首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >M3 muscarinic receptors mediate positive inotropic responses in mouse atria: a study with muscarinic receptor knockout mice.
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M3 muscarinic receptors mediate positive inotropic responses in mouse atria: a study with muscarinic receptor knockout mice.

机译:M3毒蕈碱受体介导小鼠心房的正性肌力反应:一项关于毒蕈碱受体基因敲除小鼠的研究。

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摘要

The potential functional roles of M(3) muscarinic receptors in mouse atria were examined by pharmacological and molecular biological techniques, using wild-type mice, muscarinic M(2) or M(3) receptor single knockout (M(2)KO, M(3)KO), and M(2) and M(3) muscarinic receptor double knockout mice (M(2)/M(3)KO). Real-time quantitative reverse transcriptase-polymerase chain reaction analysis showed that the M(2) receptor mRNA was expressed predominantly in mouse atria but that the M(1), M(3), M(4), and M(5) receptor subtypes were also expressed at low levels. Carbachol (10 nM-30 microM) decreased the spontaneous beating frequency of right atria isolated from wild-type mice. Studies with subtype-preferring antagonists and atria from M(2)KO mice confirmed that this activity is mediated by the M(2) receptor subtype. In left atria from wild-type mice, carbachol decreased the amplitude of electrical field stimulation-evoked contractions (negative inotropic action), but this inhibition was transient and was followed by a gradual increase in contraction amplitude (positive inotropic response). In atria from M(3)KO mice, the transient negative inotropic action of carbachol changed to a sustained negative inotropic action. In contrast, in atria from M(2)KO mice, carbachol showed only positive inotropic activity. In atria from M(2)/M(3) double KO mice, carbachol was devoid of any inotropic activity. These observations, complemented by functional studies with subtype-preferring antagonists, convincingly demonstrate that atrial M(3) muscarinic receptors mediate positive inotropic effects in mouse atria. Physiologically, this activity may serve to dampen the inhibitory effects of M(2) receptor activation on atrial contractility.
机译:M(3)毒蕈碱受体在小鼠心房中的潜在功能作用已通过药理和分子生物学技术,使用野生型小鼠,毒蕈碱M(2)或M(3)受体单敲除(M(2)KO,M (3)KO)和M(2)和M(3)毒蕈碱受体双敲除小鼠(M(2)/ M(3)KO)。实时定量逆转录酶-聚合酶链反应分析表明,M(2)受体mRNA主要在小鼠心房中表达,但M(1),M(3),M(4)和M(5)受体亚型也以低水平表达。卡巴胆碱(10 nM-30 microM)降低了从野生型小鼠中分离出的右心房的自发搏动频率。从M(2)KO小鼠的首选亚型拮抗剂和心房的研究证实,这种活性是由M(2)受体亚型介导的。在野生型小鼠的左心房中,卡巴胆碱降低了电场刺激引起的收缩幅度(负性肌力作用),但这种抑制作用是短暂的,随后收缩幅度逐渐增加(正性肌力反应)。在M(3)KO小鼠的心房中,卡巴胆碱的瞬时负性肌力作用变为持续性负性肌力作用。相反,在M(2)KO小鼠的心房中,卡巴胆碱仅显示正性肌力活性。在M(2)/ M(3)双KO小鼠的心房中,卡巴胆碱没有任何正性肌力活动。这些观察,辅以功能研究与亚型优先的拮抗剂,令人信服地证明,心房M(3)毒蕈碱受体介导小鼠心房的正性肌力作用。从生理上讲,这种活性可能起到抑制M(2)受体激活对心房收缩性的抑制作用。

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