首页> 外文期刊>American Journal of Physiology >Deficiency of M2 muscarinic acetylcholine receptors increases susceptibility of ventricular function to chronic adrenergic stress.
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Deficiency of M2 muscarinic acetylcholine receptors increases susceptibility of ventricular function to chronic adrenergic stress.

机译:M2毒蕈碱乙酰胆碱受体的缺乏增加了心室功能对慢性肾上腺素能胁迫的敏感性。

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摘要

Suppressed parasympathetic nervous system (PSNS) function has been found in a variety of cardiovascular diseases, such as hypertension, heart failure, and diabetes. However, whether impaired PSNS function plays a significant role in ventricular dysfunction remains to be investigated. Cardiac regulation by the PSNS is primarily mediated by the M(2) muscarinic acetylcholine receptor (M(2)-AChR). In this study, we tested the hypothesis that lack of M(2)-AChR-mediated PSNS function may adversely impact cardiac ventricular function. Using M(2)-AChR knockout (KO) and wild-type (WT) mice, we found that the basal levels of heart rate and left ventricular function were similar in M(2)-AChR KO and WT mice. A bolus injection of isoproterenol (Iso) induced a greater increase in heart rate in M(2)-AChR KO mice than in WT mice. However, the responses of change in pressure over time (dP/dt) to Iso were similar in the two groups. After chronic infusion with Iso for 1 wk, the baseline values of left ventricular function were increased to similar extents in M(2)-AChR KO and WT mice. However, the M(2)-AChR KO mice exhibited impaired ventricular function, indicated as attenuated dP/dt and increased end-diastolic pressure, during an increase in cardiac afterload induced by a bolus injection of phenylephrine. Furthermore, chronic Iso infusion significantly increased matrix metalloproteinase (MMP) activity in the heart in M(2)-AChR KO mice. In primary culture of mixed neonatal rat cardiac fibroblast and cardiomyocytes, cotreatment with muscarinic agonist bethanechol reversed phenylephrine-induced increase in MMP-9 activation. These data suggest that M(2)-AChR may mediate an inhibitory regulation on MMP function. The overall results from this study suggest that M(2)-AChR-mediated PSNS function may provide cardiac protection. Lack of this protective mechanism will increase the susceptibility of the heart to cardiac stresses.
机译:抑制副交感神经系统(PSNS)功能已在各种心血管疾病中发现,例如高血压,心力衰竭和糖尿病。然而,PSNS功能是否在室心功能障碍中发挥显着作用仍有待研究。 PSNS的心脏调节主要由M(2)毒蕈碱乙酰胆碱受体(M(2)-ACHR)介导。在这项研究中,我们测试了假设,即缺乏M(2)-ACHR介导的PSNS函数可能会对心室功能产生不利影响。使用M(2)-ACHR敲除(KO)和野生型(WT)小鼠,我们发现在M(2)-ACHR KO和WT小鼠中,心率和左心室功能的基础水平相似。注入异丙醇(ISO)的推注注射诱导M(2)-ACHR KO小鼠的心率升高,而不是WT小鼠。然而,在两组中,随着时间的推移变化(DP / DT)对ISO的反应类似。在用ISO慢性输注1WK之后,左心室功能的基线值增加到M(2)-ACHR KO和WT小鼠中的相似范围。然而,M(2)-ACHR KO小鼠表现出损伤的心室功能,表示为减毒的DP / DT和增加的末端舒张压,在用苯妥妥氏肾上腺素诱导的心脏后载荷增加期间。此外,慢性ISO输注在M(2)-ACHR KO小鼠中的心脏中的基质金属蛋白酶(MMP)活性显着增加。在混合新生大鼠心脏成纤维细胞和心肌细胞的原发性培养物中,与毒蕈碱激动剂的加替妥替氏胆碱诱导的MMP-9活化增加。这些数据表明M(2)-ACHR可以在MMP功能上介绍抑制调节。本研究的总体结果表明,M(2)-ACHR介导的PSNS功能可以提供心脏保护。缺乏这种保护机制将增加心脏对心脏胁迫的易感性。

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