Monitoring clinical trials.
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Biomedical subjects
Publications and source records attributed to B Scoggins.
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Oral hydrocortisone increases blood pressure and enhances pressor responsiveness in normal human subjects. We studied the effects of 1 week of oral hydrocortisone (200 mg/day) on blood pressure, cardiac output, total peripheral resistance, forearm vascular resistance, and norepinephrine spillover to plasma in eight healthy male volunteers. Although diastolic blood pressure remained unchanged, systolic blood pressure increased from 119 to 135 mm Hg (SED +/- 3.4, p less than 0.01), associated with an increased cardiac output (5.85-7.73 l/min, SED +/- 0.46, p less than 0.01). Total peripheral vascular resistance fell from 15.1 to 12.2 mm Hg/l/min (SED +/- 1.03, p less than 0.05). Resting forearm vascular resistance remained unchanged, but the reflex response to the cold pressor test was accentuated, the rise in resistance increasing from 10.5 mm Hg/ml/100 ml/min (R units) before treatment to 32.6 R units after treatment (SED +/- 6.4, p less than 0.025). The rise in forearm vascular resistance accompanying intra-arterial norepinephrine (25, 50, and 100 ng/min) was also significantly greater after hydrocortisone, increasing from an average of 14.9 +/- 2.4 R units before treatment to 35.1 +/- 5.5 R units after hydrocortisone (SED +/- 6.0, p less than 0.05). A shift to the left in the dose-response relation and fall in threshold suggested increased sensitivity to norepinephrine after treatment. Measurement of resting norepinephrine spillover rate to plasma and norepinephrine uptake indicated that overall resting sympathetic nervous system activity was not increased. The rise in resting blood pressure with hydrocortisone is associated with an increased cardiac output (presumably due to increased blood volume).(ABSTRACT TRUNCATED AT 250 WORDS)
The present study examined the effects of low dose ACTH administration (0.1 mg/day for 2 days) on plasma renin concentration, (PRC), activity (PRA) and substrate (PRS), cortisol and aldosterone in man. Six healthy male volunteers on a diet calculated to contain 150 mmol Na/day received an infusion of 5% dextrose (6 ml/h) for 24 hours, then ACTH (Synacthen, Ciba-Geigy) was added to the infusion at the rate of 100 micrograms per day, for 48 h. Blood samples were taken four hourly for determination of plasma cortisol, aldosterone, PRC, PRA and PRS. There was a highly significant increase in plasma cortisol and aldosterone concentrations during ACTH infusion compared with dextrose infusion, but no significant increase in active or inactive PRC, PRA or PRS. In a separate study of 15 healthy male volunteers, dexamethasone (1 mg at 2300 h) suppressed plasma cortisol but had no effect on PRC. These results do not support the view that stimulation of aldosterone by ACTH is mediated through the renin angiotensin system.
Epidemiological evidence supports the thesis that high salt intake is involved in the aetiology of hypertension. If sodium intake is not causal, it appears other factors do not cause high blood pressure in unacculturated societies with low sodium intake. In this context, it is potentially important that stress causing ACTH release, as well as other neurohumoral effects, causes increased salt appetite and can impair renal sodium excretion.
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