Chua Ing Loon Sean, Kim Hae-Won, Lee Jae Ho
1Division of Bioengineering, School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore City, Singapore.
2Department of Nanobiomedical Sciences and BK21 PLUS NBM Global Research Center for Regenerative Medicine, Dankook University, Cheonan, Korea.
Tissue Eng Regen Med. 2016 Feb 2;13(1):1-12. doi: 10.1007/s13770-016-9075-0. eCollection 2016 Feb.
Cells receive important regulatory signals from their extracellular matrix (ECM) and the physical property of the ECM regulates important cellular behaviors like cell proliferation, migration and differentiation. A large part of tissue formation and regeneration depends on cellular interaction with its ECM. A comprehensive understanding of the mechanistic biochemical pathway of the ECM components is necessary for the design of a biomaterial scaffold for tissue engineering. Depending on the type of tissue, the ECM requirement might be different and this would influence its downstream intracellular cell signaling. Here, we reviewed the ECM and its signaling pathway by discussing: 1) classification of the ECM into hard, elastic and soft tissue based on its physical properties, 2) proliferation and differentiation control of the ECM, 3) roles of membrane receptor and its intracellular regulation factor, 4) ECM remodeling via inside-out signaling. By providing a comprehensive overview of the ECM's role in mechanotransduction and the self-regulatory effect of cells back on the ECM, we hope to provide a better insight of the physical and biochemical cues from the ECM. A sound understanding on the ECM has implication on the choice of materials and surface coating of biomimetic scaffolds used for tissue regeneration and therapeutics in a cell-free scaffold.
细胞从其细胞外基质(ECM)接收重要的调节信号,并且ECM的物理性质调节重要的细胞行为,如细胞增殖、迁移和分化。组织形成和再生的很大一部分取决于细胞与其ECM的相互作用。全面了解ECM成分的机械生化途径对于设计用于组织工程的生物材料支架是必要的。根据组织类型的不同,对ECM的需求可能会有所差异,这将影响其下游的细胞内信号传导。在此,我们通过讨论以下内容综述了ECM及其信号通路:1)根据ECM的物理性质将其分为硬组织、弹性组织和软组织;2)ECM对增殖和分化的控制;3)膜受体及其细胞内调节因子的作用;4)通过外向内信号传导进行的ECM重塑。通过全面概述ECM在机械转导中的作用以及细胞对ECM的自我调节作用,我们希望能更好地洞察来自ECM的物理和生化线索。深入了解ECM对于用于组织再生和无细胞支架治疗的仿生支架的材料选择和表面涂层具有重要意义。