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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Clickable decellularized extracellular matrix as a new tool for building hybrid-hydrogels to model chronic fibrotic diseases in vitro
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Clickable decellularized extracellular matrix as a new tool for building hybrid-hydrogels to model chronic fibrotic diseases in vitro

机译:可点击的脱细胞外细胞外基质作为构建杂种水凝胶的新工具,以在体外模拟慢性纤维化疾病

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Fibrotic disorders account for over one third of mortalities worldwide. Despite great efforts to study the cellular and molecular processes underlying fibrosis, there are currently few effective therapies. Dual-stage polymerization reactions are an innovative tool for recreating heterogeneous increases in extracellular matrix (ECM) modulus, a hallmark of fibrotic diseases in vivo. Here, we present a clickable decellularized ECM (dECM) crosslinker incorporated into a dynamically responsive poly(ethylene glycol)alpha-methacrylate (PEG alpha MA) hybrid-hydrogel to recreate ECM remodeling in vitro. An off-stoichiometry thiol-ene Michael addition between PEGaMA (8-arm, 10 kg mol(-1)) and the clickable dECM resulted in hydrogels with an elastic modulus of E = 3.6 +/- 0.24 kPa, approximating healthy lung tissue (1-5 kPa). Next, residual alpha MA groups were reacted via a photo-initiated homopolymerization to increase modulus values to fibrotic levels (E = 13.4 +/- 0.82 kPa) in situ. Hydrogels with increased elastic moduli, mimicking fibrotic ECM, induced a significant increase in the expression of myofibroblast transgenes. The proportion of primary fibroblasts from dual-reporter mouse lungs expressing collagen 1a1 and alpha-smooth muscle actin increased by approximately 60% when cultured on stiff and dynamically stiffened hybrid-hydrogels compared to soft. Likewise, fibroblasts expressed significantly increased levels of the collagen 1a1 transgene on stiff regions of spatially patterned hybrid-hydrogels compared to the soft areas. Collectively, these results indicate that hybrid-hydrogels are a new tool that can be implemented to spatiotemporally induce a phenotypic transition in primary murine fibroblasts in vitro.
机译:纤维化障碍占全球的五分之一。尽管努力研究纤维化纤维化的细胞和分子过程,但目前有几乎没有有效的疗法。双级聚合反应是一种用于重建细胞外基质(ECM)模量的非均相增加的创新工具,体内纤维化疾病的标志。这里,我们呈现一种可点击的脱细胞的ECM(DECM)交联剂,其掺入动态响应的聚(乙二醇)α-甲基丙烯酸酯(PEGαMA)杂交水凝胶中以重新创建ECM体外重塑。 PEGAMA(8臂,10kg mol(-1))和可点击的DECM之间的脱离化学计量硫醇-NEE麦克基·米科尔(8臂,10kg mol(-1))导致e = 3.6 +/- 0.24kPa的弹性模量的水凝胶,近似健康肺组织( 1-5 kPa)。接下来,通过光引发的均聚物反应残留的αMA基团以使模量值增加到原位的纤维化水平(E = 13.4 +/- 0.82kPa)。水凝胶具有增加的弹性模量,模仿纤维化ECM,诱导肌纤维细胞转基因表达的显着增加。当在刚性培养并动态加强杂合 - 水凝胶时,表达胶原1A1和α-平滑肌肌动蛋白的双报告动物小鼠肺的主要成纤维细胞的比例增加了大约60%。同样,与软面积相比,成纤维细胞表达了空间图案化杂交水凝胶的刚性区域上的胶原1A1转基因的水平显着增加。总的来说,这些结果表明,杂交 - 水凝胶是一种新工具,可以实施到瞬间诱导体外杀原鼠成纤维细胞中的表型转变。

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