatment of growth failure due to a lack of adequate endogenous growth hormone (hGH or GH) secretion. Nutropin Depot is the only GH available for patients who prefer the convenience of once- or twice-a-month dosing. Depending on a patient's weight, each dose may require more than one injection. Growth rates may be lower with Nutropin Depot than with daily GH therapy. Patients previously treated with daily growth hormone who were switched to Nutropin Depot experienced decreased growth rates. In a long-term extension study, 19% of patients (14 out of 75) discontinued therapy due to dissatisfaction with growth response. (See important considerations for comparative growth rates.) Nutropin Depot offers greater freedom in the following ways: Less frequent injections may result in fewer disruptions to patients' and families' daily routine. Fewer injections require fewer syringes and other supplies, which reduces the amount of storage and refrigeration space needed. The number of doses is reduced from as many as 365 to just 12 to 24 per year. Depending on a patient's weight, more than one injection per dose may be required. Everything needed for suspension and injection is provided with Nutropin Depot. How does Nutropin Depot work? Nutropin Depot consists of thousands of tiny balls (microspheres) made of a substance commonly found in medical products such as the "thread" used for dissolvable stitches. Each of these microspheres contains molecules of GH. Once Nutropin Depot suspension is injected under the skin (subcutaneously), its microspheres degrade, releasing the GH into the body in 2 phases—this is known as biphasic release. About 50% of the drug is released within the first day or two after the injection, and the remainder is released in the secondary (long-acting) phase as the microspheres degrade. (If you do not have Quicktime loaded, click here.) How Nutropin Depot is supplied Each kit contains one single-use vial of Nutropin Depot, one vial of diluent, and three needles. Store the kit in a clean, safe place in your refrigerator. Please remember that all needles must be stored out of the reach of children. It is also important that the vials of Nutropin Depot and diluent not be frozen. Freezing will damage them, and they cannot be used. Do not mix the drug, or inject it, until your healthcare provider has thoroughly trained you in the proper technique. One single-use vial of Nutropin Depot and two needles are used for a single injection. One extra needle is provided in each kit. Mixing means adding a liquid (diluent) to a dry powder. Nutropin Depot may only be mixed with the diluent provided, before it can be injected. Uses the sterile technique you were trained on by your healthcare provider. Dispose of the syringes and needles properly after each use, out of the reach of children. See step 7 under Giving the medication for instructions on the proper disposal of plastic needle guards, used needles, and syringes. Selecting the Injection Site Begin by removing the kit from the refrigerator. Your healthcare provider will teach you how to locate appropriate areas to give injections. Within each area there are multiple injection sites. It is very important that you change the site for each injection or rotate the area where you give each injection. Even if you develop a preference for one area, you should still rotate the injection site within that area. Following injections, you may notice a “dimple” at one or more of the injection sites. These should go away over time. Until they go away, you should avoid using these areas. This is another reason why it is important to rotate the injection site. The following drawings indicate recommended injection areas. Each area has several sites for injection within them. Preferred Area* *For detailed information about injection site selection, please see Your Family's Guide to Preparing and Administering Nutropin Depot. Mixing a Nutropin Depot vial Mix the Nutropin Depot vial only with the diluent and needles provided in the kit. Do not use other solutions for mixing. Unused contents of a mixed Nutropin Depot vial or diluent vial should not be used to mix a new vial of Nutropin Depot. Discard both of these vials after giving the injection. Your healthcare provider will tell you what size syringe to use with the needles provided in the kit, and how much diluent to add to the Nutropin Depot vial. Check the expiration date on each vial. Vials of diluent that have not been opened or Nutropin Depot vials that have not been opened or mixed can be used until the expiration date (EXP) printed on each of the vial labels. Wash your hands thoroughly with soap and water before preparing the medication. This helps prevent infection. Leave the diluent vial to warm to room temperature for up to 15 minutes before mixing, or hold the diluent vial between your hands and gently roll it to bring the contents up to room temperature. This should help with the overall administration of the drug. Before you add the diluent to the Nutropin Depot vial, you should tap and shake the vial to make sure the powder is free flowing. This will make it easier to mix. Remove the protective plastic cap from the tops of both the diluent and Nutropin Depot vials. Do not remove the rubber stoppers. Do not touch the top of the vials. If you accidentally touch the top, clean it with an alcohol swab. Remove the small plastic cap from the end of the syringe, and firmly attach the needle by twisting counter-clockwise. Be careful not to let the end of the syringe come into contact with anything but the needle. Note: Use only needles provided in the Nutropin Depot kit. Pull the plastic needle guard straight off and set it aside. Do not allow the needle to touch anything except the tops of vials. Do not use needles that have come in contact with any other surface. Fill the syringe with air by pulling the plunger to the level indicated by your healthcare provider. This will make it easier to withdraw the diluent. Slowly insert the needle straight through the center of the rubber stopper of the diluent vial and inject all of the air into the vial. Turn the diluent vial upside down with the needle still in it and hold the vial in one hand. To avoid getting air in the syringe while filling it with the diluent, make sure the tip of the needle is in the diluent. Withdraw the diluent by pulling the plunger to the exact amount your healthcare provider told you. With the syringe and vial still held upside down in one hand, gently tap the syringe with your other hand to dislodge any large air bubbles. The bubbles will rise to the top of the syringe and can be pushed back into the diluent by gently pushing in the plunger. Check again to make sure you have the correct amount of diluent in the syringe. If not, pull back or push in the plunger slowly until the correct amount of diluent is in the syringe. Withdraw the needle from the diluent vial. Do not allow the needle to touch anything except the tops of vials. Do not use needles that have come in contact with any other surface. To prepare the Nutropin Depot suspension, slowly insert the needle straight through the center of the rubber stopper of the Nutropin Depot vial. Gently place the needle tip against the glass wall of the vial. Slowly inject all of the measured diluent. Withdraw the needle, and replace the plastic needle guard. Set the syringe and needle aside for later use while mixing the Nutropin Depot vial. (See step 7 under Giving the medication for instructions on the proper disposal of plastic needle guards, used needles, and syringes.) Taking care not to touch the top of the vial, vigorously swirl the Nutropin Depot vial until the contents are completely mixed. It may take up to 2 minutes to form a uniform suspension. After mixing, the vial contents should be thick and milky. If you notice lumps of powder that float or stick to the sides of the vial, continue to swirl the vial until all of the powder has been mixed with the diluent. Once mixed, Nutropin Depot must be administered immediately to prevent settling of the microspheres. Do not store a mixed vial of Nutropin Depot or a filled syringe. Only one Nutropin Depot vial can be used for each injection. Measuring the Dose To guard against the spread of infection, follow these safety measures: Wash your hands thoroughy with soap and water before preparing the medication Do not remove the rubber stoppers. Try not to touch the tops of the vials. If you do, use an alcohol swab or a cotton ball soaked with isopropyl rubbing alcohol to clean the top of any vial you touched. Do not allow the needle to touch anything except the rubber stoppers on the tops of the vials. Do not use a needle that has come in contact with any other surface. Steps Using the same needle and syringe, pull the plastic needle guard straight off and set it aside. Slowly insert the needle straight through the center of the rubber stopper of the vial containing the Nutropin Depot suspension. Turn the vial upside down with the needle still in it and hold the vial in one hand. To avoid getting air into the syringe while measuring the dose, make sure the tip of the needle is in the Nutropin Depot suspension. Using your other hand, slowly pull back on the plunger in a continuous motion until the correct amount of Nutropin Depot suspension is in the syringe. With the syringe and vial still held upside down in one hand, gently tap the syringe with your other hand to dislodge any large air bubbles. The bubbles will rise to the top of the syringe and can be pushed back into the vial by gently pushing in the plunger. Check again to make sure you have the correct amount of Nutropin Depot in the syringe. If not, pull back the plunger slowly until the correct amount of Nutropin Depot is in the syringe. Because the Nutropin Depot suspension is thick, it may take some time to fill the syringe. If the flow stops, gently push the plunger in, then continue to fill the syringe with the correct amount of Nutropin Depot. Withdraw the needle from the Nutropin Depot vial and replace the plastic needle guard. This will make it easier to remove the needle from the syringe when you need to change the needle. Do not allow the needle to touch anything except the tops of vials or prepared injection sites. Do not use needles that have come in contact with any other surface. Before giving the injection, you must change the needle used for adding the diluent and measuring the dose. Remove the used needle by gently twisting the needle guard clockwise. Note: Use only needles provided in the Nutropin Depot kit. Firmly attach a new needle to the filled syringe by twisting it on counterclockwise. Be careful not to let the end of the syringe come in contact with anything but the new needle. PROCEED IMMEDIATELY TO GIVE THE INJECTION Giving the medication Your healthcare provider will provide you with training on how to give an injection. Needles and syringes should be used only once to ensure sterility of both the needle and the syringe. The following is a review of the steps involved in giving the medication: Holding the syringe upright, gently push in the plunger until you see a drop of Nutropin Depot on the end of the needle to remove any air. If necessary, tap the barrel of the syringe to dislodge any air bubbles before pushing in the plunger. (See step 7 under Giving the medication for instructions on the proper disposal of plastic needle guards, used needles, and syringes.) Using a circular motion, while applying firm pressure, cleanse the injection site with an alcohol-saturated cotton ball or alcohol swab. Allow the alcohol to dry before inserting the needle. Remove the plastic needle guard and hold the syringe the way you would hold a pencil. Gently squeeze the skin between your thumb and index finger before and during the injection. Insert the needle into the skin with a quick, firm motion. This hurts less than pushing the needle in slowly. Your healthcare provider will tell you the correct angle to use for needle insertion. Slowly (but not over more than 5 seconds) inject the medication by gently pushing the plunger until the syringe is empty. Slowly release the skin during the injection. A few seconds after the injection has been given, quickly withdraw the needle. If the medication leaks out of the injection site, consult your healthcare provider. Attempting to give the injection faster could result in discomfort at the injection site. (See step 7 under Giving the medication for instructions on the proper disposal of plastic needle guards, used needles, and syringes.) Sometimes the flow of medicine stops before the syringe is empty. If this happens, it is possible that the needle has become clogged. Simply withdraw the needle, replace the needle guard and remove the clogged needle by gently twisting the needle guard clockwise. Note: Use only needles provided in the Nutropin Depot kit. Firmly attach a new needle to the syringe by twisting counterclockwise. Be careful not to let the end of the syringe come into contact with anything but the new needle. Holding the syringe upright, gently push in the plunger until you see a drop of Nutropin Depot on the end of the needle. If necessary, gently tap the barrel of the syringe to dislodge any air bubbles. (See step 7 under Giving the medication for instructions on the proper disposal of plastic needle guards, used needles, and syringes.) Select and prepare a new injection site. (See Selecting the Injection Site and steps 1 and 2 under Giving the medication.) Inject the remainder of the Nutropin Depot at this site. Withdraw the needle quickly, pulling it straight out. Gently massage the injection site with a dry gauze pad or cotton ball. A drop of blood may appear. Put a Band-Aid® on the injection site if desired. It is common for swelling and/or a small lump to appear at the injection site but it should go away over time. To prevent injury, safely dispose of the plastic needle guards and all used needles and syringes after a single use. Your healthcare professional will instruct you on the proper disposal of items used for the injection. In addition, he or she may need to review special state and local laws with you. To prevent injury: Do not recap the needle with the plastic needle guard prior to disposal. Safety dispose of the plastic needle guards and all used needles and syringes immediately after a single use. Always store your disposal container out of the reach of children. Reactions at the injection site are frequent but usually do not last long. These include redness, bumps, pain during and after the injection, “dimples”, and itchiness. It is possible that in rare cases a more severe reaction to the injections may develop. If you notice any of the following signs or symptoms, contact your healthcare provider: Swelling or a lump at the injection site that doesn’t go away Rash at the injection site Any signs of infection or inflammation at an injection site (pus, persistent redness of surrounding skin that is hot to the touch, persistent pus after the injection) Difficulty breathing Body rash Back to top Band-Aid® is a registered trademark of Johnson & Johnson. Storing Nutropin Depot Before suspension: Nutropin Depot and diluent vials must be stored at 2–8°C/36–46°F (under refrigeration). Avoid freezing the vials of Nutropin Depot and Diluent for Nutropin Depot. Do not expose the Nutropin Depot vial to temperatures above 25°C (77°F). Expiration dates are printed on the labels. After suspension: Because Nutropin Depot contains no preservatives, all injections must be given immediately. Do not allow the suspension to settle prior to withdrawal of the dose. Do not shake to resuspend. Solution that has settled may cause needle clogging. Suspended solution cannot be stored or used to suspend another vial of Nutropin Depot. Back to top Important Safety Information Contraindications GH should not be initiated to treat patients with acute critical illness due to complications following open heart or abdominal surgery, multiple accidental trauma, or to patients having acute respiratory failure. GH should not be used for growth promotion in subjects whose bone growth is completed. GH should not be used in patients with active cancer. GH should be discontinued if evidence of cancer develops. Precautions Increased fluid pressure within the skull (intracranial hypertension) has been reported in a small number of patients treated with GH. Funduscopic examination of patients is recommended at the initiation of and periodically during GH therapy. As with any protein, local or systemic allergic reactions may occur. Parents/patients should be advised to seek prompt medical attention if allergic reactions occur, such as itching, rash, or hives. GH may reduce insulin sensitivity, particularly in obese individuals; patients should be observed for evidence of glucose intolerance. For patients with diabetes mellitus, the insulin dose may require adjustment when GH therapy is instituted. Patients with symptomatic low blood sugar (hypoglycemia) associated with GH deficiency should be closely monitored. Separation of the ball of the hip joint from the thigh bone (slipped capital femoral epiphysis) may occur more frequently in patients with endocrine disorders or in patients undergoing rapid growth. Because GH increases growth rate, patients with a history of scoliosis who are treated with growth hormone should be monitored for progression of scoliosis. GH has not been shown to increase the incidence of scoliosis. GH patients experiencing headache, nausea, visual changes, and/or vomiting may have a condition called intracranial hypertension and should contact their healthcare professional. Adverse reactions Injection site reactions with Nutropin Depot occurred in nearly all patients and were generally mild to moderate, and most resolved without intervention. In clinical studies involving 138 pediatric patients, Nutropin Depot demonstrated a safety profile similar to that of daily GH therapy, with the exception of frequency and type of injection site reactions. The most frequent injection site reaction was the occurrence of a pea-sized nodule formed by Nutropin Depot microspheres under the skin. Nodules gradually disappear as the microspheres degrade and the GH is released. In Phase III trials, pain reported during injection decreased over time as patients gained experience with the therapy. Pain post-injection, often reported as tenderness or soreness to the touch, was also reported. The most frequent adverse reactions associated with Nutropin Depot therapy were injection site–related, occurring in nearly all patients. On average, 2 to 3 injection site reactions were reported per injection, and included: nodules (61% of injections), erythema (53%), pain post-injection (47%), pain during injection (43%), bruising (20%), itching (13%), lipoatrophy (13%), and swelling or puffiness (8%). The intensity of these reactions was generally rated mild to moderate, with pain during injection occasionally rated as severe (7%), and most resolved without further intervention. Adverse reactions that were observed less frequently in clinical trials but were considered possibly, probably, or definitely related to Nutropin Depot therapy included headache (13% of subjects), nausea (8%), lower extremity pain (7%), fever (7%), and vomiting (5%). Please discuss with your physician first about the risks and benefits associated with GH therapy. Please see full prescribing information for complete information. Back to top Important Considerations The mean growth rate for patients previously treated with daily GH was 8.2 ± 3.0 cm/year (range, 3.2 to 13.1 cm/year) and on Nutropin Depot was 5.1 ± 2.0 cm/year (range, 2.4 to 9.6 cm/year) after 6 months. Patients previously treated with daily GH who were switched to Nutropin Depot experienced decreased growth rates. 19% of patients (14 out of 75) in a long-term extension study discontinued therapy due to dissatisfaction with growth response. Back to top ____________________ |
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