Apigenin relaxes rat intrarenal arteries, depresses Ca2+-activated Cl- currents and augments voltage-dependent K+ currents of the arterial smooth muscle cells. 2019

Yixin Jing, and Rui Chen, and Miaomiao Dong, and Yu Liu, and Xiaomin Hou, and Pengmei Guo, and Weiping Li, and Jiyuan Lv, and Mingsheng Zhang
Department of Pharmacology, Shanxi Medical University, Xinjiannanlu 56, Taiyuan, 030001, Shanxi Province, China; Department of Internal Medicine, Division of Cardiology, The First Clinical Hospital, Shanxi Medical University, Taiyuan, 030001, Shanxi Province, China.

The vasorelaxant effect of apigenin (API) has been demonstrated in a number of vascular beds. We aimed to study the possible involvement of Cl- channels and K+ channels in API-induced vasorelaxation in intrarenal arteries. The vascular tone of isolated rat intrarenal arteries (RIRAs) was measured with a myograph. The myocyte transmembrane Cl- currents through Ca2+ activated Cl- channels (CaCCs) and the K+ currents through voltage-dependent (Kv) K+ channels were recorded using a patch clamp in the single arterial smooth muscle cells (ASMCs) isolated freshly from RIRAs. Preincubation with API (10-100 μM) concentration-dependently depressed the contractions induced by KCl, thromboxane A2 analog U46619, phenylephrine and vasopressin. The IC50 values were 13.27-26.26 μM. Instant application of API elicited immediate relaxations in RIRAs precontracted with these vasoconstrictors. The RC50 values were 5.80-24.33 μM. Chloride deprivation, Cl- channel blockers, Kv blocker and nitric oxide synthase inhibitor attenuated API-induced RIRA relaxation. At 10-100 μM, API depressed CaCC currents, but augmented Kv currents. Taken together, the present study demonstrated that API depresses contractions induced by various vasoconstrictors in RIRAs, suppresses CaCC currents and augments Kv currents in RIRA ASMCs.

UI MeSH Term Description Entries
D008297 Male Males
D009131 Muscle, Smooth, Vascular The nonstriated involuntary muscle tissue of blood vessels. Vascular Smooth Muscle,Muscle, Vascular Smooth,Muscles, Vascular Smooth,Smooth Muscle, Vascular,Smooth Muscles, Vascular,Vascular Smooth Muscles
D012077 Renal Artery A branch of the abdominal aorta which supplies the kidneys, adrenal glands and ureters. Arteries, Renal,Artery, Renal,Renal Arteries
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014661 Vasoconstriction The physiological narrowing of BLOOD VESSELS by contraction of the VASCULAR SMOOTH MUSCLE. Vasoconstrictions
D014664 Vasodilation The physiological widening of BLOOD VESSELS by relaxing the underlying VASCULAR SMOOTH MUSCLE. Vasodilatation,Vasorelaxation,Vascular Endothelium-Dependent Relaxation,Endothelium-Dependent Relaxation, Vascular,Relaxation, Vascular Endothelium-Dependent,Vascular Endothelium Dependent Relaxation
D014665 Vasodilator Agents Drugs used to cause dilation of the blood vessels. Vasoactive Antagonists,Vasodilator,Vasodilator Agent,Vasodilator Drug,Vasorelaxant,Vasodilator Drugs,Vasodilators,Vasorelaxants,Agent, Vasodilator,Agents, Vasodilator,Antagonists, Vasoactive,Drug, Vasodilator,Drugs, Vasodilator
D017207 Rats, Sprague-Dawley A strain of albino rat used widely for experimental purposes because of its calmness and ease of handling. It was developed by the Sprague-Dawley Animal Company. Holtzman Rat,Rats, Holtzman,Sprague-Dawley Rat,Rats, Sprague Dawley,Holtzman Rats,Rat, Holtzman,Rat, Sprague-Dawley,Sprague Dawley Rat,Sprague Dawley Rats,Sprague-Dawley Rats
D047310 Apigenin 5,7,4'-trihydroxy-flavone, one of the FLAVONES.
D018118 Chloride Channels Cell membrane glycoproteins that form channels to selectively pass chloride ions. Nonselective blockers include FENAMATES; ETHACRYNIC ACID; and TAMOXIFEN. CaCC,Calcium-Activated Chloride Channel,Chloride Ion Channel,Chlorine Channel,Ion Channels, Chloride,CaCCs,Calcium-Activated Chloride Channels,Chloride Channel,Chloride Ion Channels,Chlorine Channels,Ion Channel, Chloride,Calcium Activated Chloride Channel,Calcium Activated Chloride Channels,Channel, Calcium-Activated Chloride,Channel, Chloride,Channel, Chloride Ion,Channel, Chlorine,Channels, Calcium-Activated Chloride,Channels, Chloride,Channels, Chloride Ion,Channels, Chlorine,Chloride Channel, Calcium-Activated,Chloride Channels, Calcium-Activated

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