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Biomedical subjects

S Oparil

Publications and source records attributed to S Oparil.

At least 109 records · Page 6Linked to original sources

The Losartan Intervention For Endpoint reduction (LIFE) in Hypertension study: rationale, design, and methods. The LIFE Study Group.

The treatment of hypertension mainly with diuretics and beta blockers reduces cardiovascular mortality and morbidity, largely due to a decreased incidence of stroke, whereas the beneficial effects of antihypertensive therapy on the occurrence of coronary events have been less than expected from epidemiological studies. Furthermore, treated hypertensive patients still have a higher cardiovascular complication rate, compared with matched normotensives. This is particularly evident in patients with left ventricular hypertrophy (LVH), a major independent risk indicator for cardiovascular disease. In addition to elevating blood pressure, angiotensin II (A-II) exerts an important influence on cardiac structure and function, stimulating cell proliferation and growth. Thus, to further reduce morbidity and mortality when treating hypertensive patients, it may be important to effectively block the effects of A-II. This can be achieved directly at the A-II receptor level by losartan, the first of a new class of antihypertensive agents. It therefore seems pertinent to investigate whether selective A-II receptor blockade with losartan not only lowers blood pressure but also reduces LVH more effectively than current therapy, and thus improves prognosis. The Losartan Intervention For Endpoint reduction (LIFE) in Hypertension study is a double-blind, prospective, parallel group study designed to compare the effects of losartan with those of the beta-blocker atenolol on the reduction of cardiovascular morbidity and mortality in approximately 8,300 hypertensive patients (initial sitting diastolic blood pressure 95 to 115 mm Hg or systolic blood pressure 160 to 200 mm Hg) with electrocardiographically documented LVH. The study, which will continue for at least 4 years and until 1,040 patients experience one primary endpoint, has been designed with a statistical power that will detect a difference of at least 15% between groups in the incidence of combined cardiovascular morbidity and mortality. It is also the first prospective study with adequate power to link reversal of LVH to reduction in major cardiovascular events. The rationale of the study, which will involve more than 800 clinical centers in Scandinavia, the United Kingdom, and the United States, is discussed, and the major features of its design and general organization are described. On April 30, 1997, when inclusion was stopped, 9,218 patients had been randomized.

Adrenergic beta-Antagonists↗

Medroxyprogesterone attenuates estrogen-mediated inhibition of neointima formation after balloon injury of the rat carotid artery.

BACKGROUND: Estrogen blunts the neointimal proliferative response to balloon injury of the carotid artery in intact female rats and gonadectomized rats of both sexes. This study tested whether, in gonadectomized rats of both sexes. (1) progestin (medroxyprogesterone acetate, MPA) alters neointima formation in injured carotid arteries, (2) addition of MPA alters the antiproliferative effects of estrogen, and (3) an interaction between MPA and estrogen can be accounted for by MPA-induced alterations in serum 17 beta-estradiol levels. METHODS AND RESULTS: Male and female Sprague-Dawley rats were subjected to gonadectomy, then were randomly divided into four subgroups and treated with either (1) 17 beta-estradiol, (2) MPA, (3) 17 beta-estradiol + MPA, or (4) vehicle, and balloon injury of the right common carotid artery was carried out. Two weeks later, rats were killed by overdose of pentobarbital, and the carotid arteries were subjected to morphometric analysis for evaluation of myointimal thickening. Estradiol inhibited myointimal proliferation after vascular injury in gonadectomized rats of both sexes (P < .05). MPA alone did not alter neointima formation, but addition of MPA to estradiol completely blocked the antiproliferative effects of estrogen without altering serum 17 beta-estradiol levels. CONCLUSIONS: These data indicate that exogenous progestin given alone does not alter the vascular injury response in the rat carotid injury model but that addition of a progestin blocks the antiproliferative effects of estrogen in this model. These effects are seen in gonadectomized rats of both sexes. These findings have direct implications for postmenopausal hormone replacement therapy in humans.

Animals↗

Atrial natriuretic peptide regulation of noradrenaline release in the anterior hypothalamic area of spontaneously hypertensive rats.

In spontaneously hypertensive rats (SHR), high NaCl diets increase arterial pressure and sympathetic nervous system activity by decreasing noradrenaline release in the anterior hypothalamic area (AHA), thereby reducing the activation of sympathoinhibitory neurons in AHA. Atrial natriuretic peptide (ANP) can inhibit the release of noradrenaline, and ANP concentration is elevated in the AHA of SHR. The present study tests the hypothesis that in SHR, local ANP inhibits noradrenaline release from nerve terminals in AHA. Male SHR fed a basal or high NaCl diet for 2 wk and normotensive Wistar Kyoto rats (WKY) fed a basal NaCl diet were studied. In SHR on the basal diet, microperfusion of exogenous ANP into the AHA elicited a dose-related decrease in the concentration of the major noradrenaline metabolite 3-methoxy-4-hydroxy-phenylglycol (MOPEG) in the AHA; this effect was attenuated in the other two groups. In a subsequent study, the ANP-C (clearance) receptor agonist c-ANP was microperfused into the AHA to increase extracellular concentration of endogenous ANP in AHA. c-ANP reduced AHA MOPEG concentration in SHR on the basal NaCl diet but not in the other two groups. These data support the hypothesis that local ANP inhibits noradrenaline release in the AHA and thereby contributes to NaCl-sensitive hypertension in SHR.

Animals↗

Purification and assay methods for angiotensin-converting enzyme.

Angiotensin-converting enzyme (ACE; EN 3.4.15.1) is a peptidyl dipeptide hydrolase that removes the carboxyl terminal His-Leu from angiotensin I to produce the octapeptide angiotensin II. In addition, ACE inactivates bradykinin, a vasodilator peptide/mediator of inflammation, as well as substance P, enkephalins and endorphins. Because of the importance of ACE and its active site-directed inhibitors in the pathogenesis and treatment of cardiovascular disorders such as hypertension and heart failure, ACE purification and assay are of clinical and commercial, as well as scientific interest. This review summarizes the historical development of ACE purification and assay methods and presents some innovative high-performance liquid chromatography-based techniques developed in our own laboratory for high yield and efficient purification and sensitive and specific assay of ACE.

Animals↗

Estrogen reduces myointimal proliferation after balloon injury of rat carotid artery.

BACKGROUND: Vascular disease progresses more slowly in females with functional ovaries than in males. The mechanisms of this vasoprotective effect of female sex are incompletely understood. This study tested (1) whether there is a sex difference in the development of myointimal proliferation after balloon injury of the rat carotid artery in vivo, (2) whether this response is estrogen or androgen dependent, and (3) whether there is a sexual dimorphism in expression of the c-myc proto-oncogene in intact and/or damaged rat carotid arteries. METHODS AND RESULTS: Ten-week-old male and female Sprague-Dawley rats were either gonadectomized or studied intact. Gonadectomized rats of both sexes were implanted with estradiol, testosterone, or nothing (control) 3 days before vascular injury. Two weeks later, the rats were killed by overdose of pentobarbital, and the injured right and uninjured control left carotid arteries were fixed and subjected to morphometric analysis for evaluation of the degree of myointimal thickening. Separate groups of intact male and female rats were killed at 1 and 2 hours after vascular injury, and total RNA from injured and uninjured vessels was subjected to Northern blot analysis for assessment of steady state c-myc mRNA levels. Neointimal area and the ratio of neointimal to medial area were significantly less in intact female rats than in intact male rats (P < .05). Gonadectomy of female rats was associated with a greater increase in neointima formation after balloon injury than that observed in intact females (P < .05), but testosterone replacement did not further enhance this response. Estradiol treatment significantly inhibited myointimal proliferation after vascular injury in gonadectomized rats of both sexes (P < .05). Neither gonadectomy nor gonadectomy plus testosterone replacement altered the myointimal proliferative response to balloon injury in male rats. Steady state c-myc mRNA levels were detectable in undamaged carotid arteries in intact rats of both sexes and were significantly greater in males than in females; c-myc mRNA levels were increased in both sexes after carotid injury, but the response was significantly larger in magnitude and more rapid in males than in females. CONCLUSIONS: These data indicate that the sex difference in myointimal proliferation after vascular injury is estrogen dependent. C-myc gene expression is greater in the undamaged carotid artery of the male than in that of the female, and the responsiveness of this gene to balloon injury of the artery is more rapid and more robust in the male than in the female rat. These findings have direct implications for the prevention and treatment of vascular disease in humans.

Animals↗

Anterior hypothalamic norepinephrine, atrial natriuretic peptide, and hypertension.

Our laboratory has characterized a model of salt sensitive hypertension, the salt sensitive spontaneously hypertensive rat (SHR-S), in which dietary NaCl supplementation increases blood pressure by reducing norepinephrine release by nerve terminals in the anterior hypothalamic area (AHA), thus reducing activation of sympathoinhibitory neurons in the AHA. This, in turn, results in increased sympathetic outflow and higher blood pressure in the SHR. Two mechanisms have been shown to contribute to this effect: (i) reduced noradrenergic input into AHA via baroreflex pathways and (ii) local inhibition of NE release in AHA by the inhibitory neuromodulator atrial natriuretic peptide (ANP). Studies employing microinjection of a blocking monoclonal antibody to ANP directly into the AHA and the nucleus tractus solitarius (NTS) demonstrated for the first time that endogenous ANP in the brain is functionally active in the tonic control of blood pressure and baroreflex sensitivity in the SHR-S but plays a lesser role in the normotensive Wistar Kyoto (WKY) control. In the WKY, excitation of NTS neurons by baroreflex afferents leads to activation of sympathoinhibitory neurons in NTS and AHA, strong inhibition of sympathetic nervous system outflow, and a decrease in arterial pressure. In SHR-S, brain ANP acts at the levels of the NTS and the AHA to perturb this baroreflex regulatory pathway. ANP tonically activates sympathoinhibitory neurons in the caudal NTS of SHR-S, thereby restraining the rise in arterial pressure, and tonically inhibits baroreflex responsiveness to alterations in blood pressure. Thus ANP appears to act at a number of sites in brain to facilitate the development and maintenance of sympathetically mediated hypertension in the SHR-S model.

Animals↗

Rationale and design for the Antihypertensive and Lipid Lowering Treatment to Prevent Heart Attack Trial (ALLHAT). ALLHAT Research Group.

Are newer types of antihypertensive agents, which are currently more costly to purchase on average, as good or better than diuretics in reducing coronary heart disease incidence and progression? Will lowering LDL cholesterol in moderately hypercholesterolemic older individuals reduce the incidence of cardiovascular disease and total mortality? These important medical practice and public health questions are to be addressed by the Antihypertensive and Lipid Lowering Treatment to Prevent Heart Attack Trial (ALLHAT), a randomized, double-blind trial in 40,000 high-risk hypertensive patients. ALLHAT is designed to determine whether the combined incidence of fatal coronary heart disease (CHD) and nonfatal myocardial infarction differs between persons randomized to diuretic (chlorthalidone) treatment and each of three alternative treatments--a calcium antagonist (amlodipine), an angiotensin converting enzyme inhibitor (lisinopril), and an alpha-adrenergic blocker (doxazosin). ALLHAT also contains a randomized, open-label, lipid-lowering trial designed to determine whether lowering LDL cholesterol in 20,000 moderately hypercholesterolemic patients (a subset of the 40,000) with a 3-hydroxymethylglutaryl coenzyme A (HMG CoA) reductase inhibitor, pravastatin, will reduce all-cause mortality compared to a control group receiving "usual care." ALLHAT's main eligibility criteria are: 1) age 55 or older; 2) systolic or diastolic hypertension; and 3) one or more additional risk factors for heart attack (eg, evidence of atherosclerotic disease or type II diabetes). For the lipid-lowering trial, participants must have an LDL cholesterol of 120 to 189 mg/dL (100 to 129 mg/dL for those with known CHD) and a triglyceride level below 350 mg/dL. The mean duration of treatment and follow-up is planned to be 6 years. Further features of the rationale, design, objectives, treatment program, and study organization of ALLHAT are described in this article.

Antihypertensive Agents↗

Improved quality of life in patients with generalized cardiovascular metabolic disease on a prepared diet.

Current dietary recommendation for cardiovascular disease risk reduction and recommended dietary allowances (RDAs) were used to develop a nutritionally complete prepackaged prepared meal plan specifically designed to reduce the risk of cardiovascular disease. In the current study we tested patient acceptance of the diet as defined by measures of quality of life. In a randomized, parallel-design, multicenter clinical trial, 77 persons with hypertension, diabetes mellitus, dyslipidemia, or a combination of two or more of these conditions were recruited and randomly assigned to either a prepared meal plan (n = 39) or a comparable self-selected diet (n = 38) for 10 wk. The prepared meal plan met both the RDAs for all essential micronutrients and the dietary recommendations of national health organizations for macronutrients, cholesterol, sodium, and fiber. The prescribed self-selected diet was matched for macronutrients. Quality of life, as measured by a battery of instruments, was the major endpoint. Individuals consuming the prepared meal plan had significant improvements in mental health (P < 0.01), general perceived health (P < 0.005), daily activities (P < 0.05), work performance (P < 0.005), affect (P < 0.01), and nutritional health perceptions (P < 0.001), and reductions in nutrition hassles based on a standardized questionnaire (P < 0.001). The self-selected-diet group had significant improvements in nutritional health perceptions (P < 0.001) and affect (P < 0.001). There were significant improvements in weight (P < 0.001), blood pressure (P < 0.001), cholesterol (P < 0.002), low-density lipoproteins (P < 0.001), glucose (P < 0.014), and glycated hemoglobin (Hb A(1c) (P < 0.004) that were comparable in both groups. In summary, this study shows that a nutritionally complete diet, whether prepackaged or self-selected, improves multiple risk factors for cardiovascular disease. The prepackaged prepared meal plan had the added benefit of a greater improvement in quality of life.

Blood Glucose↗

Atrial natriuretic peptide blunts arterial baroreflex in spontaneously hypertensive rats.

We and other laboratories have reported that arterial baroreflex-mediated control of heart rate is blunted in spontaneously hypertensive rats (SHR) compared with normotensive controls. Recently, we reported that atrial natriuretic peptide (ANP) microinjected into the caudal nucleus tractus solitarii of SHR further blunts this defect. The present study tested the hypothesis that ANP modulates arterial baroreflex-mediated control of sympathetic nervous system activity. Nine-week-old, male SHR (n = 29) and normotensive Wistar-Kyoto control rats (n = 24) were instrumented for microinjection into the caudal nucleus tractus solitarii and for direct measurement of arterial blood pressure, heart rate, and lumbar sympathetic nervous system activity. After urethane- and alpha-chloralose-induced induced anesthesia, arterial baroreflex-mediated control of heart rate and lumbar sympathetic nerve activity was assessed during phenylephrine- (5 to 40 micrograms.kg-1.min-1) induced increases and sodium nitroprusside- (15 to 300 micrograms.kg-1.min-1) induced decreases in mean blood pressure before and after microinjection of ANP (50 ng) or monoclonal antibody to ANP (0.55 micrograms) into the caudal nucleus tractus solitarii. ANP reduced and the antibody enhanced the sensitivity of baroreflex-mediated control of both heart rate and lumbar sympathetic nerve activity in SHR but not in Wistar-Kyoto controls (P < .05). Arterial baroreflex sensitivity was unchanged with control microinjections of vehicle or mouse IgG in SHR. These data suggest that endogenous ANP in the caudal nucleus tractus solitarii may contribute to the development and/or maintenance of hypertension in SHR by blunting baroreflex-mediated control of sympathetic nervous system activity.

Animals↗

Acute saline infusion decreases norepinephrine release in the anterior hypothalamic area.

Ingestion of a high NaCl diet elevates arterial pressure in spontaneously hypertensive rats, at least in part, by reducing the release of norepinephrine in the anterior hypothalamic area. The mechanism by which dietary NaCl excess alters anterior hypothalamic area norepinephrine release is unknown. Plasma Na+ is slightly elevated after ingestion of a meal; therefore, in the present study we tested the hypothesis that a small increase in plasma Na+ could reduce the release of norepinephrine in the anterior hypothalamic area and elevate arterial pressure. Male spontaneously hypertensive rats were randomized to be fed a diet containing either 1% (basal) or 8% (high) NaCl at age 7 weeks and were maintained on the diets for 2 weeks. Age-matched normotensive Wistar-Kyoto rats received a basal NaCl diet only. All rats were instrumented with a push/pull cannula, and 5 days later, the baseline release of 3-methoxy-4-hydroxyphenyl glycol (the major metabolite of norepinephrine in brain) was measured in awake, freely moving rats. Rats were then challenged with an intravenous infusion (75 microL/min) of hypertonic (2.7%) saline for 20 minutes. In spontaneously hypertensive rats fed a basal NaCl diet, the hypertonic saline infusion elevated mean arterial pressure by 12% and reduced the concentration of the norepinephrine metabolite in the anterior hypothalamic area by 19%; these alterations persisted after termination of the hypertonic saline infusion. Spontaneously hypertensive rats maintained on the high NaCl diet showed greatly reduced arterial pressure and norepinephrine metabolite responses. In normotensive control rats compared with the hypertensive rats fed the basal NaCl diet, the hypertonic saline had considerably less effects on arterial pressure and norepinephrine metabolite levels in the anterior hypothalamic area, and the responses were significantly shorter. Thus, a small elevation in plasma Na+ can reduce the release of norepinephrine in the anterior hypothalamic area. This response is greatly exaggerated in spontaneously hypertensive rats fed a basal (but not a high) NaCl diet, suggesting that a postprandial rise in NaCl could initiate the fall in norepinephrine and thereby contribute to the rise in arterial pressure in spontaneously hypertensive rats ingesting a high NaCl diet.

Animals↗

Salt intake and plasma atrial natriuretic peptide and nitric oxide in hypertension.

In response to a high salt intake, salt-sensitive hypertensive individuals retain more sodium and manifest a rise in blood pressure greater than that in salt-resistant individuals. In this study, we tested whether salt sensitivity might be related at least in part to reduced secretion of atrial natriuretic peptide (ANP) or to abnormal nitric oxide production. We measured plasma ANP and NO2+NO3 in 7 normotensive individuals and 13 salt-sensitive and 14 salt-resistant blacks with essential hypertension under conditions of low (10 mEq/d) and high (250 mEq/d) salt intake. To evaluate possible racial differences in ANP secretion, we also measured plasma ANP in 6 salt-sensitive and 8 salt-resistant hypertensive whites during low and high salt intakes. Under low salt conditions, plasma ANP levels were not different in normotensive control subjects and salt-sensitive and salt-resistant hypertensive blacks. During high salt intake, plasma ANP levels did not change in control subjects and salt-resistant patients but decreased in salt-sensitive patients. ANP levels after high salt diet were lower (P < .01) in salt-sensitive than salt-resistant blacks. In hypertensive whites, high salt intake caused no significant change in plasma ANP. Under low salt conditions, plasma NO2+NO3 levels were higher (P < .05) in salt-sensitive (189 +/- 7.9 mumol/L) and salt-resistant (195 +/- 13.5 mumol/L) black patients than in control subjects (108 +/- 9.7 mumol/L). During high salt intake, plasma NO2+NO3 decreased significantly (P < .01) in both salt-sensitive (150 +/- 7.0 mumol/L) and salt-resistant (142 +/- 9.0 mumol/L) patients. These studies show that under conditions of high salt intake, salt-sensitive hypertensive blacks manifest a paradoxical decrease in ANP secretion. This abnormality may play a role in the reduced ability of these individuals to excrete a sodium load and in the sodium-induced rise in blood pressure. This study does not support the hypothesis that salt sensitivity depends on a deficit of nitric oxide production, but it suggests that high salt intake may alter the endothelium-dependent adaptation of peripheral resistance vessels.

Adult↗

Sensitive method for quantitation of angiotensin-converting enzyme (ACE) activity in tissue.

A novel sensitive and specific method for the measurement of tissue angiotensin-converting enzyme (ACE) activity utilizing HPLC is described. ACE activity was determined in detergent-extracted canine hearts utilizing the synthetic ACE-specific substrate hippuryl histidyl leucine (HHL), both in the presence and the absence of the site-specific inhibitor captopril. Tissue ACE activity was quantitated from the moles of hippuric acid (HA) formed, in time-fixed assays, utilizing HPLC separation of HA from HHL and UV-spectrophotometry for quantitation of HA as in the standard Cushman and Cheung assay (Cushman DW and Cheung HS, Biochem Pharmacol 20: 1637-1648, 1971). Separation of HA from HHL was performed by reverse phase HPLC on a phenyl silica gel column with an eluent consisting of 20% acetonitrile in 0.1 M aqueous ammonium phosphate buffer, pH 6.8. After the standard liquid/liquid extraction procedure with ethyl acetate, HPLC analysis revealed the presence of unreacted substrate, HHL, in amounts comparable to the product of interest, HA, in the final assay; moreover, the amount of HA formed did not fall completely to zero in the presence of captopril. Regional studies of canine cardiac ACE activity utilizing the HPLC-based assay and the standard assay method showed a significantly higher ACE activity in the right ventricle compared with the left ventricle (2.37 +/- 0.7 vs 1.24 +/- 0.18 mU/g, P < 0.05 [N = 6], respectively) in the HPLC-based assay, but no difference in right and left ventricular ACE activities by the standard assay (0.25 +/- 0.08 vs 0.31 +/- 0.09 mU/g [N = 6], respectively). Kinetic studies utilizing the HPLC-based assay coupled with the use of captopril showed Km (1.34 +/- 0.08 mM) and Vmax (36.8 +/- 11.5 x 10(-10) M/min) values in agreement with those in the literature. Our results demonstrate that the application of HPLC to the standard Cushman and Cheung assay improves the sensitivity and specificity of the standard assay and enables the use of much smaller amounts (approximately 4 vs approximately 400 mg for the Cushman and Cheung assay) of tissue for ACE activity assay.

Angiotensin-Converting Enzyme Inhibitors↗