Laboratory for Immuno Bioengineering Research and Applications, Division of Engineering, New York University Abu Dhabi, Abu Dhabi P.O. Box 129188, United Arab Emirates.
Core Technology Platforms, New York University Abu Dhabi, Abu Dhabi P.O. Box 129188, United Arab Emirates.
Int J Mol Sci. 2021 Nov 2;22(21):11911. doi: 10.3390/ijms222111911.
Exposure to microgravity affects astronauts' health in adverse ways. However, less is known about the extent to which fibroblast differentiation during the wound healing process is affected by the lack of gravity. One of the key steps of this process is the differentiation of fibroblasts into myofibroblasts, which contribute functionally through extracellular matrix production and remodeling. In this work, we utilized collagen-based three-dimensional (3D) matrices to mimic interstitial tissue and studied fibroblast differentiation under simulated microgravity (sµG). Our results demonstrated that alpha-smooth muscle actin (αSMA) expression and translocation of Smad2/3 into the cell nucleus were reduced upon exposure to sµG compared to the 1 control, which suggests the impairment of fibroblast differentiation under sµG. Moreover, matrix remodeling and production were decreased under sµG, which is in line with the impaired fibroblast differentiation. We further investigated changes on a transcriptomic level using RNA sequencing. The results demonstrated that sµG has less effect on fibroblast transcriptomes, while sµG triggers changes in the transcriptome of myofibroblasts. Several genes and biological pathways found through transcriptome analysis have previously been reported to impair fibroblast differentiation. Overall, our data indicated that fibroblast differentiation, as well as matrix production and remodeling, are impaired in 3D culture under sµG conditions.
微重力暴露会以不利的方式影响宇航员的健康。然而,对于在缺乏重力的情况下,伤口愈合过程中的成纤维细胞分化在多大程度上受到影响,人们知之甚少。这个过程的关键步骤之一是成纤维细胞分化为肌成纤维细胞,通过细胞外基质的产生和重塑来发挥功能。在这项工作中,我们利用基于胶原蛋白的三维(3D)基质来模拟间质组织,并在模拟微重力(sµG)条件下研究成纤维细胞分化。我们的结果表明,与对照相比,sµG 暴露后α-平滑肌肌动蛋白(αSMA)的表达和 Smad2/3 向细胞核内的转位减少,这表明 sµG 下成纤维细胞分化受损。此外,基质重塑和产生减少,这与成纤维细胞分化受损一致。我们进一步使用 RNA 测序研究了转录组水平的变化。结果表明,sµG 对成纤维细胞转录组的影响较小,而 sµG 触发肌成纤维细胞转录组的变化。通过转录组分析发现的几个基因和生物学途径先前已被报道会损害成纤维细胞分化。总的来说,我们的数据表明,在 sµG 条件下的 3D 培养中,成纤维细胞分化以及基质的产生和重塑受损。