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Biomedical subjects

C Ferrier

Publications and source records attributed to C Ferrier.

62 records · Page 4Linked to original sources

Calcium and blood pressure regulation in normal and hypertensive subjects.

To elucidate the mechanisms involved in calcium-mediated blood pressure (BP) control, plasma norepinephrine (NE), epinephrine, renin activity, and angiotensin II (AII) levels and the cardiovascular pressor responsiveness to NE and AII were assessed before and during acute mild hypercalcemia or short-term calcium (Ca) inhibition with nifedipine in 20 normal and five borderline hypertensive subjects. In normal subjects, systolic BP and plasma NE and epinephrine concentrations were increased significantly (p less than 0.05) during an acute rise in serum Ca of 3.1 mg/dl (intermediate rate Ca infusion, 0.05 mg/kg/min for 3 hours), but not following an increase of 1 mg/dl (low rate Ca infusion, 0.034 mg/kg/min for 2 hours). In the borderline hypertensive group, low-rate Ca infusion elevating serum Ca by 1 mg/dl was associated with a slight increase in systolic BP (p less than 0.05) and plasma catecholamines. In both groups, the pressor responses to infused NE and AII, and plasma renin and AII levels, were unchanged during mild to moderate hypercalcemia. Nifedipine given for 2 weeks (average dose, 48 mg/d) reduced BP significantly (p less than 0.05) in the borderline hypertensive subjects only and NE pressor responses in both groups (p less than 0.025), but had no significant effect on plasma catecholamines, renin, or AII levels. These findings suggest that the adrenergic BP control mechanism may be more dependent on clinical variations in calcium metabolism than the angiotensin BP regulatory mechanism. Acute hypercalcemia may increase BP at least in part by causing an increase in adrenergic activity without an equivalent decrease in cardiovascular reactivity. Calcium inhibition with nifedipine may modify noradrenergic BP control by lowering the NE pressor reactivity without causing an equivalent increase in adrenergic activity.

Adult↗

Serum lipoproteins during treatment with the antihypertensive agent indapamide.

Considering the documented, potentially undesirable influence of various thiazide-type or loop diuretics on serum lipoproteins, we prospectively investigated in 69 men (mean age +/- SEM, 32 +/- 1 years) the metabolic effects of the new diuretic-antihypertensive compound indapamide. Compared to placebo, indapamide (2.5 mg/day) given for 6 to 8 weeks lowered (p less than 0.02 to less than 0.001) blood pressure (supine values from 148/98 +/- 3/2 to 137/93 +/- 3/2) in 29 men with mild to moderate essential hypertension, but not in 40 healthy men. In both groups, significant (p less than 0.05 to less than 0.001) decreases in body weight (-0.8 kg) and plasma potassium (-0.6 mmol/L), and increases in plasma uric acid (+20%), renin activity (+200%), and aldosterone documented good compliance. There were no significant changes in total cholesterol (in all subjects, from 208 +/- 6 to 213 +/- 6 mg/dl), low- or very low-density lipoprotein (VLDL) cholesterol (127 +/- 6 to 129 +/- 6 and 21 +/- 1 to 21 +/- 2 respectively), high-density lipoprotein cholesterol (50 +/- 1 to 51 +/- 1 mg/dl), total triglycerides (Tg) (108 +/- 5 to 112 +/- 6 mg/dl), VLDL-Tg, apoproteins A1 and A2, plasma glucose, epinephrine, norepinephrine, sodium, calcium, magnesium, and creatinine; apoprotein B (84 +/- 2 to 88 +/- 3 mg/dl) and plasma insulin after glucose loading dose tended to be increased minimally. The absence of distinct lipoprotein alterations after short-term indapamide treatment may be of clinical and epidemiological interest.

Adult↗

Liver function and plasma antioxidant status in intensive care unit patients requiring total parenteral nutrition: comparison of 2 fat emulsions.

BACKGROUND: Efficacy and safety of an alpha-tocopherol-enriched emulsion incorporating soybean, coconut, olive, and fish oils (SMOF) are compared in terms of biologic parameters to those of soybean oil-based emulsion (LIPOVEN). METHODS: Twenty stressed patients were randomly assigned in a double-blind study to receive at least a 5-day course of total parenteral nutrition. Plasma activities of liver enzymes, C-reactive protein, antioxidant capacity, alpha-tocopherol, retinol, and low density lipoprotein (LDL)-alpha-tocopherol levels were determined. LDL-lipid oxidation is measured after incubation of the LDL in the presence of a prooxidant. RESULTS: The plasma activities of liver enzymes and the phospholipids/apo A1 ratio were increased in both groups. However, in the SMOF group the increases were lower than in the LIPOVEN group and non-significant for the CRP plasma level and the alanineamino-transferase activity. Before parenteral nutrition, the plasma antioxidant status was markedly reduced in both groups. After parenteral nutrition discontinuation, the antioxidant capacity and the amount of LDL-derived oxidation by-products formed were comparable in both groups. There was a significant improvement in plasma lipophilic antioxidant vitamins and LDL-alpha-tocopherol levels only in the SMOF group. CONCLUSIONS: The lower increase of plasma liver enzymes and phospholipids/apo A1 ratio in the SMOF group suggest a better liver function than in the LIPOVEN group. This beneficial effect results in a higher liver mobilization and plasma levels of lipophilic antioxidants. They could, together with higher delivery of omega-3 fatty acids to peripheral tissues, contribute positively to survival rate of stressed patients.

Aged↗

Central nervous system noradrenergic control of sympathetic outflow in normotensive and hypertensive humans.

We applied transmitter washout methodology, sampling internal jugular venous plasma via a percutaneously placed catheter, to study CNS norepinephrine release in humans and its relation to peripheral sympathetic activity. Norepinephrine overflows into the venous drainage of the brain, as do its precursor, DOPA, and metabolites DHPG and MHPG, indicating that the blood-brain barrier provides an incomplete impediment to their outward flux from the brain. Pharmacological testing with two drugs which altered CNS norepinephrine turnover, the tricyclic antidepressant desipramine and the ganglionic blocker, trimethaphan, demonstrated a direct relation existed between CNS norepinephrine release and sympathetic nerve firing rates. In essential hypertension, the sympathetic activation commonly present was associated with, and possibly caused by increased CNS release of norepinephrine, manifested in elevated overflow of norepinephrine, MHPG and DHPG from the brain. Bilateral jugular sampling, coupled with a cerebral venous sinus scan to delineate the drainage pattern, demonstrated that this increased norepinephrine release was confined to subcortical forebrain regions.

Blood Pressure↗