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H P Schobel

Publications and source records attributed to H P Schobel.

At least 19 recordsLinked to original sources

Pregnancy-induced sympathetic overactivity: a precursor of preeclampsia.

BACKGROUND: Preeclampsia has been shown to constitute a state of sympathetic overactivity. However, it remains unclear if the sympathetic activity precedes preeclampsia or represents only a secondary phenomenon. To further investigate this issue, we performed a prospective study in pregnant women considered to be at increased risk for preeclampsia owing to preeclampsia during a preceding pregnancy. MATERIALS AND METHODS: Twenty-two women with a history of preeclampsia were longitudinally studied on three occasions: twice during pregnancy (M1: 22 +/- 4, M2: 33 +/- 5 weeks) and once postpartum (M3: 26 +/- 6 weeks postpartum). We measured muscle sympathetic nerve activity (MSNA), forearm blood flow, and blood pressure at rest and during reactive hyperaemia after forearm occlusion. RESULTS: At M1 and M2, none of the subjects was hypertensive, however, muscle sympathetic nerve activity levels were significantly augmented, compared with their postpartum values (M1: 21 +/- 9, M2: 29 +/- 14, M3: 9 +/- 5 bursts min(-1); P < 0.05). Forearm vascular resistance did not significantly change from M1 through M3 (M1: 16 +/- 9, M2: 15 +/- 7, M3: 16 +/- 7 U; P = NS). Gestational muscle sympathetic nerve activity values did not differ significantly among the subjects with subsequent preeclampsia compared with those who remained normotensive [with preeclampsia (n = 6): M1: 21 +/- 5, M2: 27 +/- 6, M3: 7 +/- 4 bursts min(-1); without preeclampsia (n = 16): M1: 21 +/- 11, M2: 30 +/- 16, M3: 9 +/- 6 bursts min(-1); P = NS]. CONCLUSION: Invariably, all women at risk for preeclampisa showed a pregnancy-induced increase in MSNA (pregnancy-induced sympathetic overactivity, PISO), which normalized after delivery. Most importantly, PISO is not necessarily associated with peripheral vasoconstriction and hypertension. Furthermore, only a subset of patients developed preeclampsia later on. Therefore, we hypothesize that PISO constitutes a precursor of preeclampsia which is physiologically compensated for by vasodilating mechanisms, leading to preeclampsia only when they fail.

Adult↗

Cardiovascular effects of beta-blockers with and without intrinsic sympathomimetic activity. A comparison between celiprolol and metoprolol.

BACKGROUND: Celiprolol, a newer beta-blocking agent, has been reported to have vasodilatory capacity which may be due to partial beta-2-receptor agonistic activity or to alpha-receptor antagonistic or central sympathoinhibitory effects. METHODS: To more critically assess the physiologic effects of celiprolol, we measured sympathetic nerve activity to muscle (MSNA), forearm blood flow (FBF), blood pressure (BP), central venous pressure, and heart rate (HR) in 10 normal volunteers at rest, during unloading of cardiopulmonary baroreceptors with lower body negative pressure (LBNP), and during a cold pressor test (CPT). Responses were compared with those seen with metoprolol and with placebo, i.e. each subject was studied three times. RESULTS: Celiprolol did not alter resting levels of hemodynamics, FBF, and MSNA nor did it alter responses to LBNP or the CPT. In contrast, metoprolol produced significant decreases of FBF and HR, and increases of forearm vascular resistance and BP, but had also no effect on responses to the applied stress tests. CONCLUSIONS: The lack of peripheral vasoconstriction seen after acute administration of celiprolol is most likely due to its partial beta-2-receptor agonistic effect and does not seem to be due to a central or reflex action or to an alpha-blocking effect. Both beta-blockers do not impair fundamental neural mechanisms involved in circulatory homeostasis.

Adrenergic beta-Antagonists↗

Long-term results after microvascular decompression in essential hypertension.

BACKGROUND AND PURPOSE: In 1998, 8 patients with severe, intractable arterial hypertension and MR tomography-demonstrated neurovascular contact of a looping artery at the root entry zone of cranial nerves IX and X, causing neurovascular compression, underwent neurosurgical decompression. The short-term results showed a normalization of blood pressure with a markedly reduced antihypertensive drug regimen in 7 patients. To determine the longer-term outcome concerning blood pressure and secondary organ damage after neurovascular decompression, we studied these 8 operated patients prospectively for a mean follow-up of 3.5 years after surgical intervention. METHODS: Eight hypertensive patients who had undergone microsurgical decompression were monitored every 6 months after surgery to assess blood pressure (by 24-hour ambulatory pressure readings) and the need for antihypertensive medication. To evaluate secondary organ damage, echocardiographic assessment of left ventricular hypertrophy, fundoscopic assessment of hypertensive lesions, and analysis of renal function and proteinuria were done. RESULTS: Three of the 8 operated patients remained normotensive in the long-term period with decreased antihypertensive medication. Two patients required gradual increases of antihypertensive medication after the first postoperative year, after which arterial blood pressure levels were 10% to 15% lower than preoperative levels. Three patients suffered serious cardiovascular and renal complications, with the incidence of lethal intracerebral hemorrhage in 1 patient and end-stage renal disease in 2 patients, of whom 1 experienced sudden cardiac death. CONCLUSIONS: The long-term results verify that microsurgical decompression is a successful alternative therapy in a certain subgroup of patients with arterial hypertension due to neurovascular compression. However, the relevance of the looping artery in the other cases, who did not improve, is not clear. Prospective studies to elucidate the pathophysiological role of neurovascular abnormalities and arterial hypertension are needed.

Adult↗

Severely impaired baroreflex-buffering in patients with monogenic hypertension and neurovascular contact.

BACKGROUND: We identified a family with a monogenic syndrome of hypertension, brachydactyly, and neurovascular contact of the brain stem. Neurovascular contact of the ventrolateral medulla may lead to arterial hypertension by interfering with baroreflex function. METHODS AND RESULTS: In 5 patients with monogenic hypertension (18 to 34 years old), we conducted detailed autonomic function tests. Blood pressure during complete ganglionic blockade was 134+/-4.9/82+/-4.1 mm Hg and 90+/-6/49+/-2.4 mm Hg in patients and in control subjects, respectively. During ganglionic blockade, plasma vasopressin concentration increased 24-fold in control subjects and <2-fold in patients. In patients, cold pressor testing, hand-grip testing, and upright posture all increased blood pressure excessively. In contrast, muscle sympathetic nerve activity was not increased at rest or during cold pressor testing. The phenylephrine dose that increased systolic blood pressure 12.5 mm Hg was 8.0+/-2.0 microg in patients and 135+/-35 microg in control subjects before ganglionic blockade and 5.4+/-0.4 microg in patients and 13+/-4.8 microg in control subjects during ganglionic blockade. CONCLUSIONS: In patients with monogenic hypertension and neurovascular contact, basal blood pressure was increased even during sympathetic and parasympathetic nerve traffic interruption. However, sympathetic stimuli caused an excessive increase in blood pressure. This excessive response cannot be explained by increased sympathetic nerve traffic or increased vascular sensitivity. Instead, we suggest that baroreflex buffering and baroreflex-mediated vasopressin release are severely impaired.

Adolescent↗

Impact of aldosterone on left ventricular structure and function in young normotensive and mildly hypertensive subjects.

Left ventricular (LV) hypertrophy is an independent risk factor for cardiovascular morbidity and mortality. Experimental data revealed that elevated circulating aldosterone is associated with increased collagen accumulation resulting in myocardial fibrosis. To analyze whether aldosterone is also associated with cardiac structural and functional changes in humans, we examined the effects of aldosterone on LV structure and function before and after suppression of aldosterone by increasing oral salt intake. The study group comprised 26 normotensive male white healthy control subjects (age 26 +/- 3 years) and 31 male white subjects (age 25 +/- 3 years) with mild essential hypertension (World Health Organization stages I to II). Two-dimensional-guided M-mode echocardiography and 24-hour ambulatory blood pressure (BP) monitoring was performed in each subject. Simultaneously, we measured 24-hour urinary sodium excretion, 24-hour urinary aldosterone, and serum aldosterone concentration at baseline and after increasing oral salt intake to suppress aldosterone secretion. In all subjects LV mass correlated with body mass index (r = 0.42, p <0.001) and both 24-hour ambulatory systolic (r = 0.28, p <0.05) and diastolic (r = 0.25, p <0.05) BP. Changes in urinary sodium excretion correlated inversely with changes in serum aldosterone concentration (r = -0.28; p <0.05). Urinary aldosterone concentration after salt loading decreased in normotensive (10.98 vs 7.44 microg/24 hours; p <0.02) but not in hypertensive (9.34 vs 10.51 microg/24 hours; p = NS) subjects. Serum and urinary aldosterone levels at baseline were not related to LV structure or function. In contrast, after increasing oral salt intake, urinary aldosterone concentration was related to LV mass (r = 0.43; p <0.01) and impaired midwall fractional fiber shortening (r = -0.33; p <0.02) in all subjects, independent of 24-hour ambulatory BP. Subgroup analysis revealed that this was significant only in hypertensive (r = 0.46; p <0.01 and r = -0.44; p <0.02, respectively) but not in normotensive (r = 0.28 and -0.16; p = NS for both, respectively) subjects. Consistently, the greater serum aldosterone remained after increasing oral salt intake, the greater was LV mass (r = 0.35; p <0.01). The latter was found in hypertensive subjects (r = 0.44; p <0.02), independent of 24-hour ambulatory BP, but not in normotensive subjects (r = 0.025; p = NS). Inadequate suppression of aldosterone in response to an increase in oral salt intake is related to LV structural and functional changes in hypertensive subjects. Thus, our results support experimental data indicating that aldosterone affects LV structure and function in humans and that this effect is BP independent.

Adult↗

Vascular reactivity in patients with preeclampsia and HELLP (hemolysis, elevated liver enzymes, and low platelet count) syndrome.

OBJECTIVE: Early structural and functional changes in the systemic vasculature have been proposed to play a major pathogenetic role in preeclampsia and HELLP (hemolysis, elevated liver enzymes, and low platelet count) syndrome. The aim of the study was to determine vascular reactivity in patients with preeclampsia with and without HELLP syndrome with respect to those in healthy pregnant control subjects. STUDY DESIGN: Forearm blood flow was measured by strain gauge plethysmography with the venous occlusion technique in 12 hypertensive patients with HELLP syndrome, in 8 patients with preeclampsia without HELLP syndrome, and in 8 healthy normotensive pregnant control subjects. To determine vascular reactivity the forearm blood flow was measured at baseline and after forearm occlusion for a period of 5 minutes (reactive hyperemia). The investigations were repeated 4 to 6 months post partum. Forearm vascular resistance was calculated as the ratio of mean arterial pressure to forearm blood flow. RESULTS: Mean arterial pressure at rest was elevated in patients with preeclampsia (116 +/- 20 mm Hg) and in patients with HELLP syndrome (110 +/- 16 mm Hg) with respect to healthy pregnant control subjects (86 +/- 10 mm Hg; P <.05). Forearm blood flow at rest was not statistically different in patients with preeclampsia (5.1 +/- 2.6 mL/min per 100 mL) and with HELLP syndrome (4.7 +/- 1.5 mL/min per 100 mL) with respect to pregnant control subjects (5.9 +/- 3.1 mL/min per 100 mL); however, forearm vascular resistance at rest was elevated in patients with preeclampsia (25.9 +/- 9.5 units; P <.05) and in patients with HELLP syndrome(24.6 +/- 6.9 units; P <.05) with respect to healthy control subjects (17.0 +/- 6.1 units). During reactive hyperemia the peak forearm blood flow, which is an indicator of maximal vasodilatory capacity, was impaired in patients with preeclampsia (21.9 +/- 8.2 mL/min per 100 mL; P <.05) but not in patients with HELLP syndrome (37.4 +/- 17.5 mL/min per 100 mL) and healthy control subjects (44.9 +/- 15.0 mL/min per 100 mL). Consequently, minimum forearm vascular resistance was higher in women with preeclampsia (6.1 +/- 1.9 units) than in both women with HELLP syndrome (3.5 +/- 1.6 units) and the control subjects (2.8 +/- 2.4 units). CONCLUSION: Despite similarly elevated forearm vascular resistances at rest in patients with HELLP syndrome and in patients with preeclampsia, forearm vascular resistance during reactive hyperemia did not differ significantly from that in healthy control subjects in the women with HELLP syndrome but was increased in women with preeclampsia. Vasodilatory reactivity thus is reduced in preeclampsia but not in HELLP syndrome, which suggests different alterations of the vasculature.

Adult↗

Relation between the renin-angiotensin-aldosterone system and left ventricular structure and function in young normotensive and mildly hypertensive subjects.

BACKGROUND: High angiotensin II levels in relation to the corresponding urinary sodium excretion have been found to modulate left ventricular (LV) structure in middle-aged hypertensive patients. To analyze whether such a relation between the renin-angiotensin-aldosterone system and left ventricular structure is already present in young individuals, we examined the changes of angiotensin II and aldosterone in response to increased salt intake and their relations to LV structure and function. METHODS: In 119 young (aged 26 +/- 3 years) patients with normal or mildly elevated blood pressure, we determined LV structure and function (2-dimensional guided M-mode echocardiography and pulse wave Doppler sonography) and 24-hour ambulatory blood pressure (SpaceLabs 90207). Dietary sodium intake as estimated by 24-hour urinary sodium excretion, plasma renin activity, angiotensin II, and aldosterone concentrations were measured first on a normal diet and second at high salt intake to determine the extent of the resulting suppression of the renin-angiotensin-aldosterone system. RESULTS: Body mass index (r = 0.43, P <.001) and both systolic (r = 0.24, P <. 01) and diastolic (r = 0.19, P <.05) 24-hour ambulatory blood pressure correlated with LV mass. No straightforward relation was found between LV structure and baseline angiotensin II or aldosterone concentration. The increase of sodium excretion at high salt intake was related to a physiologically expected decrease of angiotensin II and aldosterone levels in normotensive (r = -0.36, P <.01 and r = -0.32; P =.016, respectively) but not in hypertensive patients. Changes in angiotensin II or aldosterone concentration were not related to LV structure in either hypertensive or normotensive young individuals. However, changes in aldosterone secretion correlated with diastolic filling parameters in hypertensive patients (velocity-time integrals of the A over E wave: r = 0.32, P =.03; atrial contribution of LV filling: r = 0.33, P =. 025) but not in normotensive individuals. CONCLUSION: In contrast to middle-aged hypertensive patients, neither angiotensin II, aldosterone, nor their suppression in response to high salt intake were related to LV structure in young hypertensive patients. However, inadequate suppression of aldosterone after salt intake was associated with diastolic filling abnormalities in our young hypertensive patients, which may represent early changes in hypertensive heart disease and precede potential structural alterations.

Adult↗

Angiotensin II stimulates left ventricular hypertrophy in hypertensive patients independently of blood pressure.

Angiotensin II (AII) is known to be a growth stimulating factor for myocardial cells. We examined whether an exaggerated responsiveness to AII might aggravate left ventricular (LV) hypertrophy in human essential hypertension. To determine the responsiveness to AII in humans, we examined changes in mean arterial pressure (MAP), renal blood flow (RBF), and glomerular filtration rate (GFR) (steady state input clearance technique with para-aminohippurate and inulin, respectively) and aldosterone secretion to AII infusions (0.5 and 3.0 ng/kg/min) in 71 normotensive male and 48 hypertensive male subjects (age: 26 +/- 3 years; 24-h ambulatory blood pressure: 121 +/- 5/71 +/- 4 mmHg v 138 +/- 7/82 +/- 7 mmHg, P < .001). In addition, each patient underwent two-dimensional guided M-mode echocardiography at rest to assess cardiac structure and function. When given AII 3.0, a greater increase of MAP (13 +/- 7 v 17 +/- 8 mm Hg, P < .022) and a more marked decrease of RBF (-203 +/- 123 mL/min v -270 +/- 137 mL/min, P < .007) were found in hypertensives than in normotensives, whereas changes in GFR and aldosterone concentration were similar in both groups. Most important, changes in GFR to AII correlated with echocardiographically determined LV mass (normotensives: AII 0.5: r = 0.33, P < .006, AII 3.0: r = 0.28, P < .05; hypertensives: AII 0.5: r = 0.41, P < .006, AII 3.0: r = 0.32, P < .05). After taking baseline MAP and body mass index into account, the increase in GFR to AII 0.5 in hypertensives still correlated with LV mass (partial r = 0.37, P < .01). Inasmuch as the increase of GFR is a marker of the responsiveness to AII (related to vasoconstriction at the postglomerular site), our data suggest that increased sensitivity to AII is linked to LV hypertrophy in early essential hypertension, independently of the level of blood pressure.

Adult↗

[The autonomic nervous system and pre-eclampsia].

Alterations in the autonomic cardiovascular control have been implicated to play an important etiologic role in preeclampsia. Earlier assessments of sympathetic nervous system activity by measurements of urinary and plasma levels of catecholamines showed contradictory results, due to serious methodological problems. The microneurographic technique enables the assessment of sympathetic outflow to the vascular bed of skeletal muscles. By the use of this technique it has been shown that preeclampsia represents a state of sympathetic overactivity as compared to healthy pregnant women. Other studies have shown that exogenous stimulation of the celiac ganglion causes a HELLP-syndrome-like disease in pregnant rats and that preeclamptic human plasma increases norepinephrine release in isolated sympathetic neurons of chicken embryos. These data suggest that the autonomic nervous system may play a fundamental role in the etiology of preeclampsia.

Animals↗

Decrease of blood pressure by ventrolateral medullary decompression in essential hypertension.

BACKGROUND: About 20% of adults worldwide will develop hypertension. Studies and clinical observations suggest an association between hypertension and pulsatile compression of the ventrolateral medulla oblongata by a looping artery. We investigated whether neurosurgical microvascular decompression substantially decreases blood pressure long-term in patients with severe essential hypertension. METHODS: We included eight patients who had received three or more antihypertensive drugs without adequate control of blood pressure, intolerable side-effects, or both. All patients underwent microvascular decompression at the root-entry zone of cranial nerves IX and X after neurovascular compression of the ventrolateral medulla oblongata was seen on magnetic-resonance angiography. FINDINGS: 3 months after surgery, blood pressure and antihypertensive regimens had decreased substantially in three patients. Four patients who were followed up for more than 1 year became normotensive, but their antihypertensive regimens remained the same as those at 3 months. One patient did not improve. No complications associated with decompression occurred. One patient experienced a transient vocal-cord paresis after the laryngeal part of the vagus nerve was manoeuvered during surgery. INTERPRETATION: We showed a direct causal relation between raised blood pressure and irritation of cranial nerves IX and X. A subgroup of patients with essential hypertension may exist who have secondary forms of hypertension related to neurovascular compression at the ventrolateral medulla and who may be successfully treated with decompression.

Adult↗

Effects of naloxone on hemodynamic and sympathetic nerve responses to pain in normotensive vs. borderline hypertensive men.

Pain sensitivity decreases with increasing resting blood pressure. This blood pressure-pain interaction may be mediated by endogenous opioids which have been shown to affect both blood pressure and nociception. To test this hypothesis, we measured mean arterial blood pressure (MAP), central venous pressure (CVP), heart rate (HR), muscle sympathetic nerve activity (MSNA), serum catecholamines, and individual pain rating scales during 2 min periods of noxious mechanostimulation (skin fold pinching) in nine young (26 +/- 2 year), male normotensive (NT) subjects and in 12 age and weight matched males with borderline hypertension (BHT). Measurements were performed before and after the i.v. administration of naloxone (0.15 mg/kg) and placebo in a randomized double-blind cross-over trial. In the pre-naloxone trials, pain led to similar changes in MAP, CVP, MSNA and plasma catecholamines in the two groups except for a higher increase in HR in the BHT group as compared to the NT group (3 +/- 1 vs. 1 +/- 1 bpm; P < 0.005). Opioid blockade with naloxone increased MSNA responses to pain in the NT group (from 5 +/- 1 to 9 +/- 1 bursts/min, and, from 100 +/- 23 to 204 +/- 36 units/min, respectively; P < 0.05) but did not significantly affect the MSNA response to pain in the BHT group. Pain induced responses of MAP, CVP, and catecholamines were not altered by naloxone in either group. Overall, there was a highly significant inverse correlation between pain perception and resting blood pressure which was not significantly affected by naloxone. The BHT subjects exhibited a lower pain perception compared to the NT subjects (P < 0.005). Naloxone increased pain rating in the NT group (from 194 +/- 9 to 218 +/- 13; P < 0.005) but not in the borderline hypertensive group (160 +/- 8 vs. 168 +/- 10; P = 0.36). Except for a decreased HR response in the BHT group, placebo had no effect on the responses to pain. Our data do not indicate a major role of the endogenous opioid system for the blood pressure-pain interaction in man. Endogenous opioids affect pain perception and sympathetic nerve activity responses to pain in normotensive men but their activity seems to be attenuated in borderline hypertensive subjects. Therefore, the lower pain sensitivity in human essential hypertension is probably mediated by non-opioid mechanisms.

Adult↗

Vasodilatory capacity of forearm resistance vessels is augmented in hypercholesterolemic patients after treatment with fluvastatin.

Atherosclerotic vessels are characterized by endothelial and structural abnormalities as indicated by an impaired vasodilation to metabolic requirements. To determine whether effective treatment of hypercholesterolemia may improve vasodilatory capacity of resistance vessels, the authors examined the impact of 12 and 24 weeks of lipid-lowering therapy with the hepatic hydroxymethylglutaryl coenzyme A (HMG-CoA)-reductase inhibitor fluvastatin (40 to 80 mg/day) on the increment in forearm blood flow during reactive hyperemia in 24 hypercholesterolemic patients (mean age: 56 +/- 11 years; 15 men/9 women). Changes in forearm blood flow in response to reactive hyperemia were measured by venous occlusion plethysmography. Serum low-density lipoprotein (LDL)-cholesterol fell from 213 +/- 32 to 125 +/- 27 mg/dL (P<0.001) after 12 weeks and remained stable at a level of 125 +/- 18 mg/dL after 24 weeks of treatment. Baseline forearm blood flow was similar before and after 12 and 24 weeks of therapy. In contrast, forearm blood flow at peak reactive hyperemia was greater at week 12 (37.0 +/- 22.9 mL/min/100 mL; P<0.05), and at week 24 (47.1 +/- 33.5 mL/min/100 mL; P<0.05) than at week 0 (30.5 +/- 18.1 mL/min/100 mL). Compared with week 0 (defined as 100%), the percent change in forearm blood flow in response to reactive hyperemia was augmented at week 12 (171 +/- 144%; P<0.05 vs week 0) and at week 24 (218 +/- 228%; P<0.05 vs week 0). Thus, the lowering of high serum LDL cholesterol after short-term treatment with fluvastatin increased the blood flow responses during reactive hyperemia in forearm resistance vessels. These data indicate a beneficial effect of HMG-CoA reductase inhibition on structural wall properties of peripheral arteries in human atherosclerosis.

Aged↗

Evidence against elevated sympathetic vasoconstrictor activity in borderline hypertension.

The relationship between sympathetic nerve activity and BP in the early stages of essential hypertension remains unclear. To investigate this relationship further, this study measured resting muscle sympathetic nerve activity (MSNA: representing peripheral vasoconstrictor activity), plasma catecholamines, BP, central venous pressure, and heart rate in 20 young (24 +/- 2 SD yr), lean (body mass index, 24.2 +/- 3.0 kg/m2), male subjects with borderline hypertension (BHT) and in 21 male normotensive (NT) control subjects matched for age and body mass index. A cold pressor test was also performed to evaluate sympathetic reflex responsiveness. Resting mean BP and heart rate were significantly higher in the BHT subjects compared with NT subjects (113 +/- 9 versus 89 +/- 9 mmHg; 74 +/- 8 versus 62 +/- 8 bpm; P < 0.0001 each) with no difference in central venous pressure. Resting MSNA levels tended to be lower in the BHT versus the NT group (12 +/- 6 versus 14 +/- 9 bursts/min, P = NS; 16 +/- 8 versus 22 +/- 13 bursts/100 heartbeats, P = 0.05) and did not correlate with either BP or body mass index. Significant positive correlations were found between resting MSNA and plasma norepinephrine levels in both groups (P < 0.05). Hemodynamic and sympathetic nerve responses to the cold pressor test were similar between the BHT and NT subjects. It is concluded that resting MSNA and plasma norepinephrine levels are correlated in young lean NT and BHT men; however, neither of these variables is correlated with BP. Because MSNA was similar in the two groups, the concept that augmented resting MSNA is important in the early developmental phase of essential hypertension must be reevaluated.

Adult↗

Inadequate suppression of angiotensin II modulates left ventricular structure in humans.

BACKGROUND: In a previous study we found that high angiotensin II levels in relation to the corresponding urinary sodium excretion aggravate left ventricular hypertrophy in hypertensive patients. To analyze whether a dysregulation of the renin angiotensin aldosterone system determines left ventricular structure in young individuals, we examined whether the response of angiotensin II after increasing salt intake is related to left ventricular structure. METHODS: In 51 young, male Caucasians with normal or mildly elevated blood pressure, left ventricular structure, 24-hour ambulatory blood pressure and dietary sodium intake (as estimated by 24-hour sodium excretion) were determined in parallel with plasma renin activity, angiotensin II, and aldosterone concentrations. Angiotensin II concentration and 24-hour sodium excretion were measured twice: firstly on a normal Bavarian diet and secondly at high salt intake to determine the resulting suppression of the renin-angiotensin-aldosterone system. RESULTS: Body mass index (r = 0.42, p < 0.001) and both systolic (r = 0.28, p < 0.05) and diastolic (r = 0.25, p < 0.05) 24-hour ambulatory blood pressure correlated with left ventricular mass. No direct relationship was found between left ventricular structure and baseline angiotensin II concentration. The lower the physiological decrease of angiotensin II after high oral salt intake, i.e. the higher the angiotensin II level after salt intake remained, the greater was left ventricular mass (r = 0.38; p < 0.006) even after taking 24-hour ambulatory blood pressure into account (partial correlation; r = 0.43, p < 0.005). Consistently, angiotensin II concentration at high salt intake correlated with left ventricular mass independently of ambulatory blood pressure (partial correlation: r = 0.29, p < 0.05). Subgroup analysis revealed that the increase in sodium excretion at high salt intake was related to the decrease in angiotensin II levels in normotensive (r = -0.43, p < 0.05), but not in hypertensive subjects (r = 0.16, n.s.). The changes in angiotensin II concentration at high salt intake were related to left ventricular mass in hypertensive (r = 0.43, p < 0.02), but not in normotensive individuals (r = 0.21, n.s.). CONCLUSION: Our finding that angiotensin II concentration at high salt intake correlated with left ventricular mass independently of ambulatory blood pressure suggests that inadequate suppression of angiotensin II after high salt intake contributes to left ventricular hypertrophy already in young hypertensive individuals independently of blood pressure.

Adult↗

Impact of alpha- versus beta-blockers on hypertensive target organ damage: results of a double-blind, randomized, controlled clinical trial.

In hypertensive disease, the extent of target organ damage determines the prognosis. We conducted a 6-month, double-blind randomized study to compare the effects of an alpha1-adrenoreceptor blocker (bunazosin) with those of a beta1-adrenoreceptor blocker (metoprolol) on early hypertensive target organ damage at a similar level of blood pressure reduction. The study consisted of 43 patients (29 men and 14 women) of varying ages (mean age 52 +/- 9 years) with essential hypertension World Health Organization stage I-II. Both the alpha- and the beta-blocker lowered blood pressure to a similar extent measured by 24-h blood pressure monitoring. The left ventricular mass was comparably reduced in both cohorts (alpha-blocker 284 +/- 80 v 259 +/- 67 g, P < .05, beta-blocker 282 +/- 74 v 254 +/- 70 g, P < .05). Treatment with the alpha-blocker led to reduced total peripheral resistance (22.9 +/- 8.0 v 19.9 +/- 5.3 U, P < .05), whereas therapy with the beta-blocker resulted in an elevated total peripheral resistance (25.5 +/- 8.4 v 28.5 +/- 9.3 U, P < .10; P < .05 for the difference in both groups). Renal plasma flow remained constant in the alpha-blocker treated group but decreased in the beta-blocker treated group (508 +/- 141 v 477 +/- 134 mL/min/1.73 m2, P < .05). Glomerular filtration rate as measured by inulin clearance tended to increase after treatment with the alpha-blocker (112 +/- 20 v 115 +/- 18 mL/min/1.73 m2, P < .10) in accordance with a decrease of serum creatinine (1.00 +/- 0.14 v 0.93 +/- 0.12 mg/dL, P < .001). Plasma cholesterol and LDL cholesterol was lowered after treatment with the alpha-blocker (238 +/- 48 v 312 +/- 37 mg/dL; P < .001, and 153 +/- 32 v 130 +/- 25 mg/dL; P < .05) while remaining unchanged in group treated with the beta-blocker. Left ventricular hypertrophy was similarily reduced with alpha- and with beta-blockade at a comparable reduction of 24-h blood pressure. Alpha-blockers effected a more favorable renal and systemic hemodynamic profile than beta-blockers, but only long-term prospective studies will answer the question whether these hemodynamic effects result into a better cardiovascular prognosis.

Adrenergic alpha-Antagonists↗