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Biomedical subjects

A M Shepherd

Publications and source records attributed to A M Shepherd.

99 records · Page 6Linked to original sources

Differential hemodynamic and sympathoadrenal effects of sodium nitroprusside and hydralazine in hypertensive subjects.

The hemodynamic and sympathoadrenal effects of serial incremental doses of a mixed veno-arteriolar dilator (intravenous sodium nitroprusside 0.0125-0.50 micrograms/kg/min) and a pure arteriolar dilator (bolus injections of hydralazine, 0.05-0.3 mg/kg) were compared in 18 subjects with uncomplicated essential hypertension. Blood pressure was reduced to the same extent over approximately the same time with both drugs. Sodium nitroprusside produced significant reduction in cardiac output (9%) and stroke volume (16%) despite an 11% increase in heart rate. Total peripheral resistance did not change. In contrast, hydralazine produced a significant (39%) reduction in peripheral resistance with a compensatory increase in heart rate (19%), stroke volume (20%), and cardiac output (42%). The catecholamine responses to the drugs differed both quantitatively and qualitatively. Administration of both drugs was associated with gradual increases in plasma norepinephrine, but the levels were consistently 40% higher with sodium nitroprusside for the same fall in blood pressure. No consistent change in plasma epinephrine was found with sodium nitroprusside, whereas with hydralazine, the concentration increased gradually after the blood pressure had been reduced by 9 mm Hg. This threshold was independent of the starting blood pressure. These differences in catecholamine response could reflect different patterns of regional sympathetic activation by the low pressure mechanoreceptors (sodium nitroprusside) and by the arterial baroreceptors (hydralazine). Neither drug has an ideal hemodynamic profile, particularly in subjects with cardiac disease, but a balanced combination of the two may produce a favorable hemodynamic profile and optimal hypotensive effect, minimizing the need for large doses of sympathetic inhibitors.

Adult↗

Effect of age on responsiveness of isolated rat atria to carbachol and on binding characteristics of atrial muscarinic receptors.

Inotropic and chronotropic responses to carbachol were studied in isolated, electrically driven left atria and in spontaneously beating right atria from 6-month-old (adult) and 25-month-old (senescent) rats. The inotropic, but not the chronotropic, response to carbachol was reduced in the senescent animals. However, the inotropic response to nifedipine was not significantly different in the two groups. Likewise, the number (Bmax) and affinities of binding sites for the muscarinic antagonist [3H]quinuclidinyl benzylate (Kd) and for the muscarinic agonist carbachol (Ki) did not change with age. The reduced responsiveness to the inotropic effect of carbachol in senescent animals may result from alteration in events distal to the muscarinic receptor and proximal to Ca2+ transport.

Aging↗

Plasma concentration and acetylator phenotype determine response to oral hydralazine.

The vasodepressor response to single and multiple oral doses of hydralazine, 1 mg/kg, was studied in hypertensive patients. The concentration of hydralazine in plasma was measured both by a newly developed specific and a nonspecific assay similar to those used in previous studies. Acetylator phenotype was determined following oral sulfamethazine. Plasma hydralazine concentration peaked at 1 hour after administration and was undetectable 2 hours later. Apparent hydralazine was present in plasma in higher concentration and for a longer duration than hydralazine. The peak decreases in blood pressure (BP) were proportional to plasma hydralazine concentration following administration of both single and multiple doses and were substantially maintained for 8 hours. In contrast there was no significant correlation between decreases in BP and apparent hydralazine concentrations. The plasma concentration of hydralazine after a standard oral dose varied by as much as 15-fold among individuals and was lower in rapid than slow acetylator phenotype patients. The BP responses were positively correlated with plasma hydralazine concentrations and inversely correlated with acetylator indices. Low plasma concentrations may account for poor responses of some patients to conventional oral doses of hydralazine. The applicability of acetylator phenotyping for individualization of hydralazine dosage regimens merits further evaluation.

Acetylation↗

Baroreflex sensitivity modulates vasodepressor response to nitroprusside.

Baroreflex activity is a determinant of the homeostatic response to alteration in blood pressure. We examined the factors that determine the magnitude of the vasodepressor response to sequential incremental intravenous infusions of sodium nitroprusside (NP), 0.05 to 6.4 micrograms/kg/min, in eight male patients with essential hypertension. Each infusion level was of 10 minutes' duration. Change from control values of mean arterial pressure (delta MAP), heart rate (delta HR) and plasma norepinephrine (delta NE) were obtained at the end of each infusion level. Significant correlations were found between delta MAP vs log dose NP, delta HR vs delta MAP and delta NE vs delta MAP for each patient (p less than 0.05). However, the slopes of these relationships varied widely between subjects and were significantly correlated with the control blood pressure of each patient. In addition, the sympathetic responsiveness, as measured by delta NE vs delta MAP, was inversely correlated with the degree of vasodepressor response seen. Thus, the magnitude of the vasodepressor response was determined by two major factors: 1) the predrug blood pressure, possibly reflecting altered vascular geometry with hypertension; 2) the degree of sympathetic response, which probably acts by mediating the degree of reflex alpha-adrenergic-mediated arteriolar vasoconstriction.

Blood Pressure↗

Increased plasma norepinephrine accompanies persistent tachycardia after hydralazine.

To determine the role of the peripheral sympathetic nervous system in the persistent tachycardia caused by the antihypertensive drug hydralazine, we examined the temporal relationships between the changes in heart rate and plasma norepinephrine concentration and the reduction in blood pressure produced by a range of doses of hydralazine administered intravenously to five hypertensive patients. Significant linear correlations were found between the increases in heart rate and plasma norepinephrine concentration and the reduction in blood pressure at 15 and 30 minutes after injection. However, at 240 minutes after injection, changes in heart rate and plasma norepinephrine were not correlated with changes in blood pressure and were disproportionately elevated relative to the reduction in blood pressure. A significant linear correlation between changes in heart rate and plasma norepinephrine concentration was noted at 15, 30, and 240 minutes after injection. The temporal discordance of the changes of both heart rate and plasma norepinephrine relative to the reduction in blood pressure and the significant linear correlation between the increases in heart rate and plasma norepinephrine concentration suggest that continued activation of the peripheral sympathetic nervous system contributes to the persistent tachycardia seen after the administration of hydralazine.

Blood Pressure↗

Human-computer interaction and expert systems for three-dimensional studies of biomedical images.

Three-dimensional reconstruction of serial sections, observed by microscopy, is an important technique in medicine and biology. To view any part of a structure clearly, that part has to be identified and clearly highlighted in its relationship to other features in a structure. The identification process can be time consuming and tedious if many sections are involved, especially for routine applications, since human identification is required. In this paper we describe how image processing, together with other information on the shape and position of features relative to each other on any one section and throughout the structure, could be incorporated into an expert system and we also show how such a system could be designed. An important feature is the use of human-computer interaction to allow the system to evolve under the guidance of the biological or medical expert. An example of feature identification in a plant-parasitic nematode is used.

Animals↗

Activation of the renin-angiotensin system by sodium nitroprusside in essential hypertension.

We previously have demonstrated that the sympathetic nervous system is activated proportionately to the degree of vasodepression induced in hypertensive patients. In the present study, the role of the renin-angiotensin system in modulating the vasodepressor response to sodium nitroprusside was examined. Nine hospitalized hypertensive patients receiving a diuretic were given serially incremental doses of sodium nitroprusside over a dose range of 0.05-4.8 micrograms/kg/min with each dose being infused for 10 min. Mean arterial pressure (MAP), heart rate (HR), plasma renin activity (PRA), and plasma norepinephrine (NE) concentration were measured prior to and during each dose level of sodium nitroprusside. Stepwise increments in PRA were seen in each patient as the dose of sodium nitroprusside was increased. The increase in PRA was proportional to the increase in plasma NE concentration and to the decrease in MAP in each patient. However, considerable intersubject variation was seen in these relationships. When examined by multiple linear stepwise regression analysis, the degree of vasodepression was found to be dependent on the baseline blood pressure and baroreflex sensitivity (r = 0.97). However, increment in PRA was not an independent determinant of the vasodepressor response. Thus, the renin angiotensin system may not be a significant component of the acute homeostatic response to vasodepression in these patients.

Blood Pressure↗