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首页> 外文期刊>Stem cells translational medicine. >Concise Review: Tailoring Bioengineered Scaffolds for Stem Cell Applications in Tissue Engineering and Regenerative Medicine
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Concise Review: Tailoring Bioengineered Scaffolds for Stem Cell Applications in Tissue Engineering and Regenerative Medicine

机译:简要评论:为组织工程和再生医学中的干细胞应用量身定制生物工程支架。

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The potential for the clinical application of stem cells in tissue regeneration is clearly significant. However, this potential has remained largely unrealized owing to the persistent challenges in reproducibly, with tight quality criteria, and expanding and controlling the fate of stem cells in vitro and in vivo. Tissue engineering approaches that rely on reformatting traditional Food and Drug Administration-approved biomedical polymers from fixation devices to porous scaffolds have been shown to lack the complexity required for in vitro stem cell culture models or translation to in vivo applications with high efficacy. This realization has spurred the development of advanced mimetic biomaterials and scaffolds to increasingly enhance our ability to control the cellular microenvironment and, consequently, stem cell fate. New insights into the biology of stem cells are expected to eventuate from these advances in material science, in particular, from synthetic hydrogels that display physicochemical properties reminiscent of the natural cell microenvironment and that can be engineered to display or encode essential biological cues. Merging these advanced biomaterials with high-throughput methods to systematically, and in an unbiased manner, probe the role of scaffold biophysical and biochemical elements on stem cell fate will permit the identification of novel key stem cell behavioral effectors, allow improved in vitro replication of requisite in vivo niche functions, and, ultimately, have a profound impact on our understanding of stem cell biology and unlock their clinical potential in tissue engineering and regenerative medicine.
机译:干细胞在组织再生中的临床应用潜力非常明显。然而,由于在质量标准严格,可再现性方面存在持续的挑战以及在体外和体内扩大和控制干细胞的命运,这种潜力仍未实现。已经证明,依靠将传统的食品和药物管理局批准的生物医学聚合物从固定装置重新格式化为多孔支架的组织工程方法缺乏体外干细胞培养模型或高效转化为体内应用所需的复杂性。这种认识刺激了先进的模拟生物材料和支架的发展,以日益增强我们控制细胞微环境并因此控制干细胞命运的能力。物质科学的这些进展有望带来对干细胞生物学的新见解,特别是合成水凝胶,其显示的物理化学特性使人联想到天然细胞微环境,并且可以被工程化以显示或编码基本的生物学线索。将这些先进的生物材料与高通量方法相结合,以系统化,无偏见的方式探究支架生物物理和生化元素对干细胞命运的作用,将有助于鉴定新型关键干细胞行为效应子,并改善必需品的体外复制。体内的利基功能,并最终对我们对干细胞生物学的理解产生深远影响,并释放它们在组织工程和再生医学中的临床潜力。

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