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Human mesenchymal stem cells make cardiac connexins and form functional gap junctions

机译:人间充质干细胞产生心脏连接蛋白并形成功能性间隙连接

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摘要

Human mesenchymal stem cells (hMSCs) are a multipotent cell population with the potential to be a cellular repair or delivery system provided that they communicate with target cells such as cardiac myocytes via gap junctions. Immunostaining revealed typical punctate staining for Cx43 and Cx40 along regions of intimate cell-to-cell contact between hMSCs. The staining patterns for Cx45 rather were typified by granular cytoplasmic staining. hMSCs exhibited cell-to-cell coupling to each other, to HeLa cells transfected with Cx40, Cx43 and Cx45 and to acutely isolated canine ventricular myocytes. The junctional currents (Ij) recorded between hMSC pairs exhibited quasi-symmetrical and asymmetrical voltage (Vj) dependence. Ij records from hMSC–HeLaCx43 and hMSC–HeLaCx40 cell pairs also showed symmetrical and asymmetrical Vj dependence, while hMSC–HeLaCx45 pairs always produced asymmetrical Ij with pronounced Vj gating when the Cx45 side was negative. Symmetrical Ij suggests that the dominant functional channel is homotypic, while the asymmetrical Ij suggests the activity of another channel type (heterotypic, heteromeric or both). The hMSCs exhibited a spectrum of single channels with transition conductances (γj) of 30–80pS. The macroscopic Ij obtained from hMSC–cardiac myocyte cell pairs exhibited asymmetrical Vj dependence, while single channel events revealed γj of the size range 40–100pS. hMSC coupling via gap junctions to other cell types provides the basis for considering them as a therapeutic repair or cellular delivery system to syncytia such as the myocardium.
机译:人间充质干细胞(hMSCs)是一种多能细胞群,如果它们通过间隙连接与靶细胞(例如心肌细胞)通讯,则有潜力成为细胞修复或递送系统。免疫染色揭示了沿hMSC之间紧密的细胞间接触区域Cx43和Cx40的典型点状染色。 Cx45的染色模式以颗粒状细胞质染色为代表。 hMSC相互之间,与Cx40,Cx43和Cx45转染的HeLa细胞以及急性分离的犬心室肌细胞之间均具有细胞间偶联。 hMSC对之间记录的结电流(Ij)表现出准对称和不对称电压(Vj)依赖性。来自hMSC–HeLaCx43和hMSC–HeLaCx40细胞对的Ij记录也显示出对称和不对称的Vj依赖性,而当Cx45面为负时,hMSC–HeLaCx45对始终产生不对称的Ij,具有明显的Vj门控。对称的Ij表示主导功能通道是同型的,而不对称的Ij则提示另一种通道类型(异型,异聚体或两者)的活性。 hMSC表现出单通道光谱,其过渡电导(γj)为30–80pS。从hMSC-心肌细胞对获得的宏观Ij表现出不对称的Vj依赖性,而单通道事件显示γj的大小范围为40-100pS。通过间隙连接与其他细胞类型的hMSC耦合为将其视为对合胞体(如心肌)的治疗修复或细胞递送系统的基础。

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