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The endogenous fluorescence of fibroblast in collagen gels as indicator of stiffness of the extracellular matrix

机译:胶原凝胶中成纤维细胞的内源性荧光作为细胞外基质刚度的指示剂

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The stiffness or rigidity of the extracellular matrix (ECM) regulates cell response. Established mechanical tests to measure stiffness, such as indentation and tensile tests, are invasive and destructive to the sample. Endogenous or native molecules to cells and ECM components, like tryptophan and cross-links of collagen, display fluorescence upon irradiation with ultraviolet light. Most likely, the concentration of these endogenous fluorophores changes as the stiffness of the ECM changes. In this work we investigate the endogenous fluorescence of collagen gels containing fibroblasts as a non-invasive non-destructive method to measure stiffness of the ECM. Human fibroblast cells were cultured in three-dimensional gels of type I collagen (50,000 cells/ml). This construct is a simple model of tissue contraction. During contraction, changes in the excitation-emission matrix (a fluorescence map in the 240-520/290-530 nm range) of constructs were measured with a spectrofluoremeter, and changes in stiffness were measured with a standard indentation test over 16 days. Results show that a progressive increase in fluorescence of the 290/340 nm excitation-emission pair correlates with a progressive increase in stiffness (r=0.9, a=0.5). The fluorescence of this excitation-emission pair is ascribed to tryptophan and variations in the fluorescence of this pair correlate with cellular proliferation. In this tissue model, the endogenous functional fluorescence of proliferating fibroblast cells is a biomechanical marker of stiffness of the ECM.
机译:细胞外基质(ECM)的刚度或刚性调节细胞反应。建立了测量刚度的机械测试,例如压痕和拉伸试验,对样品进行侵入性和破坏性。内源性或天然分子到细胞和ECM组分,如色氨酸和胶原蛋白的交联,在用紫外光照射时显示荧光。最有可能的是,这些内源性荧光团的浓度随着ECM变化的刚度而变化。在这项工作中,我们研究含有成纤维细胞的内源性荧光,作为非侵入性的非破坏性方法,以测量ECM的刚度。在I型胶原(50,000个细胞/ mL)的三维凝胶中培养人的成纤维细胞。该构建体是一种简单的组织收缩模型。在收缩期间,用光谱荧光表测量激发 - 发射矩阵(240-520 / 290-530nm范围中的荧光图)的变化,并在16天内用标准压痕试验测量刚度的变化。结果表明,290/340nm激发 - 发射对荧光的逐渐增加与刚度的渐进式增加(r = 0.9,a = 0.5)相关。该激发发射对的荧光归因于色氨酸,并且该对的荧光的变化与细胞增殖相关。在这种组织模型中,增殖成纤维细胞的内源性官能荧光是ECM刚度的生物力学标志物。

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