Ministry of Education Key Laboratory of Bioinformatics, Department of Biological Sciences and Biotechnology, School of Life Sciences, Tsinghua University, Beijing 100084, China.
Biomaterials. 2011 Dec;32(35):9207-17. doi: 10.1016/j.biomaterials.2011.08.058. Epub 2011 Sep 3.
Cell-substrate interaction is one of the most important aspects of tissue engineering. Changes of MSCs interfacial behaviors were found to be triggered by 10 μm wide grooved pattern on poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBHHx). Global marker genes expression and miRNAs profiling analysis provided insights into the regulation network of the topography induced MSCs' cell responses including adhesion, proliferation, differentiation and apoptosis. Compared to MSCs cultured on the smooth substrates, MSCs incubated on microgrooved PHBHHx substrates showed increased expression of osteogenesis-related marker genes including cbfa1, col1a1 and bmp2, and decreased expression of vcl, vinculin encoding gene, adipogenesis-related genes including lpl, des and acta2, as well as myogenesis-related genes of myh11 and nse. The miRNA microarrays revealed that 18 differentially-expressed miRNAs on microgrooved pattern had multiple target genes, contributing comprehensively to the cellular regulation process. Similar to the topography-triggered ostegenenesis, co-transfection of the osteogenic miRNAs combination (miR-140, miR-214, miR-320, miR-351 and miR-674-5p) was able to stimulate the expression of osteogenic marker genes. This study elucidated the important roles of miRNAs in the regulation processes of the microenvironment triggered cell behaviors, and provided clues for the PHA biomedical materials development.
细胞-基质相互作用是组织工程中最重要的方面之一。研究发现,10μm宽的沟槽图案会改变间充质干细胞的界面行为。全局标记基因表达和 miRNA 谱分析深入了解了拓扑诱导间充质干细胞细胞反应的调控网络,包括黏附、增殖、分化和凋亡。与培养在光滑基底上的间充质干细胞相比,培养在微沟槽 PHBHHx 基底上的间充质干细胞表现出更高的成骨相关标记基因表达,包括 cbfa1、col1a1 和 bmp2,以及更低的 vcl、粘着斑蛋白编码基因 vinculin、脂肪生成相关基因 lpl、des 和 acta2 以及肌生成相关基因 myh11 和 nse 的表达。miRNA 微阵列显示,微沟槽图案上有 18 个差异表达的 miRNA 有多个靶基因,对细胞调控过程有综合贡献。与拓扑触发的成骨作用类似,成骨相关 miRNA 组合(miR-140、miR-214、miR-320、miR-351 和 miR-674-5p)的共转染能够刺激成骨标记基因的表达。本研究阐明了 miRNA 在微环境触发细胞行为的调控过程中的重要作用,并为 PHA 生物医学材料的发展提供了线索。