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Biomedical subjects

S Goldfarb

Publications and source records attributed to S Goldfarb.

At least 127 records · Page 7Linked to original sources

Evidence for an intrinsic renal tubular defect in mice with genetic hypophosphatemic rickets.

To investigate the role of parathyroid hormone (PTH) and(or) an intrinsic renal tubular reabsorptive defect for phosphate in mice with hereditary hypophosphatemic rickets, we performed clearance and micropuncture studies in hypophosphatemic mutants and nonaffected littermate controls. Increased fractional excretion of phosphate in mutants (47.2+/-4 vs. 30.8+/-2% in controls) was associated with reduced fractional and absolute reabsorption in the proximal convoluted tubule and more distal sites. Acute thyropara-thyroidectomy (TPTX) increased phosphate reabsorption in both mutants and controls with a fall in fractional phosphate excretion to congruent with7.5% in both groups indicating that PTH modified the degree of phosphaturia in the intact mutants. Absolute reabsorption in the proximal tubule and beyond remained reduced in the mutants, however, possibly because of the reduced filtered load. Serum PTH levels were the same in intact mutants and normals as was renal cortical adenylate cyclase activity both before and after PTH stimulation. To evaluate the possibility that the phosphate wasting was caused by an intrinsic tubular defect that was masked by TPTX, glomerular fluid phosphate concentration was raised by phosphate infusion in TPTX mutants to levels approaching those of control mice. Phosphate excretion rose markedly and fractional reabsorption fell, but there was no change in absolute phosphate reabsorption in either the proximal tubule or beyond, indicating a persistent reabsorptive defect in the absence of PTH. We conclude that hereditary hypophosphatemia in the mouse is associated with a renal tubular defect in phosphate reabsorption, which is independent of PTH and therefore represents a specific intrinsic abnormality of phosphate transport.

Animals↗

Renal tubular sites of altered calcium transport in phosphate-depleted rats.

Increased calcium (Ca) excretion is characteristic of chronic phosphate (PO(4)) depletion (PD). To study the changes in tubular transport and the site of the hypocalciuric effect of PO(4) administration, clearance and micropuncture experiments were performed in intact rats pair fed either a control diet (0.5% PO(4)) or a PO(4)-depleted (PD) diet (0.01% PO(4)) plus Al(OH(3)) and in parathyroidectomized (PTX) PD rats, infused either with saline or with neutral sodium PO(4). Intact PD rats, compared with intact rats on a control diet, exhibited a lower plasma ultrafiltrable (UF) PO(4) (5.8+/-0.5 vs. 7.8+/-0.3 mg/dl), higher fractional excretion (FE) of Ca (4.1+/-1.2 vs. 0.6+/-0.1%), and reduced FE PO(4) (0.1+/-0.01 vs. 10.2+/-1.8%). Tubular fluid/plasma inulin was lower in the late proximal tubule of PD rats, associated with increases in fractional delivery (FD) from the proximal tubule of Na and Ca.The%FD of Ca to the early distal tubule of PD rats was increased (20+/-3 vs. 11+/-2%), but this difference was abolished by the late distal tubule (5.1+/-1.2 vs. 3.3+/-0.9%). In PTX-PD rats, PO(4) infusion increased plasma UF PO(4) (13.8+/-0.7 vs. 7.8+/-0.7 mg/dl). FE of Ca was reduced (1.08+/-0.35 vs. 4.59+/-1.57%) without correcting the increased Ca delivery to the late distal tubule. These data indicate that PD impairs Ca reabsorption in tubular segments before but not within the distal convoluted tubule, so that hypercalciuria is ultimately a result of decreased Ca transport either in the terminal nephron or in deeper nephrons where PO(4) infusion stimulates Ca transport independent of parathyroid hormone or changes in the filtered load of Ca.

Animals↗

gamma-Glutamyl transpeptidase and malignant transformation of cultured liver cells.

The relationship between gamma-glutamyl transpeptidase (GGT)and malignant cell transformation was analyzed in malignant and nonmalignant culture epithelial cell lines derived from rat livers and fibroblastic cell types derived from hamsters and mice. GGT activity was prominent (25 to 90% of cells) in 3 of 5 malignant epithelial liver cell lines. None of the 9 fibroblastic or 4 nonmalignant epithelial cell lines exhibited GGT activity. Our results suggest that by use of GGT activity we can detect in cultured liver cells a significant fraction of the spontaneously or chemically induced malignant cells. Thus, in conjunction with other markers, this marker may help in identifying tumorigenic cells in liver epithelial cultures.

Animals↗

Sex-related differences in diurnal activities and development of hepatic microsomal 3-hydroxy-3-methylglutaryl coenzyme A reductase and cholesterol 7alpha-hydroxylase.

The activities of hepatic microsomal 3-hydroxy-3-methylglutaryl CoA reductase and cholesterol 7alpha-hydroxylase were consistently higher (up to 3-fold) in female compared to male rats fed 2% cholestyramine for 8 h daily. In all animals studied, enzymic activities were highest 6 h after feeding began. However, 85% of the rise in cholesterol 7alpha-hydroxylase activity occurred in the 6 h before and 89% of the rise in 3-hydroxy-3-methylglutaryl CoA reductase activity occurred in the 6 h after feeding started. Sex-related differences in both enzymic activities first became apparent at the time of sexual maturity. Enzymic activities before weaning were generally low and a late-suckling (13--20 days) rise in cholesterol 7alpha-hydroxylase was not accompanied by a rise in 3-hydroxy-3-methylglutaryl CoA reductase. For all of these studies we assayed cholesterol 7alpha-hydroxylase at two concentrations of exogenous cholesterol to obviate problems relating to size of the cholesterol pool.

Aging↗

Mechanism of lithium-induced hypercalciuria in rats.

Chronic administration of lithium salts is associated with hypercalciuria in the rat. To study the renal and extrarenal mechanisms of this phenomenon, we utilized balance and clearance techniques in rats pair-fed diets with or without Li2CO3 (0.5 meq/day per rat). Lithium induced hypercalcemia (mean +/- SE: 5.40 +/- 0.09 VS. 5.06 +/- 0.05 meq/liter) and hypercalciuria (Ca/creatinine = 0.28 +/- 0.04 vs. 0.13 +/- 0.03) only during feeding. When CaCO2 supplement to a calcium-deficient diet was abruptly withdrawn, hypercalciuria was abolished. However, polyuria and polydipsia persisted. No significant changes in serum phosphate, urine phosphate, sodium, pH, or citrate were observed. Chronic parathyroidectomy (PTX) also abolished this effect. During clearance studies, fasting excretion of calcium was similar between treated and control animals. Superimposed acute PTX resulted in comparable changes, hence arguing against primary changes in renal calcium reabsorption or changes in parathyroid hormone effects on the renal tubule. Thus, lithium produces absorptive hypercalciuria by a mechanism dependent on intact parathyroid glands and adequate diet calcium, but independent of urine sodium, phosphate, or pH. The active component of gut calcium transport may be involved, possibly via alterations of vitamin D metabolism.

Animals↗

Dissociation of tubular sites of action of saline, PTH and DbCAMP on renal phosphate reabsorption.

The effects of saline expansion, parathyroid hormone (PTH) administration and dibutyryl cyclic 3'5'-adenosine monophosphate (DbCAMP) infusion on renal phosphate reabsorption were examined in acutely thyroparathyroidectomized (TPTX), phosphate infused dogs by the recollection micropuncture technique. Saline expansion reduced whole kidney phosphate reabsorption from a mean of 66.1 to 50.4% of filtered load. This response was entirely accounted for by an inhibition of proximal tubular phosphate reabsorption which fell from a mean of 35 to 21% of the filtered phosphate load. Both PTH and DbCAMP produced a fall in whole kidney phosphate reabsorption comparable to saline. However, this effect was the sum of inhibition of both proximal tubular and distal nephron phosphate reabsorption. These studies demonstrate the important role of the distal nephron in modulating urinary phosphate excretion.

Animals↗

Rapid increase in hepatic HMG CoA reductase activity and in vivo cholesterol synthesis after Triton WR 1339 injection.

Triton WR 1339, injected intravenously into rats, caused a 12% decrease in hepatic cholesterol within 30 minutes and a 34% decrease after 2 hours. An early and progressive increase in plasma cholesterol and triglycerides was also confirmed. Although hepatic HMG Coa reductase activity was unchanged after 30 minutes, it had increased seven-fold after 105 minutes. In vivo cholesterol synthesis measured by determining incorporation of intraperitoneally-injected 3H2O into cholesterol also showed an early increase, suggesting that the enzyme was rate controlling for cholesterogenesis under conditions of rapid stimulation. These findings strongly suggest that Triton WR 1339 stimulates hepatic cholesterogenesis by depleting hepatic cholesterol and trapping it in the blood compartment. The rapidity with which the drug acts supports the hypothesis that hepatocellular flux of cholesterol or its derivatized product could mediate the diurnal and hormonally induced fluctuations of cholesterogenesis.

Animals↗

Partial "feedback control" of beta-hydroxy-beta-methylglutaryl coenzyme A reductase activity in primary hepatocellular carcinomas.

The activity of beta-hydroxy-beta-methylglutaryl coenzyme A reductase, the rate-controlling enzyme of cholesterol synthesis, was studied in normal livers and in 64 primary hepatocellular carcinomas from rats fed a basal diet or a diet containing either 2% cholestyramine or 5% cholesterol. The average enzyme activity in hepatocellular carcinomas from rats fed the basal diet was more than twice that in normal liver. Dietary cholesterol caused a reduction in activity to one-ninth of the normal hepatic enzyme activity, whereas cholestyramine feeding resulted in a 7-fold increase above the basal level. The data tended to confirm the previously documented observation that "diet-induced feedback inhibition" of cholesterol synthesis is not expressed in hepatomas, since the enzyme activity was reduced only slightly in cancers from rats fed cholesterol. However, the activities from cancers of cholestyramine-fed rats were 2.7 times greater than those from cholesterol-fed rats. Thus, a degree of control was clearly demonstrable, although it represented only 4% of that seen in normal liver. To our knowledge this is the first report of at least partial "feedback control" of beta-hydroxy-beta-methylglutaryl coenzyme A reductase activity in hepatocellular carcinomas grown in vivo.

Animals↗

A sensitive enzymatic method for determination of free and esterified tissue cholesterol.

An enzymatic assay currently in use in clinical laboratories for quantitating total serum cholesterol has been modified for the determination of microgram quantities of tissue cholesterol. Two types of assays were developed. In the first, more generally useful method, lipids extracted with chloroform/methanol were solubilized by the addition of detergent and assayed for free and total cholesterol using laboratory prepared mixtures of reagents. Although different detergents were effective, it appears that Triton X-100 may be most universally applicable. In the second type of assay, commercially available reagent mixtures were employed for the determination of total cholesterol only. Results of both types of assays compare favorably with determination using the colorimetric assay on 3beta-hydroxysterols recovered from digitonides.

Animals↗

Acute effects of bovine growth hormone on renal calcium and phosphate excretion.

To evaluate the acute effects of bovine growth hormone upon renal hemodynamics and urinary electrolyte excretion, clearance studies were performed in intact and thyroparathyroidectomized dogs, receiving either vehicle alone or bovine growth hormone. Growth hormone had no effect when compared to controls upon glomerular filtration rate, renal plasma flow, or clearance of sodium, calcium, and phosphate either in the presence or absence of parathyroid hormone. It is concluded that acute changes in circulating growth hormone levels do not play an important role in calcium and phosphate homeostasis. The data suggest that previously described antiphosphaturic and hypercalciuric actions of growth hormone are not due to direct acute renal tubular effects but may be the result of indirect effects of chronic growth hormone administration.

Animals↗

The pathophysiology of acid-base changes in chronically phosphate-depleted rats: bone-kidney interactions.

Acid-base disturbances may develop secondary to the changes in renal tubular function and bone dynamics which attend phosphate depletion (PD). This work characterizes the acid-base status of rats fed a low phosphate diet. After 18 days, PD rats had marked calciuria (pair-fed controls: 0.3 +/- 0.2; PD 32.2 +/- 2.5 mueq/h; P less than 0.001), severe bicarbonaturia (controls: 0; PD 17.6 +/- 0.2 meq/h; P less than 0.001), and negative net acid excretion (controls: 44.5 +/- 2.9; PD: --6.6 +/- 2.5 meq/h; P less than 0.001), but plasma pH, HCO3, and PCO2 were equal in both groups. After 45 days, plasma HCO3 fell to 21.1 +/- 0.9 meq/liter in PD (controls: 23.6 +/- 0.5 meq/liter; P less than 0.05), while bicarbonaturia (controls: 0.4 +/- 0.2; PD: 3.8 +/- 1 mueq/h; P less than 0.02) and calciuria were present but diminished. These data suggested the coexistence of bone HCO3 mobilization and renal HCO3 wasting in PD. To test this thesis, bicarbonaturia was eliminated by nephrectomy. 24 h later plasma HCO3 was higher in PD rats (controls: 19.3 +/- 0.02; PD: 22.6 +/- 0.8 meq/liter; P less than 0.05), consistend with the presence of extrarenal HCO3 production. After inhibition of bone resorption with colchicine (1 mg/kg), plasma HCO3 decreased to 16.8 +/- 0.6 meq/liter in PD rats (controls): 26.4 +/- 1 meq/liter; P less than 0.001) while bicarbonaturia persisted. These data indicate that the plasma HCO3 in PD is the net result of renal HCO3 wasting and bone HCO3 mobilization. These combined effects maintain normal blood HCO3 initially (18 days) but with time (45 days), bone resorption diminishes and the acidifying renal tubular defect predominates.

Acid-Base Imbalance↗

Renal tubular effects of chronic phosphate depletion.

The effects of chronic phosphate depletion on renal tubular function were evaluated by micropuncture and free water clearance studies in the dog. Proximal tubular punctures demonstrated that chronic hypophosphatemia led to a reduction in ratio of tubular fluid to plasma inulin in late superficial tubular from 1.59+/-0.08 in control animals to 1.29+/-0.06 in phosphate-depleted dogs, with proportional inhibition of calcium and sodium reabsorption. The chronic decrease in proximal tubular fluid reabsorption was confirmed by the analysis of sustained water diuresis in conscious, phosphate-depleted dogs, before and after repletion of body PO4 stores, and in control animals. Urine flow rate/100 ml glomerular filtration rate (V/GFR) was significantly higher in PO4 DEPLETION THAN CONTROL (15.8+/-1.1 VS. 10.7+/-0.82). In addition, acetazolamide infusion did not increase V/GFR in phosphate-depleted dogs (15.8+/-1.1 vs. 17.16+/-0.9), supporting the conclusion that inhibition of proximal tubular fluid reabsorption was responsible for the elevated urine flow rate. PO4 repletion over 5 days reduced V/GFR to 9.2+/-0.7 despite no change in urine osmolality and no change in GFR, further suggesting a specific reversible alteration in proximal tubular reabsorption in phosphate depletion. Although hypercalciuria was a constant finding in phosphate depletion (fractional excretion of calcium of 2.04+/-0.4% vs. 0.47+/-0.13% in controls), the enhanced distal delivery of calcium was not a crucial factor; acute phosphate infusion reduced urinary calcium excretion to control values without affecting the reduced proximal tubular reabsorption in either intact or thyroparathyroidectomized phosphate-depleted dogs the change in distal nephron calcium reabsorption was independent of parathyroid hormone (PTH) levels since infusion of PTH failed to alter urinary calcium excretion. We conclude that chronic phosphate depletion leads to a reversible, sustained inhibition in proximal tubular reabsorptive fuction as well as a specific decrease in distal nephron calcium reabsorption. This latter reabsorptive defect is sensitive to phosplate infusion but not corrected by PTH.

Acetazolamide↗