Studies of surface grafted collagen and transforming growth factor β1 combined with cyclic stretching as a dual chemical and physical stimuli approach for rat adipose-derived stem cells (rADSCs) chondrogenesis differentiation.

ty10086 提交于 周四, 08/26/2021 - 12:44
文章英文标题
Studies of surface grafted collagen and transforming growth factor β1 combined with cyclic stretching as a dual chemical and physical stimuli approach for rat adipose-derived stem cells (rADSCs) chondrogenesis differentiation.
正文
脂肪源性干细胞由于具有多种分化能力,已被用于各种再生医学研究。建立稳定、快速的干细胞分化途径是组织再生领域的关键问题。本研究将大鼠脂肪源性干细胞( rADSCs )接种于Ⅰ型胶原/转化生长因子β1 ( TGF-β1 )固定的聚二甲基硅氧烷( PDMS )基片上,并结合短期动态牵张刺激(间歇或连续牵张6 h ),以体外不添加生长因子的诱导培养基诱导rADSCs成软骨分化。通过调节培养的rADSCs的细胞外化学和机械感受器,观察其软骨分化。静置培养72   h后,在有无TGF-β1的胶原修饰的表面观察到蛋白聚糖分泌。经不同的拉伸刺激后,胶原和胶原/ TGF-β1修饰的表面均有明显的蛋白聚糖分泌,特别是间歇拉伸培养后。然而,成软骨标记SOX-9、Col2a1和聚糖的基因表达依赖于表面接枝层和所使用的拉伸方式。这些结果提示,表面化学特性和外界机械刺激可协同影响rADSCs成软骨分化的疗效。
文章内容(英文)
The adipose-derived stem cell has been used in various regenerative medicine research due to its multiple differentiation capabilities. Developing a stable and quick approach for the differentiation of stem cells is a critical issue in tissue regenerative field. In this investigation, rat adipose-derived stem cells (rADSCs) were seeded onto the type I collagen/transforming growth factor β1 (TGF-β1) immobilized polydimethylsiloxane (PDMS) substrate and then combined with short term dynamic stretching stimulation (intermittent or continuous stretching for 6 h) to induce the rADSCs chondrogenesis differentiation using the induction medium without growth factors added in vitro. Via regulating the extracellular chemical- and mechano-receptors of the cultured rADSCs, the chondrogenic differentiation was examined. After 72 h of static culture, proteoglycan secretion was noted on the surfaces modified by collagen with or without TGF-β1. After different stretching stimulations, significant proteoglycan secretion was noted on the surface modified by both collagen and collagen/TGF-β1, especially after the intermittent stretching culturing. Nonetheless, genetic expression of the chondrogenic markers: SOX-9, Col2a1, and aggrecan, instead, were dependent upon the surface grafted layer and the stretching mode utilized. These findings suggested that the surface chemical characteristics and external mechanical stimulation could synergistically affect the efficacy of chondrogenic differentiation of rADSCs.
来源出处
Journal|[J]Journal of the Mechanical Behavior of Biomedical MaterialsVolume 112, 2020. PP 104062-104062
DOI
https://doi.org/10.1016/j.jmbbm.2020.104062

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