Li Chaohong, Xu Qingbo
Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, Guangdong 510080, China.
Cell Signal. 2007 May;19(5):881-91. doi: 10.1016/j.cellsig.2007.01.004. Epub 2007 Jan 18.
Increasing evidence has been demonstrated that hypertension-initiated abnormal biomechanical stress is strongly associated with cardio-/cerebrovascular diseases e.g. atherosclerosis, stroke, and heart failure, which is main cause of morbidity and mortality. How the cells in the cardiovascular system sense and transduce the extracellular physical stimuli into intracellular biochemical signals is a crucial issue for understanding the mechanisms of the disease development. Recently, collecting data derived from our and other laboratories showed that many kinds of molecules in the cells such as receptors, ion channels, caveolin, G proteins, cell cytoskeleton, kinases and transcriptional factors could serve as mechanoceptors directly or indirectly in response to mechanical stimulation implying that the activation of mechanoceptors represents a non-specific manner. The sensed signals can be further sorted and/or modulated by processing of the molecules both on the cell surface and by the network of intracellular signaling pathways resulting in a sophisticated and dynamic set of cues that enable cardiovascular cell responses. The present review will summarise the data on mechanotransduction in vascular smooth muscle cells and formulate a new hypothesis, i.e. a non-specific activation of mechanoceptors followed by a variety of signal cascade activation. The hypothesis could provide us some clues for exploring new therapeutic targets for the disturbed mechanical stress-initiated diseases such as hypertension and atherosclerosis.
越来越多的证据表明,高血压引发的异常生物力学应激与心血管疾病密切相关,如动脉粥样硬化、中风和心力衰竭,这些是发病和死亡的主要原因。心血管系统中的细胞如何感知细胞外物理刺激并将其转化为细胞内生化信号,是理解疾病发展机制的关键问题。最近,来自我们实验室和其他实验室收集的数据表明,细胞中的多种分子,如受体、离子通道、小窝蛋白、G蛋白、细胞骨架、激酶和转录因子,可直接或间接作为机械感受器来响应机械刺激,这意味着机械感受器的激活呈现出非特异性方式。通过细胞表面分子以及细胞内信号通路网络的处理,所感知的信号可进一步分类和/或调节,从而产生一系列复杂而动态的信号,使心血管细胞能够做出反应。本综述将总结血管平滑肌细胞机械转导的数据,并提出一个新的假说,即机械感受器的非特异性激活随后是多种信号级联的激活。该假说可为探索针对机械应力紊乱引发的疾病(如高血压和动脉粥样硬化)的新治疗靶点提供一些线索。