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Biomedical subjects

M Majima

Publications and source records attributed to M Majima.

130 records · Page 8Linked to original sources

Inhibition of kinin degradation on the luminal side of renal tubules reduces high blood pressure in deoxycorticosterone acetate salt-treated rats.

1. To determine whether the antihypertensive response in deoxycorticosterone acetate (DOCA) salt-treated rats was mediated by kinins on the luminal side of renal tubules or in the circulation, selective urinary kininase inhibitors were administered to normal Brown Norway Kitasato (BN-Ki) rats and kininogen-deficient Brown Norway Katholiek (BN-Ka) rats. 2. Kinins were degraded by neutral endopeptidase (NEP) and carboxypeptidase Y-like kininase (CPY) in urine, but were inactivated mainly by angiotensin-converting enzyme (ACE) in the plasma. 3. Ebelactone B inhibited CPY, while poststatin inhibited CPY and NEP. 4. Daily administration of poststatin (5 mg/kg per day, s.c.) for 3 days reduced blood pressure (BP) in DOCA salt-treated BN-Ki rats, but not in BN-Ka rats. 5. Ebelactone B (5 mg/kg per day, s.c.) also reduced BP in BN-Ki rats, which was accompanied by increased urinary sodium excretion, but had no effect on BP in BN-Ka rats. 6. Lisinopril (5 mg/kg per day, s.c.) had no effect on BP in either rat strain. 7. Arterial kinin levels in BN-Ki rats increased significantly (2.2-4.6 pg/mL) with captopril (10 mg/kg, s.c.). However, arterial kinin levels that induced hypotension following the infusion of bradykinin (1000 ng/kg per min, i.v.) were 110-fold higher than endogenous arterial kinin levels attained following captopril. 8. These results suggest that inhibition of kinin degradation on the luminal side of the renal tubules may effectively attenuate hypertension.

Animals↗

Effects of selective cyclooxygenase inhibitors on ischemia/reperfusion-induced hepatic microcirculatory dysfunction in mice.

We examined the effects of selective cyclooxygenase (COX) inhibition on hepatic warm ischemia/reperfusion (I/R) injury in mice. A selective COX-1 inhibitor, SC-560, selective COX-2 inhibitors, NS-398 and celecoxib, and indomethacin were administered 30 min before ischemia. Four hours after reperfusion, an in vivo microscopic study showed that I/R caused significant accumulation of leukocytes adhering to the hepatic microvessels and nonperfused sinusoids. Levels of plasma alanine transaminase (ALT) and tumor necrosis factor (TNF)-alpha also showed increases. SC-560, NS-398, celecoxib and indomethacin significantly reduced hepatic responses to I/R including microcirculatory dysfunction and release of ALT and TNF-alpha. Moreover, the effects of the thromboxane (TX) A(2) (TXA(2)) synthase inhibitor OKY-046 and the TXA(2) receptor antagonist S-1452 on hepatic responses to I/R exhibited results similar to those obtained with COX inhibitors. These results suggest that COX-1 and COX-2 contribute to I/R-induced hepatic microvascular and hepatocellular injury partly through TNF-alpha production, and that TXs derived from COX are partly responsible for I/R-induced liver injury.

Alanine Transaminase↗

Constriction of mouse hepatic venules and sinusoids by endothelins through ETB receptor subtype.

OBJECTIVE: This study was conducted to examine the effects of endothelin (ET)-1 and ET-3 on hepatic venules and sinusoids and to identify the subtypes of ET receptors. METHOD: Hepatic venules and sinusoids of anesthetized mice were observed at the edge of the liver. ET-1, ET-3 and sarafotoxin (S6c, a selective ETB receptor agonist) were applied topically over the microvasculature. RESULTS: ET-1, ET-3 and S6c (1-100 microM, 30 microliters) induced dose-dependent vasoconstriction of the portal venules, the sinusoids and the central venules. The ETs and S6c were equipotent for these microvessels. BQ-123 (a selective ETA receptor antagonist) inhibited the constrictive effects of ET-3 (not of ET-1) on the portal venules and central venules, whereas it had no inhibitory effect on the sinusoids. CONCLUSIONS: In mouse hepatic venules and sinusoids, the vasoconstriction induced by ET-1 and ET-3 was mediated mainly through the ETB receptor subtype and partly through an unknown BQ-123-sensitive ET receptor subtype in the portal and central venules, and only through the ETB receptor subtype in the sinusoids.

Animals↗

Change in tissue kallikrein level in nasal wash after the administration of oxatomide in patients with nasal allergy.

The tissue kallikrein level in the nasal wash was measured before and after 4-week administration of oxatomide (30 mg per day) in 9 patients with perennial allergy. It was found that tissue kallikrein level in the nasal wash obtained following provocation tests significantly decreased from 6.05 +/- 4.43 (10(-10) mol/hour/L) to 1.84 +/- 0.93 (10(-10) mol/hour/L) after the administration of oxatomide. Improvement in subjective symptoms was also observed in all patients after the administration. These results would indicate that kinin in the system is actively involved in the pathogenesis of nasal allergy.

Body Fluids↗