Ma Teng, Grayson Warren L, Fröhlich Mirjam, Vunjak-Novakovic Gordana
Dept. of Chemical and Biomedical Engineering, FAMU-FSU College of Engineering, Florida State University, Tallahassee, FL, USA.
Biotechnol Prog. 2009 Jan-Feb;25(1):32-42. doi: 10.1002/btpr.128.
Stem cells have the ability for prolonged self-renewal and differentiation into mature cells of various lineages, which makes them important cell sources for tissue engineering applications. Their remarkable ability to replenish and differentiate in vivo is regulated by both intrinsic and extrinsic cellular mechanisms. The anatomical location where the stem cells reside, known as the "stem cell niche or microenvironment," provides signals conducive to the maintenance of definitive stem cell properties. Physiological condition including oxygen tension is an important component of the stem cell microenvironment and has been shown to play a role in regulating both embryonic and adult stem cells. This review focuses on oxygen as a signaling molecule and the way it regulates the stem cells' development into mesenchymal tissues in vitro. The physiological relevance of low oxygen tension as an environmental parameter that uniquely benefits stem cells' expansion and maintenance is described along with recent findings on the regulatory effects of oxygen on embryonic stem cells and adult mesenchymal stem cells. The relevance to tissue engineering is discussed in the context of the need to specifically regulate the oxygen content in the cellular microenvironment in order to optimize in vitro tissue development.
干细胞具有长期自我更新以及分化为各种谱系成熟细胞的能力,这使其成为组织工程应用中重要的细胞来源。它们在体内进行补充和分化的卓越能力受细胞内在和外在机制的调控。干细胞所处的解剖位置,即所谓的“干细胞生态位或微环境”,会提供有助于维持确定干细胞特性的信号。包括氧张力在内的生理条件是干细胞微环境的重要组成部分,并且已表明其在调节胚胎干细胞和成人干细胞方面均发挥作用。本综述着重探讨氧气作为一种信号分子以及它在体外调节干细胞向间充质组织发育的方式。阐述了低氧张力作为一种独特有益于干细胞扩增和维持的环境参数的生理相关性,以及关于氧气对胚胎干细胞和成人间充质干细胞调节作用的最新研究结果。在需要特异性调节细胞微环境中的氧含量以优化体外组织发育的背景下,讨论了其与组织工程的相关性。