Asynchronous changes in prorenin and renin secretion after captopril in patients with renal artery stenosis.
- 28 February 1983
- journal article
- research article
- Published by Wolters Kluwer Health in Hypertension
- Vol. 5 (2) , 244-256
- https://doi.org/10.1161/01.hyp.5.2.244
Abstract
An assay of plasma prorenin was developed in which the conversion to renin occurred under apparently optimal conditions. Some characteristics of the assay were 1) prorenin was activated by Sepharose-bound trypsin at 4 degrees C; 2) the concentration of activator was not critical provided that incubation was prolonged until renin activity had reached a plateau; and 3) this plateau was stable and had the same height as after maximal activation with acid, pepsin, plasmin or urokinase. Maximal activity with Sepharose-bound trypsin at 4 degrees C was higher than with cryoactivation, and optimal conditions were more readily reproduced than with trypsin at 37 degrees C or with acid-activation. The assay was used for measurements in peripheral and renal vein plasma after captopril in hypertensive patients with unilateral renal artery stenosis. Peripheral renin rose within 30 minutes after a first dose of captopril, 50 mg orally, and it remained high with chronic treatment. In contrast, peripheral prorenin fell initially and rose after 4 hours. These changes in peripheral plasma were related to changes in the secretion rates of the two forms of renin from the affected kidney. Thus chronic, but not acute, stimulation of renin release was associated with an increased secretion rate of prorenin. The late rise in prorenin is probably an indication of enhanced synthesis in the kidney, so that more prorenin is available for conversion. The data suggest that prorenin is indeed a biosynthetic precursor of renin and that, at least under certain circumstances, a major proportion of circulating prorenin originates from the kidney.This publication has 37 references indexed in Scilit:
- Active and inactive renin after a single dose of captopril in hypertensive patientsThe American Journal of Cardiology, 1982
- Detection and isolation of inactive, large molecular weight renin in human kidney and plasma.Hypertension, 1981
- Inactive renin of high molecular weight (big renin) in normal human plasma. Activation by pepsin, trypsin, or dialysis to pH 3.3 and 7.5.Hypertension, 1980
- EFFECT OF INHIBITION OF CONVERTING ENZYME ON INACTIVE RENIN IN THE CIRCULATION OF SALT-REPLETE AND SALT-DEPLETE NORMAL SUBJECTSJournal of Endocrinology, 1980
- BIOLOGICAL SIGNIFICANCE OF ACTIVE AND INACTIVE RENIN IN MANJournal of Endocrinology, 1980
- Activation of a prorenin-like substance in human plasma by trypsin and by urinary kallikrein.Hypertension, 1979
- Cryoactivation and tryptic activation of blood 'prorenin' in normal man and animalsCanadian Journal of Physiology and Pharmacology, 1978
- BIG RENIN IN PLASMA OF HEALTHY SUBJECTS ON HIGH SODIUM INTAKEThe Lancet, 1978
- AN INACTIVE HIGHER-MOLECULAR-WEIGHT RENIN IN NORMAL SUBJECTS AND HYPERTENSIVE PATIENTSThe Lancet, 1977