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Biomedical subjects

M Yasujima

Publications and source records attributed to M Yasujima.

At least 109 records · Page 6Linked to original sources

Effect of in vitro aging on prostaglandin synthesis in cultured rat vascular smooth muscle cells.

Cultured rat vascular smooth muscle cells from mesenteric artery produced prostaglandin (PG)E2, PGF2 alpha, PGI2 and thromboxane (TX)A2 in response to arachidonic acid, calcium ionophore A23187, vasopressin and angiotensin II. PGI2 was the major product among these PGs. PG synthesis in these cells decreased with in vitro aging, but the distribution pattern of PG synthesis did not change up to the passage level 56. Therefore, it is suggested that imbalance among PGs may not be directly implicated in vascular diseases in aging.

Aging↗

Effect of atrial natriuretic factor on renin release in isolated afferent arterioles.

This study was designed to examine the effect of alpha-human atrial natriuretic polypeptide (alpha-hANP) on renin release in the absence of tubules, glomeruli and macula densa. Rabbit afferent arterioles were microdissected and incubated for two consecutive, 20 minute periods. Hourly renin release rate from a single arteriole was calculated. Basal renin release rate was 0.97 +/- 0.13 ng AI.hr-1.Af-1/hr (X +/- SEM, N = 18) and remained stable throughout the incubations. When afferent arterioles were exposed to alpha-hANP (0.01, 0.1 or 1 microM), renin release rate did not change significantly. Isoproterenol (5 microM) increased renin release rate from 0.92 +/- 0.28 to 1.50 +/- 0.46 ng AI.hr-1.Af-1/hr (N = 7, P less than 0.01). After pretreatment of afferent arterioles with alpha-hANP (1 microM), isoproterenol still increased renin release rate from 0.98 +/- 0.24 to 1.64 +/- 0.37 ng AI.hr-1.Af-1/hr (N = 7, P less than 0.01). The increases in renin release rate induced by isoproterenol were not different between the two groups. Pretreatment of rabbits with furosemide for two days before experiments resulted in greater basal renin release rates from microdissected afferent arterioles (1.70 +/- 0.35 ng AI.hr-1.Af-1/hr, N = 14). However, exposure to alpha-hANP (1 microM) did not alter this elevated renin release rate. It is concluded that atrial natriuretic factor may not have a direct action on juxtaglomerular cells.

Animals↗

Renal kallikrein activity in spontaneously hypertensive rats.

To assess possible roles of the renal kallikrein-kinin system in the development of spontaneous hypertension, we determined daily excretion of urinary total and active kallikrein in 6-week-old spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) rats for up to 2 weeks. We also evaluated the effect of aprotinin, a reversible inhibitor of kallikrein and other serine proteases, on the development of hypertension in the 6-week-old SHR on ordinary intakes of sodium or on sodium loading with 1% NaCl for up to 2 weeks. Active kallikrein was determined by its kininogenase activity, and the generated kinins were radio-immunologically measured. Total kallikrein was also determined by measuring kininogenase activity after inactive kallikrein had been activated with trypsin (200 micrograms/ml). Urinary active kallikrein excretion was significantly reduced in 7-week-old SHR (1.5 +/- 0.2 microgram/day compared to 2.8 +/- 0.3 micrograms/day in WKY, P less than 0.05) and in 8-week-old SHR (1.6 +/- 0.2 microgram/day compared to 3.2 +/- 0.4 micrograms/day in WKY, P less than 0.01). Urinary total kallikrein excretion was also reduced in the 7- and 8-week-old SHR whereas the ratio of active to total kallikrein did not change. In addition, renal contents of total and active kallikrein were significantly lower in the 8-week-old SHR than in the controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of centrally administered atrial natriuretic peptide on renal functions.

In order to assess the effects of centrally administered atrial natriuretic peptide (ANP) on renal water and electrolytes handling, arterial blood pressure, plasma vasopressin, renin activity, aldosterone, and ANP concentrations, synthetic alpha-human ANP (alpha-hANP) was administered intracerebroventricularly at a dose of 2.6 pmol.kg-1.min-1 for 30 min in pentobarbital-anaesthetized dogs (N = 6). In the control study (N = 6), artificial cerebrospinal fluid was infused. Intracerebroventricular administration of alpha-hANP increased significantly urine flow from 178 +/- 37 to 303 +/- 43 microliter/min (mean +/- SEM), sodium excretion from 27.3 +/- 8.9 to 54.4 +/- 10.5, mumol/min, potassium excretion from 16.1 +/- 3.7 to 24.0 +/- 5.1 mumol/min, and osmolar and negative free water clearances, accompanied by a significant rise in renal blood flow from 77.0 +/- 14.6 to 94.9 +/- 16.9 ml/min. Whereas glomerular filtration rate fell significantly, blood pressure and heart rate did not change. Plasma ANP, aldosterone, and PRA did not change significantly during the experiment, but plasma AVP were slightly but significantly decreased from 52 +/- 11 to 34 +/- 6 nmol/l. On the other hand, these parameters showed no changes in the control study, except a significant fall in glomerular filtration rate and a significant rise in PRA. Thus, it has been confirmed that ANP centrally brings about diuresis, natriuresis, and kaliuresis via some unknown mechanisms independent of the release of these hormones.

Aldosterone↗

Long-term effects of aldosterone on kallikrein, prostaglandin E2 and sodium in rats.

To assess the long-term effects of mineralocorticoids on the regulation of the synthesis or release of kallikrein and prostaglandin E2 in the renal kallikrein-kinin-prostaglandin E system, we studied the effects of chronic infusion of aldosterone (50 micrograms/kg/day) on urinary excretion of total and active kallikrein, and prostaglandin E2 for 10 days in conscious rats on regular intakes of sodium and on sodium loading with 1% NaCl as a drinking water. Chronic infusion of aldosterone induced a prompt and transient decrease in the ratio of sodium to potassium and a sustained increase in urinary prostaglandin E2 excretion in rats on regular diets, whereas urinary total and active kallikrein excretion did not increase significantly until the 4th day of aldosterone infusion. In rats loaded with sodium, aldosterone did not induce any changes in urinary total and active kallikrein excretion, whereas it induced similar changes in the ratio of sodium to potassium and urinary prostaglandin E2 excretion to those in rats on regular diets. Thus, the present results suggest that aldosterone might stimulate the synthesis or release of renal prostaglandin E2 independent of sodium balance. Furthermore, it is also suggested that aldosterone might stimulate the synthesis or release of kallikrein, at least partly, via the same pathway as sodium loading does.

Aldosterone↗

No evidence on significant roles of the prostaglandin-thromboxane and kallikrein-kinin system in the antihypertensive effect of MK 421 in rats made hypertensive by norepinephrine or vasopressin.

Inhibition of angiotensin converting enzyme by MK 421 (6 mg/kg/day ip) induced a significant increase in urinary kinin excretion in norepinephrine-infused rats (1.8 mg/kg/day ip), whereas it had no effect on urinary prostaglandin E2 excretion. In contrast, MK 421 did not induced any significant changes in urinary kinin and prostaglandin E2 excretion in vasopressin-infused rats (7.2 U/kg/day ip). The simultaneous administration of indomethacin (10 mg/kg/day sc), OKY 046 (12 mg/kg/day sc) or aprotinin (100,000 units/kg/day sc) did not affect the antihypertensive effect of MK 421 in rats made hypertensive by chronic infusion of norepinephrine or vasopressin. The present results suggest that the hypotensive effect of MK 421 may depend on a reduced sensitivity of the vasculature to vasoconstrictor substances. In addition, it is also suggested that neither the prostaglandin-thromboxane or kallikrein-kinin systems are essential for the antihypertensive effect of MK 421 in these models of hypertension.

Animals↗

Effects of angiotensin converting enzyme inhibitors MK 421, SA 446 and captopril on renal prostaglandin E and kinins in conscious normotensive rats.

Angiotensin converting enzyme inhibition by MK 421, SA 446 or captopril (6 mg/kg/day ip) for up to 6 days induced significant fall in systolic blood pressure and plasma angiotensin II concentration. The hypotensive effect was greater in sodium depleted rats than in sodium repleted rats. The hypotensive effect was also accompanied by increased excretion of urinary prostaglandin E2, however the levels of urinary prostaglandin E2 in sodium repleted rats were not different from those in sodium depleted rats. Urinary kinin excretion was increased during infusion of MK 421, SA 446 or captopril in sodium depleted rats, whereas no significant change was found in sodium repleted rats. Thus the present results suggest that renal prostaglandin E system may not be essential for the hypotensive effect of these inhibitors. In addition, the greater hypotensive effect of these inhibitors in sodium depleted rats may be in part due to stimulated renal kinin system.

3-Mercaptopropionic Acid↗

Role of endogenous angiotensin II and prostaglandins in the antihypertensive mechanism of angiotensin converting enzyme inhibitor in hypertension.

The role of endogenous angiotensin II and prostaglandins (PGs) in the antihypertensive effect of converting enzyme inhibitor, captopril, was studied in essential hypertension by the separate and the combined administration of captopril and indomethacin. Although plasma angiotensin II was similarly suppressed by the separate and the combined administration of captopril and indomethacin, captopril lowered and indomethacin increased the mean blood pressure. There were negative correlations between the changes in mean blood pressure and in urinary sodium excretion as well as in urinary PGE excretion. These results suggest that endogenous PGs may be implicated in the antihypertensive effect of captopril through the alteration of sodium balance.

Adult↗

Prostaglandins and sodium balance during the reversal of chronic two-kidney, one clip hypertension in rats.

To determine the role of endogenous prostaglandins and sodium balance in the maintenance of high blood pressure in chronic two-kidney, one clip hypertension in rats, we studied the effect of indomethacin infusion on the reversal of hypertension by unclipping. Indomethacin was infused after control measurements, and blood pressure was monitored continuously in conscious rats. Parallel control experiments and sham operations were also performed. Inhibition of prostaglandin synthesis did not affect the postoperative course of blood pressure after the unclipping operation despite the marked decrease of urinary prostaglandin E excretion. The decrease of blood pressure after unclipping was significantly correlated with plasma renin activity prior to unclipping. Sodium balance was not significantly different between the experimental groups. These data indicate no major participation of prostaglandins in the reversal of chronic two-kidney, one clip hypertension, and suggest that the renin angiotensin system participates, at least in part, in the maintenance of high blood pressure in this model of hypertension.

Animals↗

Effects of sodium and angiotensin II on urinary active and inactive kallikrein in rats.

To assess possible relationships between sodium balance, angiotensin II (ANG II), and renal active and inactive kallikrein, we studied the effects of sodium loading with 1% NaCl and chronic ANG II infusion (900 micrograms/kg per day) on the urinary excretion of total and active kallikrein for 6 days in conscious rats. We determined urinary total, active and inactive kallikrein by measuring kallikrein activity using a kininogenase assay before and after treatment with trypsin (200 micrograms/ml). Sodium loading produced a sustained increase in urinary total, active and inactive kallikrein excretion. Chronic infusion of ANG II induced a sustained increase in urinary total, active and inactive kallikrein excretion in rats on a regular diet. In rats loaded with sodium, however, ANG II did not induce any further changes in urinary kallikrein excretion. Thus, the present study suggests that both sodium loading and ANG II infusion might stimulate the synthesis of renal kallikrein. In addition, it is suggested that ANG II infusion might stimulate the synthesis of kallikrein, at least partly, via the same mechanism as sodium loading does.

Angiotensin II↗

Effects of ouabain on blood pressure regulation in rats.

In order to test the hypothesis that a circulating inhibitor of the sodium-potassium ATPase pump may cause a concomitant rise in blood pressure and increased sodium excretion, we studied chronic effects of continuous infusion of ouabain, an inhibitor of sodium-potassium ATPase, for up to 6 days on systolic blood pressure and urinary sodium excretion in conscious rats. We also evaluated the effect of this substance in rats with hypertension induced by chronic infusion of norepinephrine. Continuous infusion of ouabain (1.2 mg/kg per day) into the jugular vein by an osmotic minipump did not induce any changes in systolic blood pressure and urinary sodium excretion in intact rats on regular diets. Furthermore it did not cause a change in systolic blood pressure in rats drinking 1% NaCl, and in unilaterally nephrectomized rats drinking 1% NaCl, when compared with vehicle-infused animals. When the same dose of ouabain was administered simultaneously with 1.8 mg/kg per day norepinephrine infused intraperitoneally by another osmotic minipump in conscious rats, systolic blood pressure rose on day 1 to only 129.3 +/- 2.8 mmHg compared with the rist to 145.0 +/- 2.0 mmHg when norepinephrine alone was infused (P less than 0.01). The antihypertensive effect of ouabain was sustained for the entire experimental period lasting for 6 days and was not associated with any changes in urinary sodium excretion. The administration of ouabain to rats made hypertensive by a 3-day infusion of norepinephrine, returned the blood pressure to control levels, and the antihypertensive effect was sustained throughout the experimental period lasting a further 3 days and was not associated with any changes in urinary sodium excretion.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of human atrial natriuretic peptide on renal function and vasopressin release.

To assess the effects of atrial natriuretic peptide (ANP) on the renal function, cardiovascular system, renin-angiotensin-aldosterone system, and vasopressin release, synthetic human ANP (alpha-hANP) was administered at a dose of 0.08 microgram X kg-1 X min-1 iv for 40 min into anesthetized dogs (n = 6). In the control study (n = 6), saline alone was infused. alpha-hANP brought about a significant increase in renal plasma flow, urinary Na and K output, urine flow, and osmolar clearance and a significant decrease in urinary osmolality, free water clearance, and filtration fraction (FF), with no changes in glomerular filtration rate. Plasma Na concentrations and osmolality did not change significantly, but plasma K concentrations fell progressively. Mean arterial blood pressure decreased without any changes in heart rate. Plasma renin activity (PRA), plasma aldosterone concentrations (PAC), and plasma vasopressin concentrations did not rise, but rather PRA and PAC tended to fall during alpha-hANP infusion. In the control study, there were no changes in these parameters except a progressive fall in FF and plasma K concentrations. These results indicate that the alpha-hANP-induced increase in renal blood flow plays an important role in producing natriuresis, but vasopressin may not be involved in the process of diuresis.

Aldosterone↗