PubMed Health⌕ Search

Biomedical subjects

K Kaido

Publications and source records attributed to K Kaido.

5 recordsLinked to original sources

Effects of the new angiotensin II type 1 receptor antagonist KRH-594 on several types of experimental hypertension.

The antihypertensive effect of dipotassium (Z)-2-[[5-ethyl-3-[2'-(1H- tetrazol-5-yl)biphenyl-4-yl]methyl-1,3,4-thiadiazoline-2- ylidene]aminocarbonyl]-1-cyclopentenecarboxylate (CAS 169328-25-0, KRH-594), a new angiotensin II type 1 (AT1) receptor antagonist, was studied in several experimental hypertensive models. The effects of KRH-594 on the circulating reninangiotensin system and on renal function were also investigated. Oral administration of KRH-594 (0.3 or 1 mg/kg) dose-dependently inhibited the angiotensin II-induced pressor response in common marmosets. KRH-594 (1, 3, or 10 mg/kg p.o.) dose-dependently exerted a long-lasting antihypertensive effect in spontaneously hypertensive rats (SHRs) and in 2-kidney 1-clip renal hypertensive rats (RHRs). Furthermore, repeated oral administration of KRH-594 (3 or 10 mg/kg/d) reduced blood pressure dose-dependently in SHRs, RHRs, and renal hypertensive dogs without tachycardia and with no evidence of a rebound phenomenon following drug withdrawal. On the other hand, in deoxycorticosterone acetate salt rats and normotensive rats, KRH-594 (10 or 30 mg/kg p.o.) did not have significant effects on systolic blood pressure. In SHRs, KRH-594 (3 or 10 mg/kg/d p.o. for 2 weeks) dose-dependently increased both plasma renin activity and the plasma angiotensin I concentration, but had no effect on the urinary excretion of sodium, potassium, and chloride or on creatinine clearance. These results suggest that KRH-594 should be effective in patients with essential or renal hypertension.

Administration, Oral↗

The effect of membrane surface potential on the permeability of anionic compounds across the apical membrane in human intestinal epithelial (Caco-2) cells.

The effect of membrane surface potential of the apical side on the intracellular uptake of ionic compounds was investigated using the human colon adenocarcinoma cell line (Caco-2). The transepithelial transport of indolepropionic acid and tryptamine was consistent with the uptake behavior shown by rat intestinal brush-border membrane (BBM) vesicles. Imipramine, which diminished the negative charge of the membrane surface (for both Caco-2 and BBM), acted to increase the uptake of the anionic compounds, indolepropionic acid and ceftibuten, and to decrease that of tryptamine (cationic compound) by both the Caco-2 monolayer and the intestinal BBM vesicles at a pH of 7.5. These results suggest that the effects of membrane surface potential on the permeability of ionic compounds were detectable on the Caco-2 cell line as well as the BBM vesicles. On the other hand, the inhibition of H(+)-linked transport and the stimulation of the surface charge-regulated uptake of ceftibuten have occurred simultaneously on the Caco-2 cell line in the presence of imipramine. It seems that the membrane surface charge (negative) plays an important role in the transport process of ionic compounds across the intestinal epithelium.

Adenosine Triphosphate↗