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Biomedical subjects

D M Shoback

Publications and source records attributed to D M Shoback.

22 records · Page 2Linked to original sources

Phaeochromocytoma and hypertrophic cardiomyopathy: apparent suppression of symptoms and noradrenaline secretion by calcium-channel blockade.

A 44-year-old woman with hypertrophic cardiomyopathy and a noradrenaline-secreting phaeochromocytoma is described. She experienced as great improvement in cardiovascular symptoms during double-blind treatment with the calcium-channel blocker nifedipine compared with the placebo period. Symptom relief on nifedipine therapy was associated with a pronounced decline in elevated urinary noradrenaline levels. This observation suggests that calcium-channel blockers interfere with the release of noradrenaline from phaeochromocytoma tissue and thus may be beneficial in patients with phaeochromocytoma.

Adrenal Gland Neoplasms↗

Defect in the sodium-modulated tissue responsiveness to angiotensin II in essential hypertension.

In normal subjects, dietary sodium intake modulates renovascular, adrenal, and pressor responses to infused angiotensin II (AII). To examine the hypothesis that this modulation is abnormal in some patients with essential hypertension, we studied 18 hypertensives and 9 normal subjects twice--during dietary sodium restriction and during loading. Paraaminohippurate (PAH) clearance was used to assess renal plasma flow. AII was infused in graded doses (0.3-3.0 ng/kg per min). Plasma aldosterone, cortisol, renin activity, AII, sodium, potassium, and PAH clearance were measured at the onset and end of each AII dose. During dietary sodium repletion, eight of the subjects with essential hypertension showed a normal renovascular response (greater than 125 ml/min per 1.73 m2) to AII infusion (3 ng/kg per min). The decrement in renal blood flow in these normal responders (NR) was 168 +/- 10, which was comparable to the range in normotensive subjects (206 +/- 25 ml/min per 1.73 m2). All of the remaining hypertensive patients, designated abnormal responders (AbR), had lower (less than 125) renal blood flow responses to the same dose of infused AII (mean decrement: 84 +/- 11 ml/min per 1.73 m2) compared with the NR and normotensive subjects. Renal blood flow responses to all AII doses were statistically greater on a high-vs.-low salt diet in the NR (P less than 0.001, chi-square) and normotensives (P = 0.004, chi-square) but sodium intake had no effect on this response in the AbR. Basal renal blood flow in NR increased significantly (P less than 0.001, paired t test) with dietary sodium repletion, from 491 +/- 36 (low salt) to 602 +/- 40 ml/min per 1.73 m2 (high salt), but was almost identical in the AbR on differing dietary sodium intakes (429 +/- 24 vs. 425 +/- 26 ml/min per 1.73 m2). The adrenal responses to sodium intake and infused AII also differed in the two subgroups. In the NR, the adrenal response to AII was significantly greater (P = 0.011, Wilcoxon signed rank test) after sodium restriction. In contrast, there was no significant difference in the aldosterone response to AII infusion between the low and high sodium diets in the AbR. Thus, a substantial subgroup of essential hypertensives has an abnormality in responsiveness to AII in two systems central to volume homeostasis: the kidney and adrenal. They fail to modulate their renal blood flow and aldosterone responses to AII with changes in dietary sodium intake. Moreover, basal renal blood flow does not increase appropriately with increased sodium intake. These abnormalities, which may be due to an increased local production of AII or a defect in the AII receptors in these three target tissues, could contribute to the elevated blood pressure.

Adolescent↗

Endogenous angiotensin II as a determinant of sodium-modulated changes in tissue responsiveness to angiotensin II in normal man.

Dietary sodium restriction reduces vascular smooth muscle, particularly renovascular, responsiveness to infused angiotensin II (AII), while the responsiveness of the adrenal and the AII-renin short feedback loop to AII is enhanced. To determine whether circulating AII mediates these changes in responsiveness, we studied 11 sodium-restricted and 9 sodium-replete normal subjects before and after 75 h of converting enzyme inhibitor pretreatment with MK421. All subjects received infusions of paraaminohippurate (PAH) to assess renal plasma flow during graded AII infusion (0.3-10 ng/kg X min) before and after MK421 administration. Plasma aldosterone, cortisol, PRA, AII, sodium, potassium, and PAH clearance were measured at the onset and end of each AII dose. In sodium-restricted subjects, preinfusion AII and aldosterone levels were significantly reduced, (P less than 0.001) to the range found in sodium-replete subjects, after 75 h of MK421 administration, whereas blood pressure and PAH responses to infused AII were significantly enhanced (P less than 0.01). Blood pressure and PAH responses to infused AII in sodium-replete subjects were not significantly modified by MK421 treatment, confirming that the drug effect was specific. In contrast, the plasma aldosterone increment and PRA decrement after AII infusion were similar before and after MK421 on both diets. Thus, sodium-modulated changes in PAH and blood pressure responsiveness to infused AII depend on circulating AII levels. However, circulating AII does not mediate sodium modulation of adrenal or PRA short-feedback loop responsiveness to infused AII. Two different mechanisms determine sodium modulation of tissue responsiveness to AII; in one, circulating AII via a receptor mechanism is the mediator, and in the other, some other factor(s) also linked to sodium intake must be responsible.

Adolescent↗

Time course and effect of sodium intake on vascular and hormonal responses to enalapril (MK 421) in normal subjects.

Enalapril (MK 421) is a long-acting angiotensin converting-enzyme inhibitor which specifically lacks the sulfhydryl group of captopril. We measured arterial pressure and hormonal responses that occurred in 22 normotensive subjects treated with increasing doses of enalapril (2.5, 5, 10, and 20 mg) once daily, who were on either low (10 mEq) or high (200 mEq) sodium diets. In sodium-restricted subjects (n = 12), mean diastolic blood pressure declined from control levels in a dose-related fashion during the first 2 h. The mean 24-h diastolic blood pressure values were significantly lower than control (p less than 0.01) at all doses, with the greatest declines occurring with the 10 and 20 mg doses. Accompanying the decline in blood pressure was a significant increase in plasma renin activity (PRA) and reduction in plasma angiotensin II (AII) and aldosterone levels. As with blood pressure, the greatest changes were observed with the 5, 10, and 20 mg doses. However, only the 20 mg dose of enalapril produced prolonged and significant PRA increments (p less than 0.01) and AII decrements (p less than 0.05) of at least 24 h in duration. In sodium-replete subjects (n = 10), a similar pattern of diastolic blood pressure responses was observed; however, the effect of the drug was not so profound. No significant decrease in AII occurred at any dose of enalapril; however, PRA increased modestly but significantly (p less than 0.01) after administration of 5, 10, and 20 mg enalapril. Plasma aldosterone declined modestly but significantly, 2 (p less than 0.05) and 4 (p less than 0.01) h after the 10 mg dose.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗