Diagnosis and treatment of fetal urinary tract abnormalities.
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Biomedical subjects
Publications and source records attributed to R N Fine.
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Recombinant human growth hormone (rhGH) was administered to 13 pediatric renal allograft recipients, ages 7.6 to 17.7 yr, who were 14 to 92 months posttransplant and growth retarded as manifested by either a standard deviation (SD) more negative than -2.00 or a height velocity index of less than 25%. The rhGH was given either daily or thrice weekly (0.375 mg/kg/wk) for a period of 12 to 36 months. Growth velocity increased from 2.7 +/- 2.1 SD for the 12-month period before the initiation of treatment of 6.3 +/- 2.9 SD (P less than 0.00005) and 5.2 +/- 2.9 SD (P less than 0.02) after 12 and 24 months of treatment, respectively. Although individual recipients had improvement in their SD scores, the mean values did not increase despite the increased growth velocity. Except for a 0.5-yr increase over 24 months in two recipients, the bone age did not increase at a rate greater than the increase in chronologic age. Four rejection episodes occurred in two recipients during rhGH treatment--an incidence not greater than that which occurred during a comparable time interval before the initiation of treatment. The calculated creatinine clearance declined from 66 +/- 26 SD mL/min/1.73 m2 at the initiation of treatment to 55 +/- 30 SD mL/min/1.73 m2 at 24 months and 52 +/- 28 SD mL/min/1.73 m2 (P = not significant).(ABSTRACT TRUNCATED AT 250 WORDS)
Ultrasound (US) imaging of the kidneys was performed in 43 pediatric patients with end-stage liver disease evaluated for orthotopic liver transplantation. Renal size was increased in 8 patients (19%) and echogenicity of the kidneys was increased in 12 patients (28%). In 12 patients studied after liver transplantation, US revealed normal renal size in all and increased echogenicity in only 2 patients shortly after transplantation. Normalization of renal US findings was also found in 2 patients studied before and after liver transplantation. The glomerular filtration rate varied from 65 to 225 ml/min per 1.73 m2 in 5 patients with abnormal US, and from 74 to 116 ml/min per 1.73 m2 in 3 patients with normal US. Nephromegaly and increased echogenicity on renal US are frequent in children with end-stage liver disease and appear to be mostly reversible by liver transplantation.
We analyzed the results of 165 pediatric cadaver renal transplants performed at the University of California at Los Angeles to identify the factors which are linked to improved allograft survival. Both univariate life-table analysis and the Cox proportional hazard model were used. The use of a sequential immunosuppressive regimen (P less than 0.001) and kidneys from donors of more than 6 years of age (P less than 0.001) were found to be the factors having the most influence on primary graft survival. The sequential regimen was the only factor favorably influencing retransplants. With sequential therapy 1- and 2-year actuarial graft survival rates were 94% and 91% in primary transplants, and 82% and 70% in retransplants. Medication noncompliance exerted a large negative effect on transplant outcome. Of 70 recipients who had been on cyclosporine for at least 6 months, 50% evidenced noncompliance. Sixty-four percent of adolescents were noncompliant. Thirteen percent of the recipients lost their graft because of noncompliance. We conclude that good results can be obtained with cadaver renal transplants in children with a sequential immunosuppressive regimen and the use of kidneys from adolescent and adult donors. Noncompliance is a great barrier to long-term success in pediatric transplantation.
Nine growth-retarded renal allograft recipients received either thrice weekly or daily subcutaneous recombinant human growth hormone (rhGH) for 6-30 months. The annualized growth velocity for the initial year of rhGH treatment was significantly greater than that of the preceding year (2.5 +/- 2.1 vs 5.7 +/- 2.7; P less than 0.0001). There was no advancement in bone age greater than the increase in chronological age, no significant increase in the mean fasting serum glucose or insulin levels, nor significant decrease in the calculated creatinine clearance following rhGH treatment. However, two patients experienced rejection episodes following rhGH treatment indicating the potential adverse consequences of the treatment on allograft function. This will require further delineation in prospective controlled studies. The serum insulin-like growth factor-1 levels significantly increased at 6 months (P less than 0.009) and 12 months (P less than 0.002) following rhGH treatment compared with baseline values. These preliminary data indicate that rhGH treatment may be effective in improving the growth velocity of growth-retarded renal allograft recipients.
Treatment of nine boys, aged 2.8-16.3 years, with growth retardation consequent to chronic renal failure (CRF), with recombinant human growth hormone (rhGH) for 12-36 months demonstrated a significant improvement in growth velocity at each 12-month interval compared with that achieved the year prior to treatment. Despite the acceleration in growth velocity the bone age did not increase more than the increase in chronological age during the period of treatment. The mean calculated creatinine clearance did not decrease significantly during the 36 months of treatment; however, two patients required institution of dialysis at 18 and 30 months following the initiation of rhGH treatment. There was no exacerbation of the glucose intolerance of uremia following rhGH treatment. Currently, six of seven patients who have been treated for more than 24 months have achieved sufficient acceleration of growth velocity to attain a standard deviation score that was more positive than -2.00, and are above the 5th per centile for chronological age on the growth curve. These data indicate that rhGH treatment of growth-retarded children with CRF results in accelerated growth velocity during the 2nd and 3rd years of treatment, and demonstrate the potential for such children to achieve normal stature for chronological age despite the continued presence of renal failure.
Paediatric renal allograft recipients frequently manifest growth retardation because of suboptimal graft function and/or concomitant corticosteroid treatment. To determine if the growth-suppressive effects of methylprednisolone (MP) could be counterbalanced by concomitant treatment with recombinant human growth hormone (rhGH) under conditions of normal and reduced renal function, the following animal model was set up. Female uraemic Sprague-Dawley rats (140 g) together with pair-fed and ad libitum-fed control animals were treated with 6 mg/kg per day MP with or without 10 IU/kg per day rhGH. MP suppressed linear growth and weight gain by 43% and 63%, respectively in ad libitum-fed normal control animals; the suppression was more pronounced in uraemic animals (57% and 107%, respectively). The suppressive effects were independent of food intake. The food conversion ratio (weight gain/food intake) was diminished to one-third in control and to more than one-tenth in uraemic animals. Concomitant treatment with rhGH completely reversed the suppression of length gain and weight gain (total body and muscle) and normalized the food conversion ratio. We concluded that rhGH can completely reverse the catabolic effects of corticosteroids under conditions of normal or reduced renal function. The data provide a reasonable rationale for prospective controlled studies on the use of rhGH treatment in paediatric kidney transplant recipients with growth failure.
Progressive renal insufficiency, male pseudohermaphrotidism, and Wilms tumor are known as the triad of Drash syndrome. The renal involvement has been reported in association with Wilms tumor with or without pseudohermaphroditism. The nephropathy progresses rapidly, is unresponsive to steroids, and eventually requires dialysis. The case we report is a 46,XX phenotypic female child who had diffuse mesangial sclerosis (DMS) and developed Wilms tumor 3 years after initiating dialysis for end-stage renal disease (ESRD). Any child presenting with DMS should be considered at risk for development of Wilms tumor and should be investigated for the presence of XY gonadal dysgenesis. Once ESRD develops in such a child, prophylactic nephrectomy and possibly gonadectomy should be undertaken.
Eighteen patients with steroid-resistant nephrotic syndrome (SRNS) and steroid-dependent nephrotic syndrome (SDNS) were treated with cyclosporine A (CyA) (6 mg/kg/d) for 2 to 29 months. CyA levels were monitored monthly and plasma levels by Abbott TDX (Therapeutic Drug Analyzer System) fluorescence polarization immunoassay were maintained at 100 to 150 ng/mL. The corticosteroid dosage administered at the time CyA therapy was initiated was variable and was continued following CyA therapy. Six of these patients (all with SDNS and minimal change nephrotic syndrome [MCNS]) had been treated with one or more courses of cytotoxic drug therapy, and all had clinical evidence of corticosteroid toxicity after receiving corticosteroid therapy for 26 to 120 months. The corticosteroid dosage was reduced by slow tapering and was ultimately discontinued in six patients. These patients were maintained on CyA monotherapy for 7 to 21 months at a dose of 3.2 to 6.7 mg/kg/d. Following 11 to 29 months of CyA therapy, seven patients underwent an elective renal biopsy, which showed nephrotoxicity in all seven. This led to discontinuation of CyA in four patients. Following discontinuation of CyA monotherapy, all four patients relapsed within 2 to 4 months. CyA therapy did not achieve a remission in 10 patients with SRNS regardless of the presence of focal segmental glomerulosclerosis (FSGS) or MCNS on renal biopsy. In conclusion, CyA has limited effectiveness in patients with SDNS who manifest corticosteroid toxicity; however, CyA should be used cautiously because of the potential for CyA nephrotoxicity and the failure to obtain a sustained remission following discontinuation of CyA monotherapy. CyA dependence is substituted for corticosteroid dependence.
Treatment with supraphysiological doses of corticosteroids results in protein wasting and impairment of growth, whereas exogenous growth hormone (GH) causes anabolism and improvement of growth. We wanted to know whether the growth depressing effects of methylprednisolone (MP) are more expressed in an organism which is chronically diseased and whether these effects can be counterbalanced by concomitant treatment with recombinant human growth hormone (rhGH). MP in doses from 1 to 9 mg/kg/day caused a dose dependent reduction of length gain, weight gain and weight gain/food intake ratio in 140 g healthy female Sprague-Dawley rats. Food intake was not affected by MP. This points to a change in food metabolism as a mechanism for growth impairment. In addition, treatment with MP inhibited endogenous GH secretion, documented by serum GH concentration profiles over seven hours, decreased IGF-1 serum concentration and disturbed growth cartilage plate architecture. Concomitant treatment with 2.5 to 20 IU/rhGH/kg/day prevented the negative effects of MP on growth in a dose dependent manner and normalized growth plate architecture. In uremic rats in which food efficiency and growth was already reduced, 6 mg MP/kg/day further decreased length gain and prevented weight gain completely by bringing the weight gain/food conversion ratio to the nadir. All effects of MP including reduction of muscle mass could be prevented by concomitant treatment with 10 IU rhGH/kg/day. The effects of MP and rhGH on food efficiency and growth in uremic animals were numerically nearly identical to those in pair fed ad libitum fed controls, but this may be more relevant in the diseased organism in which basal growth is already suppressed.
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Total lipids, lipoprotein-lipids, and apolipoproteins were studied in plasma of 20 patients, aged 13.9 +/- 3.4 y (mean +/- SD; range 7.4 to 19 y), who were treated with continuous peritoneal dialysis for a period of 2.1 +/- 1.2 (range 0.5 to 4.9) y. Measurements included total plasma cholesterol and triglycerides, triglycerides in the very low density fraction, and cholesterol in the very low density, low density, and high density fractions, as well as apo A-I and apo B. The results were compared with values in 17 healthy control subjects, aged 13.0 +/- 5.1 (range 5.1 to 19) y. The patients had significantly elevated levels of total plasma triglycerides, triglycerides in the very low density fraction, total plasma cholesterol, cholesterol in the very low density fraction, and cholesterol in the low density fraction, whereas levels of cholesterol in the high density fraction were normal. Plasma apo B levels were elevated, but apo A-I levels were not different from controls. In addition, the nutritional status of the patients was assessed and apo A-I and apo B concentrations were measured in the dialysate of 10 patients. The losses of apo A-I and apo B in dialysate averaged 13.4 +/- 7.4 and 2.1 +/- 3.1 mg/kg/d, respectively. Lipoprotein profiles were not correlated with nutritional status. We conclude that pediatric patients treated with continuous peritoneal dialysis have atherogenic lipoprotein profiles, cholesterol ratios, and apolipoprotein ratios, but normal cholesterol in the high density fraction and apo A-I levels despite considerable apo A-I losses in the dialysate.
Hypothalamic production of growth hormone releasing hormone stimulates the anterior pituitary gland to release growth hormone (GH). The clinical manifestations of GH on tissues are either direct or are mediated by insulin-like growth factors (IGF). Both the somatic effects of GH and the renal manifestations of an increase in glomerular filtration rate and renal plasma flow are mediated by IGF. The increase in glomerular filtration rate/renal plasma flow that occurs with either exogenous or endogenous GH is not apparent in patients with chronic renal failure (CRF); therefore, it is unlikely that recombinant human growth hormone (rhGH) treatment of patients with CRF will result in glomerular hyperfiltration. Longitudinal studies are required to determine if the glomerulosclerosis and renal functional impairment occurring in GH and growth hormone releasing hormone transgenic mice occurs after rhGH treatment of growth-retarded uremic rats with GH resulted in an improvement in growth velocity. This led to preliminary studies in growth-retarded children with CRF by using rhGH. The acceleration of growth velocity was dramatic despite the fact that GH levels are elevated in uremia. The elevated IGF carrier proteins in uremic children may contribute to the growth retardation. Treatment with rhGH may be efficacious by stimulating a net increase in the free (unbound) IGF levels. Hyposecretion of GH may contribute to the failure to achieve optimal growth after successful renal transplantation. Treatment with rhGH may be efficacious in improving the growth velocity of renal allograft recipients.
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