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Biomedical subjects

H Yoshimi

Publications and source records attributed to H Yoshimi.

At least 37 records · Page 2Linked to original sources

Effects of ouabain and verapamil on endothelin-1-induced contraction of mesenteric artery in young spontaneously hypertensive rats.

We studied the effects of ouabain and verapamil on endothelin-1(ET-1)-induced contraction of the mesenteric artery in prehypertensive spontaneously hypertensive rats (SHRs) and age-matched Wistar-Kyoto (WKY) rats. Rings of mesenteric artery of SHRs and WKY rats aged 4 weeks were superfused with physiological saline solution and isometric tension was measured. ET-1 (10(-9) or 10(-8) M)-induced contractions were significantly larger in WKY rats than in SHRs. ET-1 (10(-7) M)-induced contractions were not significantly different between SHRs and WKY rats. Verapamil markedly inhibited ET-1 (10(-7) M)-induced contractions both in SHRs and in WKY rats. Although the percent inhibition tended to be larger in SHRs than in WKY rats, the difference was not significant. Ouabain significantly increased ET-1 (10(-7) M)-induced contraction in the presence of verapamil both in SHRs and in WKY rats. The increase was significantly greater in SHRs than in WKY rats. As a result, ET-1 (10(-7) M)-induced contractions were significantly greater in SHRs than in WKY rats in the presence of verapamil and ouabain. These results suggest that in ET-1-induced arterial contraction, [Na+]i-mediated [Ca2+]i regulation such as the Na+/Ca2+ exchange system might be greater in SHRs than in WKY rats, and that this might be, at least in part, involved in the pathogenesis or maintenance of hypertension in SHRs.

Animals↗

Blood pressure responses to intravenous or intracerebroventricular endothelin-1 in spontaneously hypertensive rats.

Responses of blood pressure to intravenous (i.v.) or intracerebroventricular (i.c.v.) endothelin-1 (ET-1) in spontaneously hypertensive rats (SHRs) and Wistar-Kyoto (WKY) rats were investigated. Conscious male SHRs and WKY rats were used for the experiments. ET-1 (300-1,000 ng/kg) was injected intravenously in the i.v. experiments, or 30 and 100 ng/kg of ET-1 were injected into the lateral ventricle in the i.c.v. experiments. The initial depressor response to i.v. ET-1 was greater in SHRs (n = 10) than in WKY rats (n = 10) at 1,000 ng/kg (-54 +/- 6 vs. -41 +/- 3 mm Hg, mean +/- SEM, p less than 0.05). The subsequent pressor response to i.v. ET-1 was smaller in SHRs than in WKY rats (3.5 +/- 0.8 vs. 7.0 +/- 0.9 mm Hg at 300 ng/kg, p less than 0.05, and 11 +/- 2 vs. 17 +/- 2 mm Hg at 1,000 ng/kg, p less than 0.05). Pressor responses to i.c.v. ET-1 were not different in SHRs (n = 8) and WKY rats (n = 8) at both doses (10 +/- 4 vs. 10 +/- 3 mm Hg at 30 ng/kg, and 46 +/- 10 vs. 49 +/- 10 mm Hg at 100 ng/kg). A greater initial depressor response and a smaller subsequent pressor response to i.v. ET-1 were observed in SHRs than in WKY rats. The attenuated pressor response to intravenously administered ET-1 may be unique since vasoconstrictor responses to other known vasoactive substances such as angiotensin, catecholamines, or vasopressin are reportedly augmented in SHRs. We did not find any difference in responsiveness to i.c.v. ET-1 between SHRs and WKY rats.

Animals↗

Differential effects of endothelin-1 and big endothelin on canine kidneys.

Renal effects of endothelin-1 (ET-1, human, 1-21) and the equivalent molar concentration of big ET (human, 1-38) and the contributions of prostaglandins and endothelium-derived relaxing factor to these actions were examined. Intrarenal infusion of ET-1, at a dose of 0.4 pmol/kg/min, decreased renal blood flow (RBF), glomerular filtration rate (GFR), and urine output (V) to 62, 70, and 45% of control values, respectively. Additional aspirin-DL-lysine (ASP) treatment (25 mg/kg) caused marked decreases in RBF, GFR, and V to 20, 14, and 9% of control values, respectively. During ET-1 infusion, intrarenal infusion of NG-monomethyl-L-arginine (L-NMMA, 1 mumol/min) caused decreases in RBF, GFR, and V. In another group, intrarenal infusion of big ET at a dose equivalent to that of ET-1 did not significantly affect RBF, GFR, or urine output, which were 95, 107, and 84% of control values, respectively. Additional ASP treatment decreased these values to 78, 69, and 52% of control values, respectively. L-NMMA infusion during big ET infusion showed little effect on renal function. Our study demonstrated that intrarenal infusion of ET-1, at a dose of 0.4 pmol/kg/min, caused significant hemodynamic and functional changes in the canine kidney compared with an equivalent molar concentration of big ET.

Animals↗

Immunoreactive endothelin-1 contents in brain regions from spontaneously hypertensive rats.

To investigate the possible role of brain endothelin-1 (ET-1) in hypertension of spontaneously hypertensive rats (SHRs), we measured immunoreactive (ir) ET-1 contents in brain regions as well as plasma ir-ET-1 levels in SHRs aged 4-5 and 12-14 weeks and age-matched Wistar-Kyoto rats (WKY) with a radioimmunoassay for ET-1. Systolic blood pressures of SHR aged 4-5 and 12-14 weeks were significantly higher than those of corresponding WKY. Significant amounts of ir-ET-1 were detectable throughout the discrete brain regions analyzed in both strains; higher ir-ET-1 contents in structures such as thalamus, hypothalamus, midbrain, pons, medulla, and cerebellum, with the lowest in cerebral cortex, were observed. A reverse-phase high-performance liquid chromatography of the brain extracts revealed the presence of both a major component identical to the elution position of synthetic ET-1 and a minor component possibly corresponding to its oxidized form. When compared, ir-ET-1 contents in all brain regions analyzed were lower in SHRs than in WKY rats. This strain-related change of ir-ET-1 contents was significant in the medulla at 4-5 weeks of age, and in all brain regions except hypothalamus at 12-14 weeks of age. Plasma ir-ET-1 levels, in contrast, were comparable between SHRs and WKY rats. These results suggest that brain ET-1 may be involved in the development and the maintenance of hypertension in SHRs.

Aging↗

Acute and chronic effects of anti-endothelin-1 antibody on blood pressure in spontaneously hypertensive rats.

To evaluate the significance of endogenous endothelin (ET) in the maintenance of blood pressure in hypertensive and normotensive conditions, we examined the acute and chronic effects of anti-ET-1 antibody in spontaneously hypertensive rats (SHRs) and Wistar-Kyoto (WKY) rats. Immunoglobulin (Ig) solution purified from anti-ET-1 rabbit serum was injected intravenously in conscious rats aged 12-14 weeks (SHR: n = 7, WKY: n = 7). In the control group (SHR: n = 5, WKY: n = 4), Ig prepared from nonimmune rabbit serum was administered. One week after the first injections of Ig, second intravenous injections were given. After the intravenous injections of ET-1 antibody, there were no significant changes in directly measured blood pressure (BP) for up to 60 min in both strains. On the first, third, and seventh days after the first administration of ET-1 antibody, as well as on the first, third, and seventh days after the second injection, there were no appreciable differences in BP between SHR treated with anti-ET-1 antibody and SHR with control Ig. No significant changes in BP were observed throughout the observation period in WKY groups. Plasma levels of immunoreactive ET-1 were similar in SHR and WKY. This study suggests that circulating ET may not play a significant role in the maintenance of hypertension in SHRs or in the regulation of blood pressure in WKY rats.

Animals↗

Intrarenal hemodynamics in patients with essential hypertension.

Intrarenal hemodynamics were estimated clinically in essential hypertension. Two-week studies were performed in 30 patients with essential hypertension who were given a regular sodium diet in the first week and a sodium-restricted diet in the second week. Intrarenal hemodynamic parameters such as afferent arteriolar (preglomerular) resistance, efferent arteriolar resistance, and glomerular hydrostatic pressure were calculated from renal clearances and plasma total protein concentration measured on the last day of the regular sodium diet. Calculations were based on Gomez's equations with the assumption that the gross filtration coefficient of glomerular capillaries was normal. The increase in afferent arteriolar resistance (8,100 +/- 500 dyne.sec.cm-5) was significantly correlated with an elevation in mean arterial pressure (120 +/- 2 mm Hg), whereas glomerular pressure (56 +/- 1 mm Hg) and efferent arteriolar resistance (2,500 +/- 100 dyne.sec.cm-5) remained normal. The renal function curve (pressure-natriuresis relation) was drawn by plotting urinary sodium excretion on the y axis as a function of mean arterial pressure on the x axis, both of which were measured on the last 3 days of each week. The extrapolated x intercept (107 +/- 2 mm Hg) of the renal function curve was strongly correlated in a 1:1 fashion with the sum of the arterial pressure drop from the aorta to the renal glomeruli plus the opposing pressures against glomerular filtration at glomeruli (r = 0.7, p less than 0.001) on the regular sodium diet, suggesting that the difference between mean arterial pressure on the regular sodium diet and the extrapolated x intercept represented the effective filtration pressure across the glomerular capillaries on the regular sodium diet.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Differential modulation of norepinephrine-induced contractile response by ryanodine and verapamil in the isolated aortic ring of spontaneously hypertensive and Wistar-Kyoto rats.

Using ryanodine and verapamil, we compared the relative contributions of SR Ca2+ release and gated Ca2+ entry in arterial contractions induced by norepinephrine (NE) between spontaneously hypertensive rats (SHR) and Wistar-Kyoto rats (WKY). Aortic rings of 10 SHR and 10 WKY aged 10-12 weeks were superfused in small water-jacketed tissue chambers with physiological salt solution and isometric tension was measured. The inhibition of the NE (3 x 10(-8) M)-induced contraction of aortic rings by ryanodine (10 microM) was significantly greater in WKY (40.1 +/- 6.9%) than in SHR (2.2 +/- 9.0%) (p less than 0.01). The inhibition of the NE-induced contraction by verapamil (10 microM) in the presence or absence of ryanodine (10 microM) was significantly greater in SHR than in WKY. The residual ryanodine and verapamil-insensitive component of NE-induced contraction was significantly greater in WKY than in SHR. Caffeine (5 mM)-induced contraction in the presence of verapamil and phentolamine was significantly smaller in SHR than in WKY. These results suggest that gated Ca2+ entry plays a more important role in Ca2+ control and that ryanodine-sensitive Ca2+ store is smaller, or the ryanodine receptor is altered in these tissues of SHR compared with those of WKY.

Animals↗

Autocrine effect of endothelin on DNA synthesis in human vascular endothelial cells.

To elucidate the role of endogenous endothelin on DNA synthesis in endothelial cells, we have investigated the effects of rabbit anti-ET gamma globulin on DNA synthesis in cultured human vascular endothelial cells. DNA synthesis was markedly inhibited by anti-ET gamma globulin in a concentration dependent manner in the presence of fetal calf serum(FCS) (x5000;34%, x2500;54%, x1000;70%), but not in the absence of FCS. These data suggest that endogenous ET modulates FCS-stimulated DNA synthesis in an autocrine fashion.

Animals↗

Sodium sensitive and sodium retaining hypertension.

The differences between sodium sensitive and sodium retaining hypertension were theoretically considered using a water tank model of body fluid volume-blood pressure regulation. If an outlet valve is attached to a tank with a base area corresponding to the reciprocal of total peripheral resistance (TPR) and water is poured into this tank at a rate corresponding to the amount of Na+ intake, then equilibrium should be achieved at a certain water level, volume and output from the outlet, which represent mean arterial pressure (MAP), cardiac output (CO) and urinary Na+ excretion. The height of the outlet from the tank bottom and the size cross-sectional area, of the outlet correspond to the x-intercept and slope of the renal function (pressure-natriuresis) curve, respectively. In both nonsodium sensitive hypertension, due to the shift of the curve toward a higher blood pressure level (elevated height of the outlet) without change in the slope (size of the outlet), and sodium sensitive hypertension, due to the depressed slope of the curve (reduced outlet size), not only MAP (water level) but also CO (water volume) are increased, resulting in sodium retaining hypertension, if TPR (reciprocal of base area) remained unchanged, while CO is relatively unchanged, resulting in nonsodium retaining hypertension, if TPR is elevated. Thus, the MAP and its sensitivity to sodium intake is determined by the renal function curve. Since body fluid volume is determined by both the renal function curve and TPR, however, changes in TPR during the development of hypertension is a major factor in determining whether or not the body fluid volume has to change only a small amount or a large amount. Therefore, the sodium sensitivity of blood pressure and sodium retention must be considered separately.

Blood Pressure↗

Interaction of synthetic sarafotoxin with rat vascular endothelin receptors.

The effects of synthetic analogs of sarafotoxin (STX) S6b, a snake venom peptide with a high sequence homology to the endothelium-derived vasoconstrictor endothelin (ET), on ET receptor binding activity and cytosolic free Ca2+ concentration [( Ca2+]i) were studied in cultured rat vascular smooth muscle cells. Binding studies revealed that [Cys1-15, Cys3-11] STX competed with 125I-ET for the binding to its vascular receptors with lower affinity than that of ET, but was far more effective than [Cys1-11, Cys3-15]STX in inhibiting the binding. [Cys1-15, Cys3-11]STX had a less potent effect on increasing [Ca2+]i than ET, whereas [Cys1-11, Cys3-15]STX was inactive. These data suggest that there may exist heterogenous subpopulations of the vascular ET/STX receptors, and that the proper double cyclic structure of STX is essential for interacting with its putative receptors to induce the [Ca2+]i response.

Animals↗

Specific receptor for endothelin in cultured rat cardiocytes.

Specific binding sites for the endothelium-derived vasoconstrictor endothelin (ET) and its effect on cytosolic free Ca2+ concentrations [( Ca2+]i) were studied in a primary culture of cardiocytes from neonatal rats. Binding studies using 125I-labeled-porcine ET as a radioligand revealed the presence of a single class of high-affinity binding sites for ET in cardiocytes with an apparent Kd of 6-9 x 10(-10) M and a Bmax of 50,000-80,000 sites/cell. Neither various vasoconstrictors nor Ca2+-channel blockers affected the binding. Pretreatment with ET substantially reduced the total number of ET receptors without changing their affinity. ET dose-dependently increased [Ca2+]i in fura-2-loaded cardiocytes. These data indicate that cardiocytes have specific ET receptors that are controlled by a down-regulation mechanism, and that ET induces a receptor-mediated increase in [Ca2+]i in cardiocytes.

Animals↗

Receptor binding activity and cytosolic free calcium response by synthetic endothelin analogs in cultured rat vascular smooth muscle cells.

Using a variety of synthetic analogs of porcine endothelin (pET), we have studied the effects of these analogs on receptor binding activity and cytosolic free Ca2+ concentrations ([Ca2+]i) in cultured rat vascular smooth muscle cells (VSMC). Removal of C-terminal Trp21 residue, truncated derivatives pET(1-15) and (16-21), substitution of disulfide bond, Cys(3-11) or Cys(1-15), by Cys (Acm), all resulted in a complete loss of receptor binding activity and [Ca2+]i response, while N-terminal elongation of Lys-Arg residues, but not oxidation of Met7 residue, decreased receptor binding activity and [Ca2+]i response. [Cys1-15,Cys3-11]pET was far more potent than [Cys1-11,Cys3-15]pET in receptor binding and [Ca2+]i response. These data indicate that the C-terminal Trp21 as well as the proper double cyclic structure formed by the intramolecular disulfide bonds of the pET molecule are essential for receptor binding and subsequent [Ca2+]i increase in rat VSMC.

Animals↗

Hypotensive mechanisms of antihypertensives based on the water tank model.

Mechanisms of hypotensive action of antihypertensive drugs were theoretically considered using the water tank model on body fluid volume-blood pressure regulation. If a cock is attached to a tank with a base area corresponding to the reciprocal of total peripheral resistance (TPR) and water is poured into this tank at a rate corresponding to the amount of Na+ intake, then equilibrium should be achieved at a certain water level, volume, and output from the cock, which represent mean arterial pressure (MAP), cardiac output (CO), and urinary Na+ excretion rate. The height of the cock from the tank bottom and the size of the cock correspond to the x-intercept and slope of the renal function curve (pressure-natriuresis relationship). Vasodilators lowered the cock height and enlarged the base area (reduced TPR), resulting in an increase in the volume (CO). beta-Blockers not only lowered the height, but also decreased the size of the cock. Because they do not alter TPR (base area), CO (volume) must be reduced. Converting-enzyme inhibitors had the same effects on the height and size of the cock as beta-blockers, but enlarged the base area (reduced TPR), resulting in an increase in the volume (CO). Diuretics increased the cock size without affecting the cock height or the base area, resulting in a decrease in CO. The effects of antihypertensive drugs on the cock (kidney) seemed essential in their hypotensive action, similarly as abnormality of the renal function curve is essential in the genesis of hypertension. These analyses can illustrate schematically the hemodynamic changes induced by antihypertensive drugs.

Antihypertensive Agents↗

Effect of dietary sodium on the Na-K ATPase inhibitor in patients with essential hypertension.

To study the circulating humoral factor modifying transmembrane sodium transport, plasma was obtained from 12 patients with essential hypertension (EH) fed a high sodium diet (NaCl 15 to 17 g/d) for seven days and thereafter a low sodium diet (NaCl 2 to 3 g/d) for seven days. Ouabain-sensitive 86Rb+ influx into the red blood cells (RBC) obtained from a healthy subject, and incubated with the plasma obtained during the high sodium diet was significantly lower than that incubated with the plasma obtained during the low sodium diet (3.74 +/- 0.26 v 3.97 +/- 0.30 nmol/10(8) cells, P less than .05). The changes in mean blood pressure from the high to low sodium diet showed a significant positive correlation with the changes in the ouabain-sensitive Rb influx into RBC in the plasma from the high to low sodium diet. These results suggest that a humoral factor modifying the sodium pump might be altered by sodium balance in EH, especially in salt-sensitive hypertension.

Aldosterone↗

Effects of salt, prostaglandin, and captopril on vascular responsiveness in essential hypertension.

To examine the influence of dietary sodium, prostaglandin, and captopril on vascular reactivity, 12 patients with essential hypertension (EH) and seven normotensive subjects (NT) were given a high sodium diet and thereafter a low sodium diet, each for ten days. Indomethacin (IND) (150 mg/d) was administered during the last three days of each dietary period. Blood pressure and cardiac output (CO) (by impedance cardiography) were measured during the angiotensin II (Ang II) infusion before and after the IND treatment of each dietary period. In eight patients with EH, captopril 100 mg was given before Ang II infusion. EH patients were classified as either salt sensitive (SS) or nonsalt sensitive (NSS). The mean blood pressure (MBP) response to Ang II was significantly higher on high sodium intake than on low sodium intake in NSS and NT, but not in SS. IND significantly increased the MBP response to Ang II on low sodium intake in NSS and NT, but not in SS. IND significantly increased the TPR response to Ang II on low sodium intake, remarkably in NSS and NT compared with SS. Salt sensitivity (% decrease in MBP from high to low sodium intake) highly correlated with the increase in the TPR response to Ang II by IND on low sodium intake (r = -0.90). After captopril administration, IND still increased the MBP and TPR response to Ang II on low sodium intake. These results suggest that the modulation of the vascular responsiveness to Ang II by prostaglandins is altered by sodium balance and salt sensitivity in EH.

Angiotensin II↗

The cardiovascular effect of intracerebroventricular endothelin in rats.

To investigate the cardiovascular action of endothelin within the central nervous system, we studied the effect of intracerebroventricular endothelin in conscious Wistar rats. The endothelin increased blood pressure and the heart rate in a dose-related way. The increase in mean blood pressure produced by 100 ng/kg of endothelin (45 +/- 6 mmHg, mean +/- s.e.m., n = 10) was much greater than that produced by the same amount of intravenous endothelin (4 +/- 1 mmHg, n = 7). Pretreatment with intravenous hexamethonium significantly attenuated the rise in blood pressure elicited by intracerebroventricular endothelin. Combined administration of hexamethonium and a vasopressin antagonist abolished the pressor response. These results indicate that centrally administered endothelin raises blood pressure through activation of the sympathetic nervous system and vasopressin. It is suggested that endothelin may play a role in the central regulation of cardiovascular function.

Animals↗