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Biomedical subjects

F A Neves

Publications and source records attributed to F A Neves.

5 recordsLinked to original sources

Cathepsin B is a prorenin processing enzyme.

Conversion of prorenin to renin results from proteolytic cleavage of a 43-amino-acid prorenin prosegment in renal juxtaglomerular cells. The enzyme that performs this processing is not known. Of several enzymes proposed, cathepsin B is a candidate because it colocalizes with renin in juxtaglomerular cell secretory granules and accurately cleaves the prosegment of human prorenin in vitro. It is not known whether cathepsin B can perform this function in the cell. We examined this using secretory granule-containing rat GH4C1 cells transfected with a human preprorenin expression vector. When treated with secretagogue (KCl 50 mmol/L + forskolin 10 micromol/L), these cells secrete 95% prorenin and 5% active renin into the medium, indicating little prorenin processing activity. In contrast, when the cells are cotransfected with a vector that expresses human preprocathepsin B or mouse prohormone convertase 1, secretagogue-induced secretion of active renin increased to 12% and 16.5%, respectively. With antisera that recognize the prosegment and renin, prorenin and renin were identified as proteins of 47 and 43 kD, respectively, and an antibody specific to the prosegment precipitated only the 47-kD species. These results do not address whether cathepsin B is the authentic renal prorenin processing enzyme. However, the results do demonstrate that cathepsin B can localize to the appropriate subcellular compartment and process prorenin to renin in GH4C1 cells and are consistent with a role for this enzyme in prorenin processing.

Animals↗

Urapidil compared with diuretics in the treatment of mild-to-moderate essential hypertensive patients: effects on glucose metabolism, insulin sensitivity, and lipid profile.

In this study, 14 mild-to-moderate essential hypertensive patients of both sexes were studied with regard to the effects of two different treatments, urapidil (60 to 180 mg/day) and diuretics (chlorthalidone and hydrochlorothiazide-25 to 50 mg/day) on glucose metabolism, insulin sensitivity and plasma lipid profile. Blood pressure was equally reduced by both treatments. However, urapidil treatment was accompanied by significant lower plasma levels of cholesterol, HDL-cholesterol and triglycerides as compared with diuretic treatment. Also, a significantly higher insulin sensitivity index, determined by the euglycemic insulin clamp technique, was observed during urapidil therapy. Our results demonstrated that urapidil is as effective as diuretics in reducing blood pressure of essential hypertensive patients, with the potential advantage of a favorable profile in regard to the glucose and lipid metabolisms.

Adult↗

Rapid eye movement sleep deprivation and hypertension. Genetic influence.

We studied the importance of genetic predisposition in the development of stress-induced hypertension in the spontaneously hypertensive rat (SHR), Wistar-Kyoto (WKY) rat, and borderline hypertensive rat (BHR; first-generation offspring of SHR and WKY). Rats were submitted to seven 72-hour sessions of rapid eye movement sleep deprivation (REM-sd) every other week during 13 weeks. Tail arterial pressure was determined throughout the experiment. At the end of the study, mean arterial pressure (direct measurement), sympathetic activity (acute blockade with propranolol and phentolamine), and ventricular weight were determined. Results showed that REM-sd induced sustained hypertension only in rats with a partial predisposition to developing hypertension (BHRs). Values of tail arterial pressure at the end of the study were BHR REM-sd, 175 +/- 1.6 mm Hg and control BHR, 155.9 +/- 0.9 mm Hg, p less than 0.05; SHR REM-sd, 219 +/- 2.6 mm Hg and control SHR, 211.9 +/- 3.4 mm Hg, NS; WKY REM-sd, 123.9 +/- 2 mm Hg and control WKY, 125.4 +/- 2.2 mm Hg, NS. Stressed groups showed higher reduction of mean arterial pressure than their controls when submitted to sympathetic blockade (SHR REM-sd, -75.7 +/- 13.2 mm Hg and control SHR, -60 +/- 4.5 mm Hg, p less than 0.05; BHR REM-sd, -38.4 +/- 3.6 mm Hg and control BHR, -24.3 +/- 2.1 mm Hg, NS; WKY REM-sd, -34.4 +/- 2.5 mm Hg and control WKY, -25.6 +/- 3.3 mm Hg, NS). REM-sd increased ventricular weight in all strains. These increments showed no correlation with blood pressure.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands↗

Effect of experimentally induced renal failure upon the fertility in rats. Fertility in uremic rats.

Two groups of rats, one with surgically induced chronic renal failure and a sham-operated group were used. 10 weeks after surgery the animals were individually mated for 15 days according to 4 different schemes: uremic couple, control couple, a couple with a uremic male, and a couple with a uremic female. A second mating was allowed 18 weeks after surgery. There the uremic rats and nonfertile controls were matched against fertile controls. The experimental group showed a higher percentage of nonfertile rats, their offspring had fewer newborns and the uremic mothers had litters that weighed less at birth. In uremic males low plasma testosterone levels were detected. The analysis of plasma luteinizing hormone in the female and the delayed fertilization of uremic mothers suggest the presence of irregularities in the estrous cycle of uremic females.

Animals↗

Absence of zinc testicular deficiency in the sexual dysfunction of experimentally induced uremic rats.

Two groups of adult male rats were used. One group was sham-operated, while the other group had about 70-80% of the left kidney tissue surgically excised and a total right nephrectomy performed 10 days later. Two 15-day mating periods were organized at the 10th and 18th week after surgery. Fertile and infertile rats of the uremic group showed low testosterone levels and increased zinc content of testes in comparison to sham-operated animals. These data contrast with previous reports that zinc deficiency may be a cause of low testosterone values and sexual dysfunction in uremic patients. It is concluded that zinc deficiency may not be involved in the pathogenesis of low testosterone levels and sexual dysfunction in uremic male rats.

Animals↗