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The role of the microenvironment on the fate of adult stem cells 被引量:6

The role of the microenvironment on the fate of adult stem cells
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摘要 Adult stem cells(SCs) exist in all tissues that promote tissue growth, regeneration, and healing throughout life. The SC niche in which they reside provides signals that direct them to proliferate, differentiate, or remain dormant; these factors include neighboring cells, the extracellular matrix, soluble molecules, and physical stimuli. In disease and aging states, stable or transitory changes in the microenvironment can directly cause SC activation or inhibition in tissue healing as well as functional regulation. Here, we discuss the microenvironmental regulation of the behavior of SC and focus on plasticity approaches by which various environmental factors can enhance the function of SCs and more effectively direct the fate of SCs. Adult stem cells (SCs) exist in all tissues that promote tissue growth, regeneration, and healing throughout life. The SC niche in which they reside provides signals that direct them to proliferate, differentiate, or remain dormant; these factors include neighboring cells, the extracellular matrix, soluble molecules, and physical stimuli. In disease and aging states, stable or tran- sitory changes in the microenvironment can directly cause SC activation or inhibition in tissue healing as well as functional regulation. Here, we discuss the microenvironmental regulation of the behavior of SC and focus on plasticity approaches by which various environmental factors can enhance the function of SCs and more effectively direct the fate of SCs.
出处 《Science China(Life Sciences)》 SCIE CAS CSCD 2015年第7期639-648,共10页 中国科学(生命科学英文版)
基金 supported in part by the National Basic Research Program of China(2012CB518103,2012CB518105) National High Technology Research and Development Program of Ministry of Science and Technology of China(2013AA020105,2012AA020502) National Natural Science Foundation of China(81121004,81230041,31400822)
关键词 成体干细胞 微环境 组织生长 休眠状态 细胞外基质 供应链 功能调控 环境因素 stem cell, microenvironment, plasticity, fate
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