Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands.
Stem Cells. 2012 Jun;30(6):1236-45. doi: 10.1002/stem.1086.
Gap junctional coupling is important for functional integration of transplanted cells with host myocardium. However, the role of gap junctions in cardiomyogenic differentiation of transplanted cells has not been directly investigated. The objective of this work is to study the role of connexin43 (Cx43) in cardiomyogenic differentiation of human mesenchymal stem cells (hMSCs). Knockdown of Cx43 gene expression (Cx43↓) was established in naturally Cx43-rich fetal amniotic membrane (AM) hMSCs, while Cx43 was overexpressed (Cx43↑) in inherently Cx43-poor adult adipose tissue (AT) hMSCs. The hMSCs were exposed to cardiomyogenic stimuli by coincubation with neonatal rat ventricular cardiomyocytes (nrCMCs) for 10 days. Differentiation was assessed by immunostaining and whole-cell current clamping. To establish whether the effects of Cx43 knockdown could be rescued, Cx45 was overexpressed in Cx43↓ fetal AM hMSCs. Ten days after coincubation, not a single Cx43↓ fetal AM hMSC, control adult AT MSC, or Cx43↑ adult AT mesenchymal stem cell (MSC) expressed α-actinin, while control fetal AM hMSCs did (2.2% ± 0.4%, n = 5,000). Moreover, functional cardiomyogenic differentiation, based on action potential recordings, occurred only in control fetal AM hMSCs. Of interest, Cx45 overexpression in Cx43↓ fetal AM hMSCs restored their ability to undergo cardiomyogenesis (1.6% ± 0.4%, n = 2,500) in coculture with nrCMCs. Gap junctional coupling is required for differentiation of fetal AM hMSCs into functional CMCs after coincubation with nrCMCs. Heterocellular gap junctional coupling thus plays an important role in the transfer of cardiomyogenic signals from nrCMCs to fetal hMSCs but is not sufficient to induce cardiomyogenic differentiation in adult AT hMSCs.
缝隙连接耦联对于移植细胞与宿主心肌的功能整合很重要。然而,缝隙连接在移植细胞的心肌生成分化中的作用尚未被直接研究。本工作的目的是研究连接蛋白 43(Cx43)在人骨髓间充质干细胞(hMSC)的心肌生成分化中的作用。通过与新生大鼠心室心肌细胞(nrCMCs)共培养 10 天,来检测 hMSC 的分化。用免疫染色和全细胞膜片钳技术评估分化。为了确定 Cx43 敲低的影响是否可以被挽救,在 Cx43↓胎羊膜 hMSC 中转染 Cx45。共培养 10 天后,没有一个 Cx43↓胎羊膜 hMSC、对照的成体脂肪组织(AT)MSC 或 Cx43↑成体 AT 间充质干细胞(MSC)表达α-辅肌动蛋白,而对照的胎羊膜 hMSC 则表达(2.2%±0.4%,n=5000)。此外,基于动作电位记录,仅在对照的胎羊膜 hMSC 中观察到功能性的心肌生成分化。有趣的是,Cx45 在 Cx43↓胎羊膜 hMSC 中的过表达恢复了它们在与 nrCMCs 共培养时进行心肌生成的能力(1.6%±0.4%,n=2500)。缝隙连接耦联对于胎羊膜 hMSC 在与 nrCMCs 共培养后分化为功能性 CMC 是必需的。因此,异细胞缝隙连接耦联在从 nrCMCs 向胎羊膜 hMSC 传递心肌生成信号方面发挥着重要作用,但不足以诱导成体 AT hMSC 的心肌生成分化。