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首页> 外文期刊>Journal of dermatological science >TGF-beta1 increases cell rigidity by enhancing expression of smooth muscle actin: Keloid-derived fibroblasts as a model for cellular mechanics
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TGF-beta1 increases cell rigidity by enhancing expression of smooth muscle actin: Keloid-derived fibroblasts as a model for cellular mechanics

机译:TGF-beta1通过增强平滑肌肌动蛋白的表达来提高细胞刚性:瘢痕loid衍生的成纤维细胞作为细胞力学的模型

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Background: Mechanical transduction contributes to appropriate cell functions. Clinically, keloid, an uncontrolled fibrous overgrowth and scarring, preferentially affects skin areas subject to higher mechanical tension than others. Keloid-derived fibroblasts have exaggerated TGF-beta1-mediated responses, including smooth muscle actin (SMA) expression, cellular contraction, and tissue remodeling, to mechanical strain compared to normal fibroblasts. Objective: This study asked if SMA contributes to cellular intrinsic rigidity using keloid -derived fibroblasts as a model. Method: Using atomic force microscopy and confocal microscopy, we measured cellular rigidity and the expression of SMA in keloid fibroblasts treated with exogenous TGF-beta1. Result: There was an increase of SMA expression in keloid tissue as well as keloid-derived fibroblasts. The cell rigidity increased by TGF-beta1 in keloid fibroblasts occurred concomitantly with increases in SMA expression. TGF-beta1 receptor 1 kinase inhibitors reduced TGF-beta1-induced cellular rigidity and SMA expression. Knocking down SMA with interference RNA resulted in a reduction of TGF-beta1-enhanced rigidity, suggesting that TGF-beta1 increases cell rigidity via SMA expression. Conclusion: We conclude that TGF-beta1 increases cell rigidity through TGF-beta1 receptor-SMA axis. This study reports that SMA, at least in part, contributes to cell rigidity in fibroblasts. SMA might be an appealing pharmaceutical target in keloids.
机译:背景:机械转导有助于适当的细胞功能。临床上,瘢痕loid(一种不受控制的纤维过度生长和疤痕)优先影响比其他区域承受更高机械张力的皮肤区域。与正常成纤维细胞相比,瘢痕loid衍生的成纤维细胞对机械应变的TGF-β1介导的反应过度,包括平滑肌肌动蛋白(SMA)表达,细胞收缩和组织重塑。目的:本研究使用瘢痕loid来源的成纤维细胞作为模型,探讨SMA是否有助于细胞固有的刚性。方法:使用原子力显微镜和共聚焦显微镜,我们测量了外源性TGF-β1处理的瘢痕loid成纤维细胞的细胞刚性和SMA的表达。结果:瘢痕loid组织和瘢痕loid来源的成纤维细胞中SMA表达增加。 TGF-β1在瘢痕loid成纤维细胞中的细胞刚性增加与SMA表达的增加同时发生。 TGF-beta1受体1激酶抑制剂降低了TGF-beta1诱导的细胞刚性和SMA表达。用干扰RNA抑制SMA导致​​TGF-beta1增强的刚性降低,这表明TGF-beta1通过SMA表达提高了细胞刚性。结论:我们得出结论,TGF-β1通过TGF-β1受体-SMA轴增加了细胞的刚性。这项研究报告说,SMA至少部分有助于成纤维细胞的细胞僵化。 SMA可能是瘢痕an中有吸引力的药物靶标。

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