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模拟体外骨骼间充质干细胞/基质细胞龛复杂性的方法。

Approaches to mimic the complexity of the skeletal mesenchymal stem/stromal cell niche in vitro.

机构信息

IZKF Group Tissue Regeneration in Musculoskeletal Diseases, Orthopedic Center for Musculoskeletal Research, Würzburg,

出版信息

Eur Cell Mater. 2019 Feb 11;37:88-112. doi: 10.22203/eCM.v037a07.

DOI:10.22203/eCM.v037a07
PMID:30742298
Abstract

Mesenchymal stem/stromal cells (MSCs) are an essential element of most modern tissue engineering and regenerative medicine approaches due to their multipotency and immunoregulatory functions. Despite the prospective value of MSCs for the clinics, the stem cells community is questioning their developmental origin, in vivo localization, identification, and regenerative potential after several years of far-reaching research in the field. Although several major progresses have been made in mimicking the complexity of the MSC niche in vitro, there is need for comprehensive studies of fundamental mechanisms triggered by microenvironmental cues before moving to regenerative medicine cell therapy applications. The present comprehensive review extensively discusses the microenvironmental cues that influence MSC phenotype and function in health and disease - including cellular, chemical and physical interactions. The most recent and relevant illustrative examples of novel bioengineering approaches to mimic biological, chemical, and mechanical microenvironmental signals present in the native MSC niche are summarized, with special emphasis on the forefront techniques to achieve bio-chemical complexity and dynamic cultures. In particular, the skeletal MSC niche and applications focusing on the bone regenerative potential of MSC are addressed. The aim of the review was to recognize the limitations of the current MSC niche in vitro models and to identify potential opportunities to fill the bridge between fundamental science and clinical application of MSCs.

摘要

间充质干细胞(MSCs)是大多数现代组织工程和再生医学方法的重要组成部分,因为它们具有多能性和免疫调节功能。尽管 MSCs 具有潜在的临床价值,但在该领域进行了多年广泛的研究后,干细胞界对其发育起源、体内定位、鉴定和再生潜能提出了质疑。尽管在体外模拟 MSC 生态位的复杂性方面取得了几项重大进展,但在将其应用于再生医学细胞治疗之前,需要对由微环境线索触发的基本机制进行全面研究。本综述广泛讨论了影响健康和疾病中 MSC 表型和功能的微环境线索,包括细胞、化学和物理相互作用。总结了最近和相关的生物工程方法的最新和相关示例,以模拟天然 MSC 生态位中存在的生物、化学和机械微环境信号,特别强调了实现生物化学复杂性和动态培养的前沿技术。特别关注骨骼 MSC 生态位和应用,重点介绍 MSC 的骨再生潜力。本综述的目的是认识到当前 MSC 生态位体外模型的局限性,并确定潜在的机会,以弥合基础科学与 MSCs 的临床应用之间的桥梁。

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Approaches to mimic the complexity of the skeletal mesenchymal stem/stromal cell niche in vitro.模拟体外骨骼间充质干细胞/基质细胞龛复杂性的方法。
Eur Cell Mater. 2019 Feb 11;37:88-112. doi: 10.22203/eCM.v037a07.
2
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Preservation of the naïve features of mesenchymal stromal cells in vitro: Comparison of cell- and bone-derived decellularized extracellular matrix.
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Modeling of the Human Bone Environment: Mechanical Stimuli Guide Mesenchymal Stem Cell-Extracellular Matrix Interactions.人类骨骼环境建模:机械刺激引导间充质干细胞与细胞外基质的相互作用
Materials (Basel). 2021 Aug 7;14(16):4431. doi: 10.3390/ma14164431.
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Stem Cells Int. 2020 Aug 11;2020:8837654. doi: 10.1155/2020/8837654. eCollection 2020.
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Biomimetic Mineralization Promotes Viability and Differentiation of Human Mesenchymal Stem Cells in a Perfusion Bioreactor.仿生矿化促进灌流生物反应器中人骨髓间充质干细胞的存活和分化。
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