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利用生物工程方法构建干细胞微环境。

Constructing stem cell microenvironments using bioengineering approaches.

机构信息

Department of Cellular and Molecular Medicine, Stem Cell Program, University of California at San Diego, La Jolla, California.

出版信息

Physiol Genomics. 2013 Dec 1;45(23):1123-35. doi: 10.1152/physiolgenomics.00099.2013. Epub 2013 Sep 24.

Abstract

Within the adult organism, stem cells reside in defined anatomical microenvironments called niches. These architecturally diverse microenvironments serve to balance stem cell self-renewal and differentiation. Proper regulation of this balance is instrumental to tissue repair and homeostasis, and any imbalance can potentially lead to diseases such as cancer. Within each of these microenvironments, a myriad of chemical and physical stimuli interact in a complex (synergistic or antagonistic) manner to tightly regulate stem cell fate. The in vitro replication of these in vivo microenvironments will be necessary for the application of stem cells for disease modeling, drug discovery, and regenerative medicine purposes. However, traditional reductionist approaches have only led to the generation of cell culture methods that poorly recapitulate the in vivo microenvironment. To that end, novel engineering and systems biology approaches have allowed for the investigation of the biological and mechanical stimuli that govern stem cell fate. In this review, the application of these technologies for the dissection of stem cell microenvironments will be analyzed. Moreover, the use of these engineering approaches to construct in vitro stem cell microenvironments that precisely control stem cell fate and function will be reviewed. Finally, the emerging trend of using high-throughput, combinatorial methods for the stepwise engineering of stem cell microenvironments will be explored.

摘要

在成年生物体中,干细胞存在于称为龛的特定解剖微环境中。这些结构多样的微环境有助于平衡干细胞的自我更新和分化。这种平衡的适当调节对于组织修复和内稳态至关重要,任何失衡都可能导致癌症等疾病。在这些微环境中的每一个中,无数的化学和物理刺激以复杂的(协同或拮抗)方式相互作用,以紧密调节干细胞命运。这些体内微环境的体外复制对于干细胞在疾病建模、药物发现和再生医学中的应用是必要的。然而,传统的还原论方法仅导致了细胞培养方法的产生,这些方法很差地再现了体内微环境。为此,新的工程和系统生物学方法允许研究控制干细胞命运的生物学和机械刺激。在这篇综述中,将分析这些技术在干细胞微环境剖析中的应用。此外,还将回顾使用这些工程方法构建精确控制干细胞命运和功能的体外干细胞微环境。最后,将探讨使用高通量、组合方法逐步工程化干细胞微环境的新兴趋势。

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