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Engineering of the Embryonic and Adult Stem Cell Niches

机译:胚胎和成体干细胞壁ches的工程

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Stem cells have the potential to generate a renewable source of cells for regenerative medicine due to their ability to self-renew and differentiate to various functional cell types of the adult organism. The extracellular microenvironment plays a pivotal role in controlling stem cell fate responses. Therefore, identification of appropriate environmental stimuli that supports cellular proliferation and lineage-specific differentiation is critical for the clinical application of the stem cell therapies. Evidence Acquisition: Traditional methods for stem cells culture offer limited manipulation and control of the extracellular microenvironment. Micro engineering approaches are emerging as powerful tools to control stem cell-microenvironment interactions and for performing high-throughput stem cell experiments. Results: In this review, we provided an overview of the application of technologies such as surface micropatterning, microfluidics, and engineered biomaterials for directing stem cell behavior and determining the molecular cues that regulate cell fate decisions. Conclusions: Stem cells have enormous potential for therapeutic and pharmaceutical applications, because they can give rise to various cell types. Despite their therapeutic potential, many challenges, including the lack of control of the stem cell microenvironment remain. Thus, a greater understanding of stem cell biology that can be used to expand and differentiate embryonic and adult stem cells in a directed manner offers great potential for tissue repair and regenerative medicine.
机译:干细胞由于具有自我更新和分化为成年生物的各种功能细胞类型的能力,因此具有产生可再生细胞用于再生医学的潜力。细胞外微环境在控制干细胞命运反应中起着关键作用。因此,鉴定支持细胞增殖和谱系特异性分化的适当环境刺激对于干细胞疗法的临床应用至关重要。证据采集:干细胞培养的传统方法只能提供有限的细胞外微环境操纵和控制。微工程方法正在成为控制干细胞与微环境相互作用以及进行高通量干细胞实验的强大工具。结果:在这篇综述中,我们概述了表面微图案,微流体技术和工程生物材料等技术的应用,这些技术用于指导干细胞行为并确定调节细胞命运决定的分子线索。结论:干细胞具有治疗和药物应用的巨大潜力,因为它们会引起多种细胞类型。尽管具有治疗潜力,但仍然存在许多挑战,包括缺乏对干细胞微环境的控制。因此,对干细胞生物学的更多理解可用于定向扩增和分化胚胎干细胞和成体干细胞,为组织修复和再生医学提供了巨大的潜力。

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