MECHANOBIOLOGICAL APPROACHES FOR STIMULATING CHONDROGENESIS OF STEM CELLS.

IF 2.5 3区 医学 Q3 CELL & TISSUE ENGINEERING
Mallory Volz, Kimberley R Wyse-Sookoo, F. Travascio, Chun-Yuh Huang, T. Best
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引用次数: 5

Abstract

Chondrogenesis is the process of differentiation of stem cells into mature chondrocytes. Such a process consists of chemical, functional, and structural changes which are initiated and mediated by the host environment of the cells. To date, the mechanobiology of chondrogenesis has not been fully elucidated. Hence, experimental activity is focused on recreating specific environmental conditions for stimulating chondrogenesis, and to look for a mechanistic interpretation of the mechanobiological response of cells in the cartilaginous tissues. There are a large number of studies on the topic that vary considerably in their experimental protocols used for providing environmental cues to cells for differentiation, making generalizable conclusions difficult to ascertain. The main objective of this contribution is to review the mechanobiological stimulation of stem cell chondrogenesis and methodological approaches utilized to date to promote chondrogenesis of stem cells in-vitro. In-vivo models will also be explored, but this area is currently limited. An overview of the experimental approaches used by different research groups may help the development of unified testing methods that could be used to overcome existing knowledge gaps, leading to an accelerated translation of experimental findings to clinical practice.
刺激干细胞软骨形成的机械生物学方法。
软骨发生是干细胞分化为成熟软骨细胞的过程。这种过程包括由细胞的宿主环境引发和介导的化学、功能和结构变化。到目前为止,软骨形成的机械生物学尚未完全阐明。因此,实验活动的重点是重建刺激软骨形成的特定环境条件,并寻找软骨组织中细胞机械生物学反应的机制解释。有大量关于该主题的研究,其用于向细胞分化提供环境线索的实验方案差异很大,这使得难以确定可概括的结论。这篇文章的主要目的是综述干细胞软骨形成的机械生物学刺激以及迄今为止用于促进干细胞体外软骨形成的方法学方法。体内模型也将被探索,但这一领域目前有限。概述不同研究小组使用的实验方法可能有助于开发统一的测试方法,这些方法可用于克服现有的知识差距,从而加速将实验结果转化为临床实践。
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来源期刊
Stem cells and development
Stem cells and development 医学-细胞与组织工程
CiteScore
7.80
自引率
2.50%
发文量
69
审稿时长
3 months
期刊介绍: Stem Cells and Development is globally recognized as the trusted source for critical, even controversial coverage of emerging hypotheses and novel findings. With a focus on stem cells of all tissue types and their potential therapeutic applications, the Journal provides clinical, basic, and translational scientists with cutting-edge research and findings. Stem Cells and Development coverage includes: Embryogenesis and adult counterparts of this process Physical processes linking stem cells, primary cell function, and structural development Hypotheses exploring the relationship between genotype and phenotype Development of vasculature, CNS, and other germ layer development and defects Pluripotentiality of embryonic and somatic stem cells The role of genetic and epigenetic factors in development
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