Literature DB >> 24369691

Context clues: the importance of stem cell-material interactions.

Andrew S Khalil1, Angela W Xie1, William L Murphy1,2,3.   

Abstract

Understanding the processes by which stem cells give rise to de novo tissues is an active focus of stem cell biology and bioengineering disciplines. Instructive morphogenic cues surrounding the stem cell during morphogenesis create what is referred to as the stem cell microenvironment. An emerging paradigm in stem cell bioengineering involves "biologically driven assembly," in which stem cells are encouraged to largely define their own morphogenesis processes. However, even in the case of biologically driven assembly, stem cells do not act alone. The properties of the surrounding microenvironment can be critical regulators of cell fate. Stem cell-material interactions are among the most well-characterized microenvironmental effectors of stem cell fate and establish a signaling "context" that can define the mode of influence for morphogenic cues. Here we describe illustrative examples of cell-material interactions that occur during in vitro stem cell studies, with an emphasis on how cell-material interactions create instructive contexts for stem cell differentiation and morphogenesis.

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Year:  2014        PMID: 24369691      PMCID: PMC3970235          DOI: 10.1021/cb400801m

Source DB:  PubMed          Journal:  ACS Chem Biol        ISSN: 1554-8929            Impact factor:   5.100


  106 in total

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6.  Controlled release of growth factors based on biodegradation of gelatin hydrogel.

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8.  Harnessing traction-mediated manipulation of the cell/matrix interface to control stem-cell fate.

Authors:  Nathaniel Huebsch; Praveen R Arany; Angelo S Mao; Dmitry Shvartsman; Omar A Ali; Sidi A Bencherif; José Rivera-Feliciano; David J Mooney
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Authors:  Jue Zhang; Michael P Schwartz; Zhonggang Hou; Yongsheng Bai; Hamisha Ardalani; Scott Swanson; John Steill; Victor Ruotti; Angela Elwell; Bao Kim Nguyen; Jennifer Bolin; Ron Stewart; James A Thomson; William L Murphy
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Review 6.  Polymer microarray technology for stem cell engineering.

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