超重力
多糖
下调和上调
细胞生物学
生物
焦点粘着
刺激
细胞粘附
粘附
细胞生长
伤口愈合
细胞
分子生物学
免疫学
细胞外基质
化学
信号转导
内分泌学
生物化学
基因
蛋白多糖
有机化学
天体生物学
作者
Raquel Costa‐Almeida,Daniel T. O. Carvalho,M. Jamie Ferreira,Tamagno Pesqueira,Monica Monici,Jack J. W. A. van Loon,Pedro L. Granja,Manuela E. Gomes
出处
期刊:Stem Cells and Development
[Mary Ann Liebert, Inc.]
日期:2018-03-29
卷期号:27 (12): 858-869
被引量:17
标识
DOI:10.1089/scd.2017.0206
摘要
Gravity influences physical and biological processes, especially during development and homeostasis of several tissues in the human body. Studies under altered gravity have been receiving great attention toward a better understanding of microgravity-, hypogravity (<1 g)-, or hypergravity (>1 g)-induced alterations. In this work, the influence of simulated hypergravity over human tendon-derived cells (hTDCs) was studied at 5, 10, 15, and 20 g for 4 or 16 h, using a large diameter centrifuge. Main results showed that 16 h of simulated hypergravity limited cell proliferation. Cell area was higher in hTDCs cultured at 5, 10, and 15 g for 16 h, in comparison to 1 g control. Actin filaments were more pronounced in hTDCs cultured at 5 and 10 g for 16 h. Focal adhesion kinase (FAK) was mainly expressed in focal adhesion sites upon hypergravity stimulation, in comparison to perinuclear localization in control cells after 16 h; and FAK number/cell increased with increasing g-levels. A tendency toward an upregulation of tenogenic markers was observed; scleraxis (SCX), tenascin C (TNC), collagen type III (COL3A1), and decorin (DCN) were significantly upregulated in hTDCs cultured at 15 g and COL3A1 and DCN were significantly upregulated in hTDCs cultured at 20 g. Overall, simulated hypergravity affected the behavior of hTDCs, with more pronounced effects in the long-term period (16 h) of stimulation.
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