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揭示机械生理条件作用对心脏脂肪组织来源祖细胞的体外和计算研究的影响。

Unravelling the effects of mechanical physiological conditioning on cardiac adipose tissue-derived progenitor cells in vitro and in silico.

机构信息

ICREC Research Program, Health Science Research Institute Germans Trias i Pujol, Badalona, Spain.

Electronic and Biomedical Instrumentation Group, Departament d'Enginyeria Electrònica, Universitat Politècnica de Catalunya, Barcelona, Spain.

出版信息

Sci Rep. 2018 Jan 11;8(1):499. doi: 10.1038/s41598-017-18799-5.

Abstract

Mechanical conditioning is incompletely characterized for stimulating therapeutic cells within the physiological range. We sought to unravel the mechanism of action underlying mechanical conditioning of adipose tissue-derived progenitor cells (ATDPCs), both in vitro and in silico. Cardiac ATDPCs, grown on 3 different patterned surfaces, were mechanically stretched for 7 days at 1 Hz. A custom-designed, magnet-based, mechanical stimulator device was developed to apply ~10% mechanical stretching to monolayer cell cultures. Gene and protein analyses were performed for each cell type and condition. Cell supernatants were also collected to analyze secreted proteins and construct an artificial neural network. Gene and protein modulations were different for each surface pattern. After mechanostimulation, cardiac ATDPCs increased the expression of structural genes and there was a rising trend on cardiac transcription factors. Finally, secretome analyses revealed upregulation of proteins associated with both myocardial infarction and cardiac regeneration, such as regulators of the immune response, angiogenesis or cell adhesion. To conclude, mechanical conditioning of cardiac ATDPCs enhanced the expression of early and late cardiac genes in vitro. Additionally, in silico analyses of secreted proteins showed that mechanical stimulation of cardiac ATDPCs was highly associated with myocardial infarction and repair.

摘要

机械条件作用在刺激生理范围内的治疗细胞方面的特征描述并不完全。我们试图在体外和计算上阐明脂肪组织衍生祖细胞(ATDPC)机械条件作用的作用机制。在 3 种不同图案的表面上生长的心脏 ATDPC 被机械拉伸 7 天,频率为 1Hz。开发了一种定制的基于磁体的机械刺激器设备,可对单层细胞培养物施加约 10%的机械拉伸。对每种细胞类型和条件进行基因和蛋白质分析。还收集细胞上清液以分析分泌蛋白并构建人工神经网络。每种表面图案的基因和蛋白质调节都不同。机械刺激后,心脏 ATDPC 增加了结构基因的表达,并且心脏转录因子呈上升趋势。最后,分泌组分析显示与心肌梗死和心脏再生相关的蛋白质上调,如免疫反应、血管生成或细胞黏附的调节剂。总之,体外机械条件作用增强了心脏 ATDPC 中早期和晚期心脏基因的表达。此外,分泌蛋白的计算分析表明,心脏 ATDPC 的机械刺激与心肌梗死和修复高度相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee12/5764962/19b2aed868de/41598_2017_18799_Fig1_HTML.jpg

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