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Biomedical subjects

G Lembo

Publications and source records attributed to G Lembo.

At least 55 records · Page 3Linked to original sources

Dietary salt excess unmasks blunted aldosterone suppression and sodium retention in the stroke-prone phenotype of the spontaneously hypertensive rat.

OBJECTIVE: The mechanisms underlying the accelerating effect of high salt intake on the development of vascular injury in the stroke-prone phenotype of spontaneously hypertensive rats (SHRSP) are still not clear. The aim of the present study was to determine whether young SHRSP can excrete a dietary excess of sodium and to characterize the associated hormonal responses. METHODS: Sodium balance and hormonal parameters were studied during a 1-week high-salt diet (4% NaCl) in 6-week-old SHRSP (n = 84), in age-matched spontaneously hypertensive rats (SHR; n = 73) and in normotensive Wistar-Kyoto (WKY) rats (n = 52). RESULTS: Baseline systolic blood pressure (SBP) was similar in SHR and SHRSP and did not change significantly during the high-salt diet. SBP also remained unchanged in WKY rats during the high-salt diet. Despite similar daily sodium intakes in the three groups during the diet, the response of urinary sodium excretion to sodium loading was reduced significantly in SHRSP compared with SHR or WKY rats (F = 4.09, P < 0.001). Plasma renin activity was suppressed significantly by high salt intake in each group to a comparable extent. Plasma aldosterone concentrations were also reduced significantly by sodium loading in all strains. However, a lesser degree of aldosterone suppression was observed in the SHRSP than in both SHR and WKY rats (F = 3.01, P < 0.01). CONCLUSIONS: Young SHRSP show a blunted suppression of plasma aldosterone and a defective sodium excretion during high salt intake.

Administration, Oral↗

Digitalis restores the forearm sympathetic response to cardiopulmonary receptor unloading in hypertensive patients with left ventricular hypertrophy.

OBJECTIVE: To investigate whether the impaired reflex response to cardiopulmonary baroreceptor unloading in hypertensive patients with left ventricular hypertrophy can be promptly improved by a pharmacological challenge. For this purpose we studied the effects of acute digitalis administration on cardiopulmonary baroreflex, evaluated by forearm noradrenaline spillover. METHODS: Eleven hypertensives with left ventricular hypertrophy and 10 age- and sex-matched normotensives underwent the application of -5 and -10 mmHg lower-body negative pressure (LBNP) before and after the administration of digitalis. Forearm noradrenaline spillover, measured using a tracer technique, was used to estimate the reflex sympathetic response. RESULTS: Under control conditions LBNP evoked a similar fall in right atrial pressure in the two study groups. In the normotensives there was a significant increase in forearm noradrenaline spillover. In the hypertensives no significant changes in forearm noradrenaline spillover were found. Intravenous administration of 0.02 mg/kg lanatoside C was associated with an increase in systolic blood pressure and a reduction in forearm noradrenaline spillover in both groups. In the normotensives the percentage change in forearm noradrenaline spillover induced by LBNP increased significantly in response to digitalis administration. However, digitalis restored the response of forearm noradrenaline spillover to LBNP in the hypertensives, so that no significant difference in this response was detected between the two study groups. Digitalis did not modify the effects of LBNP on cardiac pressures in either group. CONCLUSIONS: The present results demonstrate that administration of lanatoside C restores the response of forearm noradrenaline spillover to cardiopulmonary baroreceptor unloading in hypertensive patients with left ventricular hypertrophy. This indicates that the impairment of cardiopulmonary baroreflexes in these patients can be reversed by acute pharmacological treatment. Therefore, impairment of this reflex response seems to be related to functional rather than to structural abnormalities of the hypertrophied ventricle.

Digitalis Glycosides↗

Angiotensin II directly stimulates release of atrial natriuretic factor in isolated rabbit hearts.

BACKGROUND: Previous studies have shown that infusion of angiotensin II (Ang II) increases plasma concentrations of atrial natriuretic factor (ANF) in vivo. This phenomenon has been considered secondary to the effects of Ang II on cardiac and systemic hemodynamics. The present study was designed to assess whether Ang II may exert a direct stimulatory effect on ANF release from the heart independent of changes in hemodynamics. METHODS AND RESULTS: Isolated rabbit hearts were perfused in the Langendorff mode. Heart rate, coronary flow, and atrial and left ventricular (LV) volumes were kept constant. After stabilization, Ang II was infused intracoronary at increasing doses (10(-11) to 10(-8) M) in nine hearts and at a single dose of 10(-10) M in 10 hearts. Each infusion lasted for 5 minutes and was followed by a 10-minute washout period. Four hearts received vehicle alone for 80 minutes. Ang II induced a dose-dependent increase in coronary perfusion pressure and in LV developed pressure. ANF release, measured by radioimmunoassay on the extracts of the cardiac effluent, also increased during Ang II infusion and returned to the basal values during the 10-minute washout period. In the control group, coronary perfusion pressure, LV developed pressure, and LV end-diastolic pressure did not change appreciably over the observation period, whereas ANF release progressively decreased during perfusion. CONCLUSIONS: Ang II can directly stimulate cardiac release of ANF in isolated rabbit hearts independently of changes in hemodynamics.

Analysis of Variance↗

Insulin reduces reflex forearm sympathetic vasoconstriction in healthy humans.

Previous in vitro studies indicate that insulin modifies vascular reactivity to different agents. We have previously demonstrated that in normotensive humans physiological hyperinsulinemia is associated with an increase of forearm norepinephrine release but does not modify vascular resistance. To explore whether insulin modulates peripheral vasoconstriction induced by reflex sympathetic activation, we studied its effects on forearm hemodynamics (strain-gauge plethysmography) during graded levels of lower body negative pressure (-5, -10, -15, and -20 mm Hg, each for 5 minutes) in normotensive subjects. For this purpose, eight subjects received an intrabrachial artery infusion of regular insulin at a systemically ineffective rate (0.05 milliunits/kg per minute) so that deep-venous insulin levels increased in the experimental forearm from 16.5 +/- 2.9 to 379.6 +/- 30 pmol/L (p < 0.01), whereas arterial insulin levels remained unchanged (from 40.9 +/- 8.6 to 43.1 +/- 7.9 pmol/L, NS). In the control arm, forearm vascular resistance (units) increased from 52.3 +/- 3 to a peak of 78.4 +/- 5 (p < 0.001) during lower body negative pressure. In the insulin-exposed forearm, vascular resistance (46.4 +/- 2 at baseline) remained unchanged during insulin infusion (45.8 +/- 3, NS) and rose to a peak of 54.8 +/- 6 (p < 0.05) during lower body negative pressure. The response of forearm vascular resistance to lower body negative pressure was different in the two forearms (F = 4.506, p < 0.01, repeated-measures analysis of variance with grouping factor). Our results demonstrate that in normotensive subjects local physiological hyperinsulinemia reduces the forearm vasoconstrictive response to reflex sympathetic activation.

Adult↗

Effect of complete cardiac denervation on atrial natriuretic factor release in baboons.

We investigated the influence of cardiac innervation on atrial natriuretic factor (ANF) release in baboons. For this purpose, plasma ANF levels were measured in control conditions and in response to head-down (-45 degrees) and head-up tilt (+45 degrees) in six anesthetized baboons before and after complete cardiac denervation obtained by orthotopic autotransplantation of the heart. Cardiac denervation did not modify baseline plasma ANF levels (60.4 +/- 17 pg/ml before and 63.1 +/- 16 pg/ml after heart autotransplantation). In contrast the significant ANF responses to changes in central venous pressure (CVP) induced by postural maneuvers (-45 degrees, + 16.2 +/- 4 pg/ml; +45 degrees, -18.5 +/- 4 pg/ml) were markedly altered after cardiac denervation (-45 degrees, +5.8 +/- 2 pg/ml; +45 degrees, -7.6 +/- 1 pg/ml). The changes in CVP and systemic blood pressure evoked by the postural challenges were comparable before and after cardiac denervation. These results demonstrate that cardiac nerves play a role in the control of ANF release.

Animals↗

A multicentre study of contact sensitization in children. Gruppo Italiano Ricerca Dermatiti da Contatto e Ambientali (GIRDCA).

The results of 7 months of patch testing with a standard series of 26 allergens in 323 children with eczematous conditions or itching palmoplantar psoriasis under the age of 14 years are reported. 114 (35.3%) of the children had 1 or more positive reactions to this standard series. 28 children (8.7%) were polysensitive. On the basis of personal history, additional series of allergens and/or specific allergens were also tested. 61.7% (90/146) of positive reactions were considered relevant to the current dermatitis. Metals, medicaments, preservatives or fragrances, and shoe components were the major sources of contact sensitization. It is suggested that patch testing be done more frequently in evaluating dermatitis in children.

Adolescent↗

Angiotensin converting enzyme inhibition restores cardiac and hormonal responses to volume overload in patients with dilated cardiomyopathy and mild heart failure.

BACKGROUND: Angiotensin converting enzyme (ACE) inhibition exerts a favorable effect on the response to exercise in heart failure. This study was planned to define the influence of ACE inhibition on the adaptation to volume overload. METHODS AND RESULTS: We studied the hemodynamic, hormonal, and renal responses to acute volume expansion (sodium chloride, 0.9%, 0.25 ml.kg-1.min-1 for 2 hours) in patients with idiopathic or ischemic dilated cardiomyopathy and mild heart failure (New York Heart Association class I or II, ejection fraction < or = 50%). The patients were studied without any pretreatment (n = 14) or after 1 week of treatment with the oral ACE inhibitor quinapril at a dosage of 10 mg/day (n = 11). Seven patients were studied during constant intravenous infusion with nitroglycerin (0.1 micrograms.kg-1.min-1). The study groups had similar hemodynamic and clinical characteristics and hormonal profile at baseline evaluation. In the untreated patients, volume expansion did not increase left ventricular end-diastolic volume measured by echocardiography and was associated with a reduction in ejection fraction (p < 0.05) and with a paradoxical increase in forearm vascular resistance (p < 0.05) estimated by plethysmography. In addition, plasma atrial natriuretic factor did not change, and plasma norepinephrine was increased by saline loading. In contrast, in the patients treated with quinapril, volume expansion induced an increase of both left ventricular volumes (p < 0.001) without changing ejection fraction and reduced forearm vascular resistance (p < 0.05). In addition, in this group, plasma atrial natriuretic factor levels increased (p < 0.05) and plasma norepinephrine did not change during volume overload. During nitroglycerin infusion, volume expansion was associated with peripheral vasodilatation, increases of left ventricular volumes, and no change in ejection fraction. In this group, however, plasma atrial natriuretic factor levels did not change in response to volume overload. CONCLUSIONS: We conclude that pretreatment with the ACE inhibitor quinapril significantly improves compromised responses to acute isotonic volume overload in patients with dilated cardiomyopathy and mild heart failure. The favorable influence of ACE inhibition on cardiovascular and hormonal responses to volume expansion seems to be related to the cardiac unloading produced by this treatment.

Adult↗

Abnormal sympathetic overactivity evoked by insulin in the skeletal muscle of patients with essential hypertension.

The reason why hyperinsulinemia is associated with essential hypertension is not known. To test the hypothesis of a pathophysiologic link mediated by the sympathetic nervous system, we measured the changes in forearm norepinephrine release, by using the forearm perfusion technique in conjunction with the infusion of tritiated NE, in patients with essential hypertension and in normal subjects receiving insulin intravenously (1 mU/kg per min) while maintaining euglycemia. Hyperinsulinemia (50-60 microU/ml in the deep forearm vein) evoked a significant increase in forearm NE release in both groups of subjects. However, the response of hypertensives was threefold greater compared to that of normotensives (2.28 +/- 45 ng.liter-1.min-1 in hypertensives and 0.80 +/- 0.27 ng.liter-1 in normals; P less than 0.01). Forearm glucose uptake rose to 5.1 +/- .7 mg.liter-1.min-1 in response to insulin in hypertensives and to 7.9 +/- 1.3 mg.liter-1.min-1 in normotensives (P less than 0.05). To clarify whether insulin action was due to a direct effect on muscle NE metabolism, in another set of experiments insulin was infused locally into the brachial artery to expose only the forearm tissues to the same insulin levels as in the systemic studies. During local hyperinsulinemia, forearm NE release remained virtually unchanged both in hypertensive and in normal subjects. Furthermore, forearm glucose disposal was activated to a similar extent in both groups (5.0 +/- 0.6 and 5.2 +/- 1.1 mg.liter-1.min-1 in hypertensives and in normals, respectively). These data demonstrate that: (a) insulin evokes an abnormal muscle sympathetic overactivity in essential hypertension which is mediated by mechanisms involving the central nervous system; and (b) insulin resistance associated with hypertension is demonstrable in the skeletal muscle tissue only with systemic insulin administration which produces muscle sympathetic overactivity. The data fit the hypothesis that the sympathetic system mediates the pathophysiologic link between hyperinsulinemia and essential hypertension.

Adult↗

Skeletal muscle is a primary site of insulin resistance in essential hypertension.

To determine the contribution of skeletal muscle to the insulin resistance of essential hypertension, insulin-stimulated forearm glucose uptake was quantitated in 12 control (age, 32 +/- 3 years) and 12 hypertensive subjects (age, 36 +/- 2 years) using the forearm perfusion technique. Peripheral insulin levels were raised acutely (approximately 60 microU/mL), while blood glucose concentration was clamped at its basal value (90 mg/dL) by a variable glucose infusion. During insulin stimulation, whole body glucose uptake was lower in hypertensive (4.5 +/- .3 mg.kg-1.min-1) than in normal subjects (5.8 +/- .4 mg.kg-1.min-1, P less than .05). Similarly, the amount of glucose taken up by the forearm was markedly reduced in the hypertensive (5.3 +/- .91 mg.L-1.min-1) compared with the control group (8.7 +/- 1.1 mg.L-1.min-1). No appreciable difference was observed as to forearm blood flow (39 +/- 4 mL.L-1.min-1 and 37 +/- 5 mL.L-1.min-1) in hypertensive patients. These results indicate that skeletal muscle is a major site of insulin resistance in essential hypertension and that this defect is independent of muscle perfusion.

Blood Glucose↗

Abnormal hormonal and renal responses to saline load in hypertensive patients with parental history of cardiovascular accidents.

BACKGROUND: Acute cardiac and cerebrovascular accidents are more frequent in hypertensive subjects with a family history of acute vascular accidents. The mechanisms underlying the susceptibility to vascular disease in these subjects are unknown. We investigated whether a parental history of premature heart attack or stroke in hypertensive subjects is associated with abnormalities of sodium handling. METHODS AND RESULTS: Patients with mild, uncomplicated essential hypertension were divided into two subgroups according to family history: a subgroup with a parental history of premature heart attack or stroke (FV+, n = 18) and a subgroup with a family history completely negative for vascular accidents (FV-, n = 14). The two subgroups were comparable with respect to age, weight, sex distribution, blood pressure, duration of hypertension, cardiovascular risk factors, renal function, and organ damage. Baseline plasma renin activity (PRA), concentrations of aldosterone (PA), atrial natriuretic factor (ANF), and norepinephrine, and urinary electrolyte excretion were also comparable in the two subgroups. Despite these similarities, the responses to an acute saline load, measured under controlled metabolic and experimental conditions, were different in the two subgroups. In the FV+ subgroup at 60 minutes of saline load, PRA fell by 1.0 +/- 0.2 ng/ml/hr and PA concentration by 89.4 +/- 26 pg/ml and ANF concentration increased by 38 +/- 9 pg/ml, whereas in the FV- subgroup the corresponding responses were -2.3 +/- 0.3 ng/ml/hr (p less than 0.005), -190 +/- 43 pg/ml (p less than 0.05), and 80 +/- 13 pg/ml (p less than 0.005), respectively. Urinary sodium excretion was delayed in the FV+ subgroup (270 +/- 67 mu eq/min at 60 minutes) compared with the FV- subgroup (555 +/- 157 mu eq/min at 60 minutes, p less than 0.05). At 120 minutes of saline load, significant (p less than 0.005) differences in PRA and ANF concentration were still observed. In a control group of eight normal subjects the responses to a saline load were comparable to those in the FV- subgroup but greater than those in the FV+ subgroup at 60 minutes. CONCLUSIONS: These results provide evidence that the hormonal and renal adjustments to an acute salt load are impaired in hypertensive patients with a parental history of vascular accidents. We speculate that abnormalities of sodium handling may represent markers of a more rapid development of vascular injury in human hypertension.

Adult↗

Salt-induced plasticity in cardiopulmonary baroreceptor reflexes in salt-resistant hypertensive patients.

To investigate the effects of salt loading on cardiopulmonary and arterial baroreceptor reflexes, 34 hypertensive patients underwent two 4-day periods with different dietary sodium intakes (70 and 370 meq/day). The patients were classified as salt-sensitive or salt-resistant depending on whether the mean arterial pressure value obtained on day 4 of high salt intake did or did not increase by 8% or more. In 22 patients cardiopulmonary and carotid baroreceptor reflexes were assessed during each dietary period by measuring the reflex responses to the application of -10 mm Hg lower body negative pressure and of +60 mm Hg increase in neck tissue pressure. Salt-resistant patients (n = 16) retained less sodium than salt-sensitive patients (n = 6) and showed a reduction in plasma norepinephrine and forearm vascular resistance during high sodium intake, whereas the salt-sensitive patients did not. During low sodium diet, no significant differences could be detected in the reflex responses to cardiopulmonary and carotid baroreceptor unloading between the two groups. High salt diet, however, potentiated the gain of cardiopulmonary baroreceptor reflex, which was expressed as the increase in plasma norepinephrine or forearm vascular resistance per millimeter of mercury decrease in pulmonary capillary wedge pressure, only in the salt-resistant hypertensive patients. In addition, the atrial natriuretic factor response to changes in pulmonary capillary wedge pressure was significantly enhanced by high salt intake only in the salt-resistant hypertensive patients. The reflex responses to carotid baroreceptor unloading were unaffected by salt loading in either group. In the remaining 12 patients, the hemodynamic effects of graded lower body negative pressure (-5, -10, -15 mm Hg) and neck tissue positive pressure (+30, +45, +60 mm Hg) were tested for both diets. Again, high salt intake significantly potentiated the cardiopulmonary baroreceptor reflex gain, expressed as the slope of the linear correlation between the changes in forearm vascular resistance (mm Hg/ml/min/100 g) and pulmonary capillary wedge pressure (mm Hg), in salt-resistant (from 3.8 +/- 0.9 to 7.2 +/- 1.0, p less than 0.05) but not in salt-sensitive patients (from 4.2 +/- 0.9 to 3.2 +/- 0.6, NS). In conclusion, the present study demonstrates that high salt diet potentiates cardiopulmonary baroreceptor reflexes and enhances atrial natriuretic factor response in salt-resistant but not in salt-sensitive hypertensive patients. The salt-induced plasticity of cardiopulmonary baroreceptor reflexes may exert a protective effect against the development of salt-induced hypertension by augmenting the reflex vasodilatory response to volume expansion.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Failure of atrial natriuretic factor to increase with saline load in patients with dilated cardiomyopathy and mild heart failure.

To investigate whether the response of atrial natriuretic factor (ANF) to volume expansion is impaired in the early stages of dilated cardiomyopathy, the effects of saline load (SL; 0.25 ml/kg.min for 120 min) were assessed in 12 patients with dilated cardiomyopathy and asymptomatic to mildly symptomatic heart failure (HF) and in nine normal subjects (N). SL increased plasma ANF levels in N (from 14.3 +/- 2 to 19.5 +/- 3 and 26 +/- 4 pg/ml, at 60 and 120 min, respectively, P less than 0.001), but not in HF (from 42.9 +/- 9 to 45.9 +/- 9 and 43.9 +/- 8 pg/ml). Left ventricular end-diastolic volume (LVEDV) and stroke volume were increased (P less than 0.001) by SL in N but not in HF. Urinary sodium excretion (UNaV) increased in N more than in HF during SL, whereas forearm vascular resistance (FVR) did not change in N and increased in HF (P less than 0.001). In five HF patients SL was performed during ANF infusion (50 ng/kg, 5 ng/kg.min) that increased ANF levels from 37.1 +/- 10 to 146 +/- 22 pg/ml. In this group, SL raised both LVEDV (P less than 0.01) and ANF (P less than 0.05), whereas FVR did not rise. In addition, the UNaV increase and renin and aldosterone suppressions by SL were more marked than those observed in HF under control conditions. Thus, in patients with dilated cardiomyopathy and mild cardiac dysfunction, plasma ANF levels are not increased by volume expansion as observed in N. The lack of ANF response is related to the impaired cardiac adaptations. The absence of an adequate increase of ANF levels may contribute to the abnormal responses of HF patients to saline load.

Adult↗

Modulatory role of angiotensin-II in the secretion of atrial natriuretic factor in rabbits.

This study was designed to investigate whether the increase in circulating atrial natriuretic factor (ANF) levels produced by angiotensin II (Ang II) is a consequence of the hemodynamic changes or whether it occurs also in the absence of pressor changes. For this purpose in anesthetized and awake rabbits we evaluated the effects of Ang II (0.1 micrograms/kg.min) alone or during the simultaneous infusion of sodium nitroprusside (NP) at a dose titrated to abolish the pressor effects. Systemic blood pressure increased from 76 +/- 4 to 113 +/- 5 mm Hg (P less than 0.001) during Ang II and from 76 +/- 2 to 75 +/- 3 mm Hg (P = NS) during Ang II plus NP. The alpha-adrenergic agonist phenylephrine, used as a control, raised blood pressure from 65 +/- 2 to 101 +/- 8 mm Hg (P less than 0.001), and its pressor effect was abolished by the concomitant infusion of NP (64 +/- 2 to 61 +/- 1 mm Hg; P = NS). The increase in plasma ANF levels produced by Ang II alone (from 36.5 +/- 5 to 237 +/- 57 pg/ml; P less than 0.001) was not different from that observed during Ang II plus NP (from 46 +/- 10 to 207 +/- 88 pg/ml; P less than 0.001). In contrast, the stimulatory effect on ANF release of phenylephrine (from 56.1 +/- 9 to 202 +/- 40 pg/ml; P less than 0.001) was completely abolished when its pressor effects were prevented by the combined infusion of NP (from 58.5 +/- 15 to 42.3 +/- 10 pg/ml; P = NS). These results show that the stimulatory effect of Ang II on ANF release can be clearly dissociated from its pressor effect, whereas the increase in plasma ANF levels caused by phenylephrine is strictly related to its hemodynamic effect. Therefore, Ang II is capable of modulating ANF secretion in a manner that is independent of its pressor actions. In addition, our results suggest that ANF release is not solely linked to myocyte stretch.

Angiotensin II↗