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Morphological and Molecular Changes in Juvenile Normal Human Fibroblasts Exposed to Simulated Microgravity

机译:少年正常人体成纤维细胞暴露于模拟微血管的形态学和分子变化

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The literature suggests morphological alterations and molecular biological changes within the cellular milieu of human cells, exposed to microgravity (μg), as many cell types assemble to multicellular spheroids (MCS). In this study we investigated juvenile normal human dermal fibroblasts (NHDF) grown in simulated μg (s-μg) on a random positioning machine (RPM), aiming to study changes in cell morphology, cytoskeleton, extracellular matrix (ECM), focal adhesion and growth factors. On the RPM, NHDF formed an adherent monolayer and compact MCS. For the two cell populations we found a differential regulation of fibronectin, laminin, collagen-IV, aggrecan, osteopontin, TIMP-1, integrin-βsub1/sub, caveolin-1, E-cadherin, talin-1, vimentin, α-SM actin, TGF-βsub1/sub, IL-8, MCP-1, MMP-1, and MMP-14 both on the transcriptional and/or translational level. Immunofluorescence staining revealed only slight structural changes in cytoskeletal components. Flow cytometry showed various membrane-bound proteins with considerable variations. In silico analyses of the regulated proteins revealed an interaction network, contributing to MCS growth via signals mediated by integrin-βsub1/sub, E-cadherin, caveolin-1 and talin-1. In conclusion, s-μg-conditions induced changes in the cytoskeleton, ECM, focal adhesion and growth behavior of NHDF and we identified for the first time factors involved in fibroblast 3D-assembly. This new knowledge might be of importance in tissue engineering, wound healing and cancer metastasis.
机译:该文献表明人体细胞细胞内部内部的形态改变和分子生物学变化,暴露于微匍匐(μg),因为许多细胞类型组装在多细胞球体(MCS)上。在该研究中,我们研究了在随机定位机(RPM)上的模拟μg(S-μg)中生长的少年正常人体皮肤成纤维细胞(NHDF),旨在研究细胞形态,细胞骨架,细胞外基质(ECM),局灶性粘附和生长因素。在RPM上,NHDF形成了粘附的单层和紧凑型MCS。对于两种细胞群,我们发现纤连蛋白,层粘连蛋白,胶原蛋白-4族,聚集蛋白,骨桥蛋白,TIMP-1,整合素-β 1 ,Caveolin-1,E-cadherin,瞳孔-1的差异调节,Vimentin,α-Sm actin,TGF-β 1 ,IL-8,MCP-1,MMP-1和MMP-14都在转录和/或翻译水平上。免疫荧光染色仅显示细胞骨架组分的微小结构变化。流式细胞术显示各种膜结合蛋白,具有相当多的变化。在受调节蛋白的硅分析中揭示了相互作用网络,通过通过整合素-β 1 ,E-cadherin,Caveolin-1和倒下瞳-1介导的信号有助于MCS生长。总之,S-μg-条件诱导NHDF的细胞骨架,ECM,局灶性粘附性和生长行为的变化,我们鉴定为纤维细胞3D组件中的第一次因素。这种新知识可能对组织工程,伤口愈合和癌症转移具有重要性。

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