首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Liver progenitor cell interactions with the extracellular matrix.
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Liver progenitor cell interactions with the extracellular matrix.

机译:肝祖细胞与细胞外基质相互作用。

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Liver progenitor cells (LPCs) are a promising source of cells to treat liver disease by cell therapy, due to their capability for self-replication and bipotentiality. In order to establish useful culture systems of LPCs and apply them to future clinical therapies, it is necessary to understand their interactions with their microenvironment and especially with the extracellular matrix (ECM). There is considerable evidence from in vivo studies that matrix proteins affect the activation, expansion, migration and differentiation of LPCs, but the information on the role that specific ECMs play in regulating LPCs in vitro is more limited. Nevertheless, current studies suggest that laminin, collagen type III, collagen type IV and hyaluronic acid help to maintain the undifferentiated phenotype of LPCs and promote their proliferation when cultured in media supplemented with growth factors chosen for LPC expansion, whereas collagen type I and fibronectin are generally associated with a differentiated phenotype under the same conditions. Experimental evidence suggests that α6β1 and α5β1 integrins as well as CD44 on the surface of LPCs, and their related downstream signals, are important mediators of interactions between LPCs and the ECM. The interactions of LPCs with the ECM form the focus of this review and the contribution of ECM molecules to strategies for optimizing in vitro LPC cultures for therapeutic applications is discussed. Copyright ? 2012 John Wiley & Sons, Ltd.
机译:由于其对自我复制和Bipecentiality的能力,肝祖细胞(LPC)是通过细胞疗法治疗肝病的有前途的细胞来源。为了建立LPC的有用培养系统并将它们应用于未来的临床疗法,有必要了解它们与其微环境的相互作用,特别是细胞外基质(ECM)。在体内研究中存在相当大的证据,即基质蛋白质影响LPC的激活,扩张,迁移和分化,而是有关在体外调节LPC的特异性ECMS的作用的信息更有限。尽管如此,目前的研究表明,胶原蛋白,胶原蛋白III型,胶原蛋白型和透明质酸有助于维持LPC的未分化表型,并在补充LPC扩增的培养基中培养时促进其增殖,而胶原蛋白I型和纤连蛋白是通常在相同条件下与分化的表型相关联。实验证据表明α6β1和α5β1整合蛋白以及LPC表面的表面和相关的下游信号,是LPC和ECM之间相互作用的重要介质。探讨了LPC与ECM的相互作用形成了本综述和ECM分子对优化治疗应用的体外LPC培养物的策略的贡献。版权? 2012年John Wiley&Sons,Ltd。

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