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Vascular smooth muscle phenotypic diversity and function

机译:血管平滑肌表型多样性和功能

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摘要

The control of force production in vascular smooth muscle is critical to the normal regulation of blood flow and pressure, and altered regulation is common to diseases such as hypertension, heart failure, and ischemia. A great deal has been learned about imbalances in vasoconstrictor and vasodilator signals, e.g., angiotensin, endothelin, norepinephrine, and nitric oxide, that regulate vascular tone in normal and disease contexts. In contrast there has been limited study of how the phenotypic state of the vascular smooth muscle cell may influence the contractile response to these signaling pathways dependent upon the developmental, tissue-specific (vascular bed) or disease context. Smooth, skeletal, and cardiac muscle lineages are traditionally classified into fast or slow sublineages based on rates of contraction and relaxation, recognizing that this simple dichotomy vastly underrepresents muscle phenotypic diversity. A great deal has been learned about developmental specification of the striated muscle sublineages and their phenotypic interconversions in the mature animal under the control of mechanical load, neural input, and hormones. In contrast there has been relatively limited study of smooth muscle contractile phenotypic diversity. This is surprising given the number of diseases in which smooth muscle contractile dysfunction plays a key role. This review focuses on smooth muscle contractile phenotypic diversity in the vascular system, how it is generated, and how it may determine vascular function in developmental and disease contexts.
机译:血管平滑肌中力量产生的控制对于正常调节血流量和压力至关重要,而改变的调节对于高血压,心力衰竭和局部缺血等疾病很常见。关于血管收缩剂和血管扩张剂信号的失衡,例如血管紧张素,内皮素,去甲肾上腺素和一氧化氮,在正常和疾病情况下调节血管张力的大量研究已获知。相反,关于血管平滑肌细胞的表型状态如何影响取决于发育,组织特异性(血管床)或疾病情况的这些信号传导途径的收缩反应的研究有限。传统上,平滑肌,骨骼肌和心肌肌谱系根据收缩率和松弛率分为快​​或慢亚系,认识到这种简单的二分法极大地代表了肌肉表型多样性。在机械负荷,神经输入和激素的控制下,关于成年动物横纹肌亚系的发育规格及其表型相互转换的知识很多。相反,对平滑肌收缩表型多样性的研究相对有限。考虑到平滑肌收缩功能障碍起着关键作用的疾病数量,这令人惊讶。这篇综述着重于血管系统中平滑肌收缩表型的多样性,如何产生以及如何决定发育和疾病情况下的血管功能。

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