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Softening Substrates Promote Chondrocytes Phenotype via RhoA/ROCK Pathway

机译:软化底物通过RhoA / ROCK途径促进软骨细胞表型

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Due to its evascular, aneural, and alymphatic conditions, articular cartilage shows extremely poor regenerative ability. Thus, directing chondrocyte toward a desired location and function by utilizing the mechanical cues of biomaterials is a promising approach for effective tissue regeneration. However, chondrocytes cultured on Petri dish will lose their typical phenotype which may lead to compromised results. Therefore, we fabricated polydimethylsiloxane (PDMS) materials with various stiffness as culture substrates. Cell morphology and focal adhesion of chondrocytes displayed significant changes. The cytoskeletal tension of the adherent cells observed by average myosin IIA fluorescent intensity increased as stiffness of the underlying substrates decreased, consistent with the alteration of chondrocyte phenotype in our study. Immunofluorescent images and q-PCR results revealed that chondrocyte cultured on soft substrates showed better chondrocyte functionalization by more type II collagen and aggrecan expression, related to the lowest mRNA level of Rac-1, RhoA, ROCK-1, and ROCK-2. Taken together, this work not only points out that matrix elasticity can regulate chondrocyte functionalization via RhoA/ROCK pathway, but also provides new prospect for biomechanical control of cell behavior in cell based cartilage regeneration.
机译:由于其血管,自然和淋巴状况,关节软骨显示出极差的再生能力。因此,通过利用生物材料的机械线索将软骨细胞导向所需的位置和功能是有效组织再生的有前途的方法。但是,培养皿中培养的软骨细胞将失去其典型表型,这可能会导致结果受损。因此,我们制备了具有不同刚度的聚二甲基硅氧烷(PDMS)材料作为培养基质。软骨细胞的细胞形态和粘着斑表现出明显的变化。平均肌球蛋白IIA荧光强度观察到的粘附细胞的细胞骨架张力随着底层底物硬度的降低而增加,这与我们研究中的软骨细胞表型改变一致。免疫荧光图像和q-PCR结果显示,通过更多的II型胶原蛋白和聚集蛋白聚糖表达,在软基质上培养的软骨细胞表现出更好的软骨细胞功能性,这与Rac-1,RhoA,ROCK-1和ROCK-2的最低mRNA水平有关。两者合计,这项工作不仅指出基质弹性可以通过RhoA / ROCK途径调节软骨细胞功能化,而且为基于生物的软骨再生中细胞行为的生物力学控制提供了新的前景。

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