首页> 美国卫生研究院文献>International Journal of Medical Sciences >Three-Dimensional Culture Environment Increases the Efficacy of Platelet Rich Plasma Releasate in Prompting Skin Fibroblast Differentiation and Extracellular Matrix Formation
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Three-Dimensional Culture Environment Increases the Efficacy of Platelet Rich Plasma Releasate in Prompting Skin Fibroblast Differentiation and Extracellular Matrix Formation

机译:三维培养环境提高了富血小板血浆释放在促进皮肤成纤维细胞分化和细胞外基质形成中的功效

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摘要

Platelet rich plasma clot- releasate (PRCR) shows significant influence on tissue regeneration in clinical trials. Although, the mechanism of PRCR effect on fibroblast differentiation has been studied on 2D culture system, a detailed investigation is needed to establish the role of PRCR in cell seeded in 3D scaffolds. Therefore, a study was conducted to evaluate the influence of PRCR in fibroblasts (DFB) differentiation and extracellular matrix formation on both 3D and 2D culture systems. Cell viability was measured using MTT assay and DFB differentiation was evaluated by determining the expression levels of nucleostamin and alpha smooth muscle actin (α-SMA), using indirect immunostaining and Western blotting. The expression levels of extracellular matrix genes (collagen-I, collagen-III, fibronectin and laminin) and focal adhesion formation gene (integrin beta-1) were measured using Real-time PCR. The PRCR at 10% showed significant effect on cells viability compared with 5% and 20% in both culture environments. The decrease in the expression levels of nucleostamin and the increase in α-SMA signify the DFB differentiation to myofibroblast-like cells that was prominently greater in 3D compared to 2D culture. In 3D culture systems, the total collage production, expression levels of the extracellular matrix gene and the focal adhesion gene were increased significantly compared to 2D culture. In conclusion, 3D culture environments enhances the proliferative and differentiation effects of PRCR on DFB, thereby potentially increases the efficacy of DFB for future tissue engineering clinical application.
机译:在临床试验中,富含血小板的血浆凝块释放物(PRCR)对组织再生具有显着影响。尽管已经在2D培养系统上研究了PRCR对成纤维细胞分化的作用机理,但是需要进行详细的研究以建立PRCR在3D支架中接种的细胞中的作用。因此,进行了一项研究以评估PRCR在成纤维细胞(DFB)分化和细胞外基质形成中对3D和2D培养系统的影响。使用MTT测定法测量细胞活力,并使用间接免疫染色和Western印迹法通过测定核苷和α平滑肌肌动蛋白(α-SMA)的表达水平来评估DFB分化。使用实时PCR测量细胞外基质基因(胶原蛋白I,胶原蛋白III,纤连蛋白和层粘连蛋白)和粘着形成基因(整合素β-1)的表达水平。与两种培养环境中的5%和20%相比,PRCR为10%时,对细胞活力均具有显着影响。核苷蛋白表达水平的降低和α-SMA的升高表明DFB向成肌纤维细胞样细胞的分化,在3D中明显高于2D培养。在3D培养系统中,与2D培养相比,总的拼贴产生,细胞外基质基因和粘着斑基因的表达水平显着提高。总之,3D培养环境可增强PRCR对DFB的增殖和分化作用,从而潜在地提高DFB在未来组织工程临床应用中的功效。

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