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Biomedical subjects

W Flamenbaum

Publications and source records attributed to W Flamenbaum.

82 records · Page 5Linked to original sources

Micropuncture studies of proximal tubule albumin concentrations in normal and nephrotic rats.

The concentration of serum albumin in proximal tubule fluid of normal rats and animals with aminonucleoside nephrosis was studied using renal micropuncture techniques. Albumin was quantitated by an ultramicrodisc electrophoresis method capable of measuring 3 chi 10(-11) g of albumin, in 10 nl volumes. With this sensitivity, only small samples of tubule fluid were required for analysis. Collection times could be kept short, therefore decreasing the opportunity for sample contamination with extraneous serum albumin. The measured mean concentration of albumin in proximal tubule fluid (1 mg/100 ml in females and 0.7 mg/100 ml in males) was somewhat lower than values reported by others, but even these values are apt to have been artifactually high as a result of animal preparation and trace contamination of samples during micropuncture. Rats injected with aminonucleoside of puromycin 4 days earlier, showed a significant increase in tubule-fluid albumin concentration coincident with a fall in serum albumin concentration and a 43-fold increase in urine albumin concentration. Tubular absorption of albumin was small relative to that of water. Although albumin filtration was significantly increased over that in normal animals, the glomerular basement membrane still served as a highly efficient barrier to albumin transfer.

Albuminuria↗

Bumetanide-induced diuresis and natriuresis: effect of prostaglandin synthetase inhibition.

The effects on the renal actions of bumetanide of two inhibitors of prostaglandin synthetase, acetylsalicylic acid (ASA) and indomethacin, were studied in eight normal adults. Indomethacin alone resulted in a significant decrease in FENa compared to the control period. Bumetanide alone resulted in increases in urine volume, FENa, and plasma renin activity. Both ASA and indomethacin blunted the increases in urine volume and sodium excretion, although the inhibition by indomethacin was greater than that of ASA. In addition, indomethacin completely inhibited the bumetanide-induced increase in plasma renin activity. No consistent relationship between these effects and urinary prostaglandin E2 or F excretion was noted. These studies indicate that prostaglandin synthetase inhibitors may interfere with the effects of bumetanide.

Adult↗

Pharmacology, therapeutic efficacy, and adverse effects of bumetanide, a new "loop" diuretic.

Bumetanide is a recently developed natriuretic and diuretic agent, belonging to the "loop" class of diuretics. Since it is rapidly and almost completely absorbed after oral administration, oral and parenteral formulations have a similar pharmacokinetic profile. Peak plasma levels are achieved approximately 30 min after oral administration. The apparent half-life is 1.2-1.5 hr, and the volume of distribution is about 25 liters. Plasma clearance is 228-255 ml/min. Bumetanide is promptly and almost completely eliminated by metabolism of the butyl side chain and urinary excretion of the parent drug and its metabolites. The principle renal site of action is the ascending limb of the loop of Henle, with a minor effect on the proximal tubule. The drug causes decreases in both free water clearance (during water diuresis) and solute free water reabsorption (during hydropenia), increased fractional delivery of sodium chloride to the distal tubule and a natriuresis approaching 20% of the filtered load of sodium, calciuria, phosphaturia, and minimal bicarbonaturia. Extensive clinical studies have been conducted with both oral and parenteral bumetanide in patients with a variety of edematous conditions. The agent has been clearly demonstrated to be an effective diuretic in the treatment of edema due to cardiac disease (congestive heart failure) and edema, with or without ascites, due to hepatic disease. Bumetanide has also been shown effective in treating edema due to renal disease, even when modest to severe renal insufficiency is present, and it may be useful in the treatment of edema refractory to other loop diuretics. As would be predicted for any potent diuretic, bumetanide administration has been associated with hypokalemia, hypochloremia, metabolic aklalosis, hyperuricemia, and prerenal azotemia. Alterations in glucose metabolism are an inconsistent finding. Transient thrombocytopenia and granulocytopenia have been noted, but no consistent or important alterations in biochemical parameters have been observed. In some patients, especially those with renal failure receiving high doses, myalgias and muscle tenderness have been described. To date only a very limited potential for ototoxicity has been observed. Bumetanide has been administered without difficulty to patients having side effects from other loop diuretics.

Animals↗

Effect of lovastatin on serum lipids in patients with nonfamilial primary hypercholesterolemia.

The effect of lovastatin on serum lipids and its tolerability in patients with non-familial primary hypercholesterolemia (type II-A and type II-B) during a six-month period were evaluated in this open-label study. Thirty-eight patients were enrolled in the study; tolerability was assessed in all 38 patients. Thirty patients completed the study, and the effect of lovastatin on serum lipids in these patients was assessed. Some patients had been treated for hypercholesterolemia with long-term dietary and other non-pharmacologic means before entry into the study. All patients were unresponsive to a six-week program of intensive dietary therapy and other nonpharmacologic treatment to lower their blood cholesterol levels before receiving lovastatin. While maintaining intensive dietary therapy, administration of lovastatin was instituted at a dosage of 20 mg/day, which was increased by 20-mg increments monthly, as necessary, to a maximum of 80 mg/day. In an effort to achieve goal levels of low-density lipoprotein cholesterol (LDL-C), ten patients received a daily dosage of 20 mg, 12 patients received 40 mg, seven patients 60 mg, and one patient 80 mg. Twenty-nine of the 30 patients achieved significant lowering of serum levels of total cholesterol (TC), LDL-C, and apolipoprotein (apo) B-I; this was demonstrated after the first month of therapy with lovastatin and was maintained throughout the six-month treatment period. One patient failed to demonstrate lowering of these serum lipids, despite receiving the maximum recommended dosage of lovastatin of 80 mg/day. Comparative measurements of serum lipids during dietary therapy alone and after six months of diet plus lovastatin therapy were as follows: TC, 289 +/- 5 versus 216 +/- 9 mg/dl (P less than 0.0005); LDL-C, 206 +/- 4 versus 141 +/- 5 mg/dl (P less than 0.0005); and apo B-I, 112 +/- 3 versus 89 +/- 2 mg/dl (P less than 0.0005). Serum levels of very-low-density lipoprotein cholesterol (VLDL-C) and triglycerides decreased slightly during lovastatin therapy, but the changes were not statistically significant. There were slight but statistically insignificant increases in serum levels of high-density lipoprotein cholesterol (HDL-C), apo A-I, and apo A-II.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗