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Erythropoietin deficiency causes anemia in nephrotic children with normal kidney function.

Anemia in persistent nephrotic syndrome (NS) has been described in a few case reports but has not been studied systematically. We present a group of 19 children with NS who developed anemia before the deterioration of kidney function. The aim of our study is to determine whether erythropoietin (EPO) and/or iron deficiency are causative factors and to evaluate the effect of EPO replacement therapy. Serum EPO levels, iron status, and vitamin B(12) concentrations were measured in nephrotic patients with anemia (NS-A) and compared with those of nephrotic children with normal hemoglobin (Hb) levels (NS-NHb; n = 13). Two control groups consisted of age-matched patients without kidney disease or hypoxemia with either iron deficiency anemia (IDA; n = 19) or normal Hb concentrations (NHb; n = 16). Most NS-A patients experienced persistent steroid-resistant NS, whereas most NS-NHb children had steroid-responsive NS. Although serum iron, ferritin, and B(12) levels were significantly lower in NS-A children, appropriate replacement therapy that resulted in normalization of ferritin and/or cobalamin levels did not lead to correction of the anemia. NS-A patients had greater EPO levels than those without anemia (21.6 +/- 3.3 versus 5.5 +/- 0.8 IU/L; P: < 0.001), but their response to anemia was inappropriately low compared with IDA children (EPO, 94.6 +/- 15.1 IU/L) despite similar Hb concentrations. EPO therapy for 4 to 9 months in 6 NS-A children with Hb levels less than 9 g/dL led to resolution of the anemia. In conclusion, anemia is a common feature of persistent NS that develops before the deterioration of kidney function. Depletion of iron stores may contribute to the development of anemia, but iron replacement therapy is ineffective. Nephrotic patients have EPO deficiency with a blunted response to anemia. The EPO deficiency is amenable to EPO therapy, which is recommended for this group of patients.

Adolescent↗

Absolute 24 h quantification of 99Tcm-DMSA uptake in patients with severely reduced kidney function: a comparison with 51Cr-EDTA clearance.

The aim of this study was to determine whether absolute 24 h DMSA uptake measurements (%DMSA) correlate well with 51Cr-EDTA clearance measurements in patients with severely reduced kidney function (SRKF). Between 1990 and 1997, 55 of 482 patients who underwent EDTA clearance measurements also underwent %DMSA within 1 week. Of these, 31 were women and 24 were men (mean age 60 years; range 19-77 years). EDTA clearance was determined using the slope-intercept method. Absolute depth- and background-corrected %DMSA were determined 24 h following the injection of 185 MBq per 1.73 m2 freshly prepared 99Tcm-DMSA. All patients had EDTA clearance < or = 60 ml.min-1. Eighteen patients (group A: 9 men and 9 women, mean age 55.8 years, range 28-73 years) had EDTA clearance > 20 ml.min-1 (mean +/- S.D. = 30.9 +/- 13.8 ml.min-1), whereas 37 patients (group B: 22 women and 15 men, mean age 62.0 years, range 19-77 years) had EDTA clearance < 20 ml.min-1 (mean +/- S.D. = 10.2 +/- 6.6 ml.min-1). EDTA clearance correlated well with %DMSA for the patients as a whole and for group A (r = 0.87, P = 0.73; r = 0.79, P = 0.0001 respectively). The regression equation suggests that %DMSA is not a marker of early renal dysfunction. In group B, the r-value (r = 0.48, P = 0.004) suggests that %DMSA is reliable as a marker of severe renal dysfunction to the extent that it provides rough information. In conclusion, %DMSA may not be used as a marker of early renal impairment. Additionally, in patients with severely reduced kidney function (EDTA clearance < 20 ml.min-1), it only provides a rough estimate.

Adult↗

[Lithium treatment and kidney function].

Systematic cross-sectional and longitudinal examinations of the kidney function of patients in prophylactic lithium treatment have established that the therapy, even when given for many years, does not affect the glomerular filtration rate or lead to kidney failure. Lithium treatment may induce polyuria and lowered renal concentrating ability, but these side effects do not presage deterioration of the filtration rate, and they are not dangerous if dehydration is avoided. It is now possible to revise and simplify the guidelines for laboratory monitoring of maintenance treatment with lithium.

Bipolar Disorder↗

A longitudinal study of the kidney function of the chimpanzee (Pan troglodytes) in comparison with humans.

A prospective study of the kidney function of chimpanzees (Pan troglodytes) kept at the Hans Popper Primate Centre has been performed within the last 10 years. The aim of the study was to analyse urine samples for specific gravity, to determine serum creatinine, serum urea, and urinary creatinine, and to calculate creatinine clearance and reference values for healthy chimpanzees. From 1750 urine specimens of adolescent and 568 of infant chimpanzees a mean specific gravity value of 1.013 +/- 0.006 (standard deviation) kg/l and 1.007 +/- 0.003 (standard deviation) kg/l, respectively, was calculated. Serum creatinine was determined in 1864 single samples from 52 chimpanzees; a median value of 101.8 mumol/l (P (5%) 79.6 mumol/l, P (95%) 139.7 mumol/l) was calculated, which is higher than that in humans. Serum urea tests (n = 1831) in the same 52 chimpanzees resulted in a median value of 2.01 mmol/l (P (5%) 0.86 mmol/l, P (95%) 4.78 mmol/l). The calculated median creatinine clearance value of 23.9 ml/min (P (5%) 4.4 ml/min, P (95%) 65.3 ml/min) is lower in chimpanzees than in man. A correction of the creatinine clearance values to the body surface area of 1.73 m2, as routinely performed in humans, gave unusually high results, as there was no proper equation to calculate the surface area of chimpanzees. The use of estimation equations for creatinine clearance values of chimpanzees as developed for humans is therefore not recommended.

Animals↗

Diminished kidney function and nephrocalcinosis in rats fed a magnesium-deficient diet.

The effect of a magnesium-deficient diet on kidney function was studied in young male rats. The rats were fed a purified diet with a magnesium content of either 20.5 (control diet) or 2.6 mmol/kg (magnesium-deficient diet) for 21 d. In rats fed the magnesium-deficient diet, kidney wet and dry weights were significantly increased, and calcium and phosphorus concentrations in the kidney were significantly higher than in rats fed the control diet. Upon histological examination, an increase in the mesangial matrix of the glomeruli and injury to the brush border of the proximal tubules were observed in rats fed the magnesium-deficient diet. Also, a deposition of calcium was observed in the tubules of the corticomedullary junction and medulla of these rats. Total protein and albumin concentrations in serum were significantly decreased in rats fed the magnesium-deficient diet. Urinary albumin excretion was significantly higher, and N-acetyl-beta-D-glucosaminidase activity in the urine was significantly increased in rats fed the magnesium-deficient diet. These findings indicate diminished glomerular and proximal tubular functions. We suggest that a magnesium-deficient diet not only induces nephrocalcinosis, but it also diminishes kidney function.

Acetylglucosaminidase↗

[Prevention of calculus recurrence in impaired kidney function].

The pathophysiologic consequences of renal function impairment and chronic renal failure among others result from the loss of excretory and regulatory functions of the kidneys. The role of the exchange of cellular hydrogen ions of tubular fluid in the reabsorption of bicarbonate and in the urinary excretion of titratable acid and ammonia (acid-base regulation) is outlined. The effects of decreased glomerular filtration rate on calcium and phosphorus homeostasis are discussed. De novo urolithiasis in these patients is uncommon. However, it is well recognized that they may form matrix stones with calcium oxalate inclusions. Of greater significance is the prophylaxis in those patients, in whom urolithiasis has been the cause of chronic renal failure. In these patients it is of importance to modify the drug dosage or to abandon the prophylaxis when it interferes with the metabolic changes of renal function impairment. Some agents require no modification, others minor or major modifications. Some are even contraindicated. Hazards of stone prophylaxis in chronic renal failure: Acidification - cave metabolic acidosis! Cave RTA! Antibiotic agents - special rules to prevent accumulation. Thiazides - contraindicated! Hypokalemia; hyperuricemia; cave HPT! Triamterene - contraindicated! Acetazolamide (cystinuria) - contraindicated. Spironolactone - contraindicated. Sodium-cellulose-phosphate - Hyperoxaluria, hypomagnesiuria , hyperphosphatemia, cave HPT. Orthophosphate - cave urinary infection, cave poor renal function, cave obstruction. Allopurinol - dose reduction advisable. Brenzbromaron - contraindicated.

Acid-Base Equilibrium↗

Glutathione status, lipid peroxidation and kidney function in streptozotocin diabetic rats.

In adult female rats diabetic nephropathy was induced by i.v. administration of streptozotocin (6 mg/100 g b.w.). The animals survive for 3 weeks when very low daily doses of insulin (0.3 IU/animal) are administered. High blood urea concentrations and distinct proteinuria indicate the impairment of kidney function in streptozotocin diabetic rats. Streptozotocin induces mild polyuria and increased renal excretion of potassium; there is also an increase in renal excretion of administered p-aminohippurate. Three weeks after administration of streptozotocin the formation of lipid peroxides is increased in the kidney. At this time glutathione content (GSH, GSSG) is unchanged in liver and kidney of streptozotocin diabetic rats. Impairment of kidney function in streptozotocin diabetic rats can be prevented by daily supplementation with sufficient doses of insulin (about 3 IU/animal).

Animals↗

Revascularization of the poorly functioning kidney.

The effect of renal vascularization on renal function in kidneys with poor preoperative excretory function is summarized in this report. Twenty-five patients with kidneys having preoperative creatinine clearance of less than 30 ml/min, as determined during split renal function studies (SRFS), which were revascularized for treatment of secondary renovascular hypertension and then were reevaluated by repeat SRFS form the basis of this report. There were 13 male and 12 female patients. The type of renal artery lesion was atherosclerotic in 21 patients and fibromuscular dysplastic in four patients. Eight individuals had total renal artery occlusion. Significant contralateral renal artery disease was present in 15 patients (60%). Preoperative creatinine clearances in the affected kidneys ranged from 0.27 ml/min (mean, 16 +/- 9 ml/min). after operation, creatinine clearances ranged from 0 to 72 ml/min (mean, 32 +/- 16 ml/mn). Fifteen of the 16 kidneys with preoperative creatinine clearances less than 20 ml/min had improvement in renal function following revascularization (P less than 0.01). Improvement (60%) or cure (36%) in hypertension followed revascularization in 24 of the 25 patients. The most dependable predictor of successful management of both hypertension and retrieval of renal function in these patients was the arteriographic demonstration of a patent distal vessel without evidence of severe intrarenal stenoses. These results support an aggressive attitude toward the use of revascularization in the operative treatment of such patients with renovascular hypertension, even when the residual excretory function is minimal or absent.

Adult↗

The influence of cortisol excess on kidney function in the dog.

The effects of cortisol excess on kidney function were studied in 8 normal conscious dogs. Cortisol was given orally until polyuria developed. Cortisol excess decreased urine osmolality (from 897 +/- 76 to 186 +/- 36 mosm. kg-1) and increased urine production (from 0.7 +/- 0.1 to 9.3 +/- 2.4 ml kg-1. h-1). The glomerular filtration rate increased by 23 +/- 9 per cent. Sodium and potassium concentrations in plasma were decreased. 66 Per cent of the increase in urine production was due to the increase in free water clearance and 34 per cent to the increased urea excretion. Cortisol excess apparently caused polyuria by inhibition of the action of ADH in the collecting duct, resulting in a decreased water and urea reabsorption. The decreased urea reabsorption possibly causes a smaller urea recirculation in the renal medulla and hence a decrease in concentrating capacity.

Animals↗

Effects of insulin on kidney function and sodium excretion in healthy subjects.

Insulin action on kidney function was evaluated in 8 healthy subjects, (mean age 27 years) using the euglycaemic clamp technique. Insulin was infused at rates of 0, 20 and 40 mU.min-1.m-2 over consecutive periods of 120 min resulting in plasma insulin concentrations of 8 +/- 2, 29 +/- 7 and 66 +/- 14 mU/l. The renal clearance of 51Cr-EDTA, lithium, sodium and potassium was determined during the last 90 min of each period. Sodium clearance declined with increasing plasma insulin concentrations (1.3 +/- 0.4, 1.0 +/- 0.3 and 0.5 +/- 0.2 ml.min-1.1.73 m-2, p less than 0.001), while glomerular filtration rate (108 +/- 21, 104 +/- 21 and 108 +/- 20 ml.min-1. 1.73 m-2) and lithium clearance (a marker of fluid flow rate from the proximal tubules) 29 +/- 5, 29 +/- 4 and 30 +/- 4 ml.min-1.1.73 m-2) remained unchanged. Calculated proximal tubular reabsorption of sodium and water was unchanged, while calculated distal fractional sodium reabsorption increased (95.5 +/- 1.5, 96.4 +/- 1.2 and 98.1 +/- 0.7%, p less than 0.001). Potassium clearance and plasma potassium concentration declined, whereas plasma aldosterone and plasma renin concentrations were unchanged. In conclusion, elevation of plasma insulin concentration within the physiological range has a marked antinatriuretic action. This effect is located distally to the proximal renal tubules.

Adult↗

The effect of glucagon infusion on kidney function in short-term insulin-dependent juvenile diabetics.

Kidney function was studied in nine, metabolically well controlled, short-term insulin-dependent male diabetics before and during glucagon infusion of 4 to 5 and 8 to 10 ng/kg/min. Glomerular filtration rate, effective renal plasma flow (steady-state infusion technique, with urinary collections, using 125I-iothalamate and 131I-iodohippurate), and urinary albumin and beta 2-microglobulin excretion rates were measured. The mean plasma glucagon concentration increased during infusion from 254 +/- 19 pg/ml to 440 +/- 31 pg/ml (low dose) and 730 +/- 52 pg/ml (high dose). Glomerular filtration rate increased in all subjects from 133 +/- 5 before the glucagon infusion to 141 +/- 4 with the low dose, and 148 +/- 7 ml/min/1.73 m2 with the high dose (p < 0.01). The increase in glomerular filtration rate correlated with the rise in plasma glucagon concentration (r = 0.67; p < 0.01). Renal plasma flow increased from 530 +/- 21 before the glucagon infusion to 555 +/- 20 with the low dose and 572 +/- 29 ml/min/1.73 m2 with the high dose (p < 0.01). Urinary beta 2-microglobulin excretion rate rose from 5.8 +/- 1.0 before infusion to 8.7 +/- 1.7 with the low dose, and 17.9 +/- 5.7 micrograms X 10(-2)/min with the high dose (p < 0.01). Urinary albumin excretion remained unchanged during the glucagon infusion. These results suggest that glucagon may contribute to the reversible elevation of glomerular filtration rate typically found in poorly regulated insulin-dependent diabetics, but not to the moderate elevation found in well controlled diabetics.

Adolescent↗

Effects of lumbar sympathetic block on kidney function in cirrhotic patients with hepatorenal syndrome.

We studied the effects of unilateral lumbar sympathetic block on kidney function in eight patients with cirrhosis and hepatorenal syndrome. In five patients with basal glomerular filtration rate (GFR) below 25 ml/min, sympathetic block induced a significant increase in GFR, osmolal clearance, urinary sodium excretion, fractional excretion of filtered sodium (FENa) and effective renal plasma flow (ERPF) and a decrease in plasma renin activity. In the three patients with basal GFR greater than 25 ml/min, sympathetic block produced no significant change in renal function. We conclude that sympathetic block might improve renal function in cirrhotics with hepatorenal syndrome, particularly those with more impaired GFR.

Adrenergic Fibers↗

The effects of dopamine on kidney function of rats.

The dose-response effects of dopamine on kidney function were studied in rats. Th arterial blood pressure was increased only transiently, after continuous intravenous infusion of dopamine for 2 hr, while heart rate was elevated throughout. Drastic diuresis was usually observed during the early phase of infusion especially when the dose of dopamine was greater than 46 micrograms/min-kg BW. Natriuresis was also found to be dose-dependent but its duration was much more prolonged than diuresis. Both, the increase in glomerular filtration rate (GFR) and reduction in tubular salt reabsorption may be responsible for this elevation in the rate of sodium excretion. Dopamine, at low dose, insignificantly increased the GFR but at a higher dose (90 micrograms/min-kg BW), a 16% increment was observed. This elevation in GFR may not be due to a concomitant increase in the renal blood flow, since phenoxybenzamine, an alpha-adrenergic blocking agent, which would further reduce the renal vascular resistance, abolished the effects of dopamine on GFR, diuresis and natriuresis. It was suggested that the increase in GFR may be due to the differences in the responsiveness of the afferent and the efferent arterioles to dopamine, in the presence of normal alpha-adrenergic receptors. Dopaminergic receptors in the kidney of rat, if present, may not play a significant role in determining the renal function.

Animals↗

Percutaneous transluminal angioplasty for renal artery stenosis in a solitary functioning kidney.

In five patients with hypertension and marked impairment of renal function due to renal artery stenosis in a solitary functioning kidney, a nonsurgical technique, percutaneous transluminal angioplasty, was used to dilate the stenotic renal artery. Blood pressure improved in all five patients, and renal function improved in three. One patient subsequently died of multiple cardiovascular complications, and in one patient the procedure resulted in acute renal failure requiring hemodialysis. Although preliminary, this experience suggests that percutaneous transluminal angioplasty may provide an attractive alternative to surgery in severely ill patients at high surgical risk.

Aged↗

[Effect of chemotherapy on kidney function in pyelonephritis due to calculi with kidney insufficiency].

In patients with stone pyelonephritis the behaviour of the renal function under the influence of chemotherapy was examined at the stage of the compensated retention. 24 cures carried out on clinical conditions on 10 patients with an average age of 52 years (14--71) were evaluated. By means of chemotherapy in connection with the treatment of anaemia and the compensation of acidosis the renal function could favourably be influenced and the terminal stage of the renal insufficiency could be shifted. The author adopts a definite attitude to the long-term prophylaxis.

Adolescent↗

Kidney function and lithium concentrations of rats given an injection of lithium orotate or lithium carbonate.

A recent study by Kling et al (1978) noted the finding of higher lithium concentrations in serum and brain of rats after an intraperitoneal injection (2 mmol lithium kg-1) of lithium orotate as a slurry than of lithium carbonate in solution. The authors suggested that lithium orotate might offer advantages in the treatment of patients. We repeated the experiments of Kling et al but in addition examined the kidney function of the rats. Glomerular filtration rate and urine flow were markedly lower in rats given lithium orotate than in rats given lithium carbonate, sodium chloride or a sham injection. The renal lithium clearance was significantly lower, the kidney weight and the lithium concentrations in serum, kidney and heart significantly higher after injection of lithium orotate than after injection of lithium carbonate. The higher lithium concentrations could be accounted for by the lower kidney function. It seems inadvisable to use lithium orotate for the treatment of patients.

Animals↗

[Nuclear medicine diagnosis of kidney function in unilateral urinary tract dilatation in childhood].

Ultrasound accurately detects hydronephrosis in infants and children, while nuclear medicine techniques quantify relative renal function in addition to characterize the urodynamic relevance of hydronephrosis. Because ultrasound fails to estimate the potential reduction of relative kidney function with more severe hydronephrosis and moreover, renal function is not necessarily affected by hydronephrosis, renal scintigraphy is indicated to assess the functional status of hydronephrotic kidneys for both, split renal function and postrenal urine drainage without and, if necessary, with furosemide intervention.

Adolescent↗

Effect of pancreas transplantation on life expectancy, kidney function and quality of life in uraemic type 1 (insulin-dependent) diabetic patients.

The aim of our study was to evaluate the effects of haemodialysis, kidney transplantation and simultaneous kidney and pancreas transplantation on survival of diabetic subjects and on kidney function. 40 Type 1 (insulin-dependent) diabetic patients received a kidney transplantation: in 31 cases the kidney was transplanted simultaneously to a pancreas graft from the same donor (KP group), while in 9 cases the pancreas was not available (K group). 44 uraemic Type 1 (insulin-dependent) diabetic patients on dialysis and in waiting list for kidney transplantation, constituted the control group (HD group). Patient survival rate 1, 3 and 5 years following transplantation was better in KP group (93%, 89%, 89%, respectively) and in K group (88%, 88%, 73%, respectively) and in HD group (88%, 62%, 51%, respectively). Kidney graft survival at 1, 3 and 5 years post-transplant was better in KP group (93%, 72%, 72%, respectively) than in K group (76%, 61%, 31%, respectively). 1 year after transplantation, patients of the KP group who had lost the pancreas for technical reasons (thrombosis) were included in the K group so as to evaluate the effect of the transplanted pancreas on long-term patient and kidney survival. Patient survival rate in the KP group (17 patients) at 2 and 4 years was 100%, while at the same intervals it was 78% in the K group (13 patients). Kidney graft function rate at 2 and 4 years was 93% in the KP group (17 grafts) and 54% and 27% respectively in the K group (14 grafts).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗