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慢性异丙肾上腺素/苯肾上腺素与小鼠单纯异丙肾上腺素刺激比较:α-肾上腺素受体对早期心脏应激反应的重要贡献。

Chronic isoprenaline/phenylephrine vs. exclusive isoprenaline stimulation in mice: critical contribution of alpha-adrenoceptors to early cardiac stress responses.

机构信息

Institute of Experimental Cardiology, Internal Medicine VIII, Heidelberg University, Heidelberg, Germany.

DZHK (German Center of Cardiovascular Research), Partner Site Heidelberg/Mannheim and Göttingen, Germany.

出版信息

Basic Res Cardiol. 2022 Mar 14;117(1):15. doi: 10.1007/s00395-022-00920-z.

Abstract

Hyperactivity of the sympathetic nervous system is a major driver of cardiac remodeling, exerting its effects through both α-, and β-adrenoceptors (α-, β-ARs). As the relative contribution of subtype α-AR to cardiac stress responses remains poorly investigated, we subjected mice to either subcutaneous perfusion with the β-AR agonist isoprenaline (ISO, 30 mg/kg × day) or to a combination of ISO and the stable α-AR agonist phenylephrine (ISO/PE, 30 mg/kg × day each). Telemetry analysis revealed similar hemodynamic responses under both ISO and ISO/PE treatment i.e., permanently increased heart rates and only transient decreases in mean blood pressure during the first 24 h. Echocardiography and single cell analysis after 1 week of exposure showed that ISO/PE-, but not ISO-treated animals established α-AR-mediated inotropic responsiveness to acute adrenergic stimulation. Morphologically, additional PE perfusion limited concentric cardiomyocyte growth and enhanced cardiac collagen deposition during 7 days of treatment. Time-course analysis demonstrated a diverging development in transcriptional patterns at day 4 of treatment i.e., increased expression of selected marker genes Xirp2, Nppa, Tgfb1, Col1a1, Postn under chronic ISO/PE treatment which was either less pronounced or absent in the ISO group. Transcriptome analyses at day 4 via RNA sequencing demonstrated that additional PE treatment caused a marked upregulation of genes allocated to extracellular matrix and fiber organization along with a more pronounced downregulation of genes involved in metabolic processes, muscle adaptation and cardiac electrophysiology. Consistently, transcriptome changes under ISO/PE challenge more effectively recapitulated early transcriptional alterations in pressure overload-induced experimental heart failure and in human hypertrophic cardiomyopathy.

摘要

交感神经系统过度活跃是心脏重构的主要驱动因素,通过α-和β-肾上腺素受体(α-、β-AR)发挥作用。由于亚型α-AR 对心脏应激反应的相对贡献仍未得到充分研究,我们让小鼠接受皮下灌注β-肾上腺素受体激动剂异丙肾上腺素(ISO,30mg/kg×天)或 ISO 与稳定的α-肾上腺素受体激动剂苯肾上腺素(ISO/PE,30mg/kg×天)联合灌注。遥测分析显示,在 ISO 和 ISO/PE 治疗下,均出现类似的血液动力学反应,即心率永久增加,平均血压仅在最初 24 小时内短暂下降。在暴露 1 周后进行超声心动图和单细胞分析显示,只有 ISO/PE 处理而非 ISO 处理的动物建立了 α-AR 介导的对急性肾上腺素刺激的变力反应。形态学上,PE 灌注的附加作用限制了 7 天治疗期间的同心型心肌细胞生长并增强了心脏胶原沉积。时程分析表明,在治疗的第 4 天,转录模式出现了分歧性发展,即慢性 ISO/PE 处理下,部分标记基因 Xirp2、Nppa、Tgfb1、Col1a1、Postn 的表达增加,而 ISO 组的表达则不那么明显或不存在。在第 4 天通过 RNA 测序进行的转录组分析表明,PE 处理的附加作用导致与细胞外基质和纤维组织相关的基因明显上调,同时涉及代谢过程、肌肉适应和心脏电生理学的基因下调更为明显。一致地,在 ISO/PE 挑战下,转录组变化更有效地重现了压力超负荷诱导的实验性心力衰竭和人类肥厚型心肌病中的早期转录变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c194/8921177/c2f1e10102c6/395_2022_920_Fig1_HTML.jpg

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