首页> 外文期刊>Basic & clinical pharmacology & toxicology. >Rotundifolone-induced relaxation is mediated by BK(Ca) channel activation and Ca(v) channel inactivation.
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Rotundifolone-induced relaxation is mediated by BK(Ca) channel activation and Ca(v) channel inactivation.

机译:Rotundifolone诱导的放松是由BK(Ca)通道激活和Ca(v)通道失活介导的。

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Rotundifolone is the major constituent of the essential oil of Mentha x villosa Hudson. In preliminary studies, rotundifolone induced significant hypotensive, bradycardic and vasorelaxant effects in rats. Thus, to gain more insight into the pharmacology of rotundifolone, the aim of this study was to characterize the molecular mechanism of action involved in relaxation produced by rotundifolone. The relaxant effect was investigated in rat superior mesenteric arteries by using isometric tension measurements and whole-cell patch-clamp techniques. Rotundifolone relaxed phenylephrine-induced contractions in a concentration-dependent manner. Pre-treatment with KCl (20 mM), charybdotoxin (10(-7) M) or tetraethylammonium (TEA 10(-3) or 3 x 10(-3) M) significantly attenuated the relaxation effect induced by rotundifolone. Additionally, whole-cell patch-clamp recordings were made in mesenteric smooth muscle cells and showed that rotundifolone significantly increased K(+) currents, and this effect was abolished by TEA (10(-3) M), suggesting the participation of BK(Ca) channels. Furthermore, rotundifolone inhibited the vasoconstriction induced by CaCl(2) in depolarizing nominally Ca(2+) -free medium and antagonized the contractions elicited by an L-type Ca(2+) channel agonist, S(-)-Bay K 8644 (2 x 10(-7) M), indicating that the vasodilatation involved inhibition of Ca(2+) influx through L-type voltage-dependent calcium channels (Ca(v) type-L). Additionally, rotundifolone inhibited L-type Ca(2+) currents (I(Ca) L), affecting the voltage-dependent activation of I(Ca) L and steady-state inactivation. Our findings suggest that rotundifolone induces vasodilatation through two distinct but complementary mechanisms that clearly depend on the concentration range used. Rotundifolone elicits an increase in the current density of BK(Ca) channels and causes a shift in the steady-state inactivation relationship for Ca(v) type-L towards more hyperpolarized membrane potentials.
机译:扶轮酮是薄荷(Mentha x villosa Hudson)精油的主要成分。在初步研究中,Rotundifolone诱导了大鼠明显的降压,心动过缓和血管舒张作用。因此,为了深入了解Rotundifolone的药理作用,本研究的目的是表征Rotundifolone所产生的松弛作用的分子机制。通过使用等距张力测量和全细胞膜片钳技术研究了大鼠肠系膜上动脉的舒张作用。扶轮酮以浓度依赖的方式舒缓去氧肾上腺素引起的收缩。用氯化钾(20 mM),炭疽毒素(10(-7)M)或四乙铵(TEA 10(-3)或3 x 10(-3)M)预处理显着减弱了由Rotundifolone诱导的松弛作用。此外,在肠系膜平滑肌细胞中进行了全细胞膜片钳记录,结果表明,Rotundifolone显着增加了K(+)电流,TEA(10(-3)M)取消了这种作用,表明BK( Ca)频道。此外,Rotundifolone抑制由CaCl(2)诱导的血管收缩,使无Ca(2+)的介质去极化,并拮抗L型Ca(2+)通道激动剂S(-)-Bay K 8644( 2 x 10(-7)M),表明血管舒张涉及通过L型电压依赖性钙通道(Ca(v)L型)抑制Ca(2+)流入。此外,Rotundifolone抑制L型Ca(2+)电流(I(Ca)L),影响I(Ca)L的电压依赖性激活和稳态失活。我们的发现表明,Rotundifolone通过两种明显但取决于所用浓度范围的不同但互补的机制诱导血管舒张。扶轮酮引起BK(Ca)通道的电流密度增加,并导致Ca(v)L型的稳态失活关系向更多的超极化膜电位转移。

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