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Intercellular calcium waves in primary cultured rat mesenteric smooth muscle cells are mediated by Connexin43

机译:在初级培养的大鼠肠系膜平滑肌细胞中的细胞间钙波由Connexin43介导

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摘要

Intercellular Ca2 + wave propagation between vascular smooth muscle cells (SMCs) is associated with the propagation of contraction along the vessel. Here, we characterize the involvement of gap junctions (GJs) in Ca2 + wave propagation between SMCs at the cellular level. Gap junctional communication was assessed by the propagation of intercellular Ca2 + waves and the transfer of Lucifer Yellow in A7r5 cells, primary rat mesenteric SMCs (pSMCs), and 6B5N cells, a clone of A7r5 cells expressing higher connexin43 (Cx43) to Cx40 ratio. Mechanical stimulation induced an intracellular Ca2 + wave in pSMC and 6B5N cells that propagated to neighboring cells, whereas Ca2 + waves in A7r5 cells failed to progress to neighboring cells. We demonstrate that Cx43 forms the functional GJs that are involved in mediating intercellular Ca2 + waves and that co-expression of Cx40 with Cx43, depending on their expression ratio, may interfere with Cx43 GJ formation, thus altering junctional communication.
机译:血管平滑肌细胞(SMC)之间的细胞间Ca 2 + 波传播与沿着容器的收缩传播相关。这里,我们在细胞水平下表征间隙连接(GJS)在Ca 2 + 波传播中的累积。通过细胞间Ca 2 + 波浪的繁殖和荧光素黄色在A7R5细胞,原代大鼠肠系膜SMC(PSMC)和6B5N细胞中的转移来评估间隙连接通信,表达更高的A7R5细胞的克隆Connexin43(CX43)到CX40比率。机械刺激在PSMC和6B5N细胞中诱导诱导的细胞内Ca 2 + 波,其传播到相邻电池,而A7R5细胞中的CA 2 + 波浪未能进入相邻的细胞。我们证明CX43形成介导细胞间Ca 2 + 波的功能Gjs,并且Cx40与Cx43的CX40的共表达,这取决于它们的表达比,可能会干扰CX43 GJ形成,从而改变交通通信。

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