首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Evidence that TD-198946 enhances the chondrogenic potential of human synovium-derived stem cells through the NOTCH3 signaling pathway
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Evidence that TD-198946 enhances the chondrogenic potential of human synovium-derived stem cells through the NOTCH3 signaling pathway

机译:TD-198946通过Notch3信号通路增强人类滑膜衍生的干细胞的软弱性潜力

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Human synovium-derived stem cells (hSSCs) are an attractive source of cells for cartilage repair. At present, the quality of tissue and techniques used for cartilage regeneration have scope for improvement. A small compound, TD-198946, was reported to enhance chondrogenic induction from hSSCs; however, other applications of TD-198946, such as priming the cell potential of hSSCs, remain unknown. Our study aimed to examine the effect of TD-198946 pretreatment on hSSCs. HSSCs were cultured with or without TD-198946 for 7 days during expansion culture and then converted into a three-dimensional pellet culture supplemented with bone morphogenetic protein-2 (BMP2) and/or transforming growth factor beta-3 (TGF beta 3). Chondrogenesis in cultures was assessed based on the GAG content, histology, and expression levels of chondrogenic marker genes. Cell pellets derived from TD-198946-pretreated hSSCs showed enhanced chondrogenic potential when chondrogenesis was induced by both BMP2 and TGF beta 3. Moreover, cartilaginous tissue was efficiently generated from TD-198946-pretreated hSSCs using a combination of BMP2 and TGF beta 3. Microarray analysis revealed that NOTCH pathway-related genes and their target genes were significantly upregulated in TD-198946-treated hSSCs, although TD-198946 alone did not upregulate chondrogenesis related markers. The administration of the NOTCH signal inhibitor diminished the effect of TD-198946. Thus, TD-198946 enhances the chondrogenic potential of hSSCs via the NOTCH3 signaling pathway. This study is the first to demonstrate the gradual activation of NOTCH3 signaling during chondrogenesis in hSSCs. The priming of NOTCH3 using TD-198946 provides a novel insight regarding the regulation of the differentiation of hSSCs into chondrocytes.
机译:人滑膜源性干细胞(HSSC)是软骨修复的一个有吸引力的细胞来源。目前,用于软骨再生的组织质量和技术还有改进的余地。据报道,一种小化合物TD-198946可增强HSSC的软骨诱导作用;然而,TD-198946的其他应用,例如激发HSSC的细胞电位,仍然未知。我们的研究旨在检测TD-198946预处理对HSSC的影响。在扩张培养期间,HSSC与TD-198946一起或不与TD-198946一起培养7天,然后转化为补充有骨形态发生蛋白-2(BMP2)和/或转化生长因子β-3(TGFβ3)的三维颗粒培养物。根据GAG含量、组织学和软骨生成标记基因的表达水平评估培养物中的软骨生成。当BMP2和TGF-β3诱导软骨形成时,来自TD-198946预处理的HSSC的细胞颗粒显示出增强的软骨形成潜能。此外,使用BMP2和TGF-β3的组合,TD-198946预处理的HSSC可有效生成软骨组织。微阵列分析显示,在TD-198946处理的HSSC中,NOTCH通路相关基因及其靶基因显著上调,尽管TD-198946本身并未上调软骨生成相关标记物。NOTCH信号抑制剂的使用减弱了TD-198946的作用。因此,TD-198946通过NOTCH3信号通路增强HSSC的软骨生成潜能。这项研究首次证明了在HSSC软骨形成过程中NOTCH3信号的逐渐激活。使用TD-198946引发NOTCH3为HSSC向软骨细胞分化的调节提供了新的见解。

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