Bouzid Tasneem, Kim Eunju, Riehl Brandon D, Esfahani Amir Monemian, Rosenbohm Jordan, Yang Ruiguo, Duan Bin, Lim Jung Yul
1Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, W317.3 Nebraska Hall, Lincoln, NE 68588 USA.
2Mary & Dick Holland Regenerative Medicine Program, University of Nebraska Medical Center, Omaha, NE USA.
J Biol Eng. 2019 Aug 7;13:68. doi: 10.1186/s13036-019-0197-9. eCollection 2019.
Mesenchymal stem cells (MSCs) show tremendous promise as a cell source for tissue engineering and regenerative medicine, and are understood to be mechanosensitive to external mechanical environments. In recent years, increasing evidence points to nuclear envelope proteins as a key player in sensing and relaying mechanical signals in MSCs to modulate cellular form, function, and differentiation. Of particular interest is the Linker of Nucleoskeleton and Cytoskeleton (LINC) complex that includes nesprin and SUN. In this review, the way in which cells can sense external mechanical environments through an intact nuclear envelope and LINC complex proteins will be briefly described. Then, we will highlight the current body of literature on the role of the LINC complex in regulating MSC function and fate decision, without and with external mechanical loading conditions. Our review and suggested future perspective may provide a new insight into the understanding of MSC mechanobiology and related functional tissue engineering applications.
间充质干细胞(MSCs)作为组织工程和再生医学的细胞来源显示出巨大的潜力,并且被认为对外部机械环境具有机械敏感性。近年来,越来越多的证据表明核膜蛋白是MSCs中感知和传递机械信号以调节细胞形态、功能和分化的关键因素。特别值得关注的是包含nesprin和SUN的核骨架与细胞骨架连接体(LINC)复合体。在这篇综述中,将简要描述细胞如何通过完整的核膜和LINC复合体蛋白感知外部机械环境。然后,我们将重点介绍目前关于LINC复合体在调节MSCs功能和命运决定方面的文献,包括有无外部机械加载条件的情况。我们的综述和建议的未来展望可能为理解MSCs机械生物学及相关功能性组织工程应用提供新的见解。