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In vitro Biomineralization Induced by Self-assembled Extracellular Matrix Proteins

机译:自组装细胞外基质蛋白诱导的体外生物矿化

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Extracellular matrix (ECM) proteins play an essential role during biomineralization in bone and engineered tissues. In a previous study, we showed that calcite preferentially nucleated on pure elastin fibers. However, the actual cellular ECM fibers are composed of a combination of proteins, primarily collagen, fibronectin and some elastin. Here we follow the calcium carbonate- and calcium phosphate- mineralization process in vitro when these ECM proteins are combined and determine the differences between these proteins in the biomineralization process. The surface morphology and mechanical properties of the protein fibers during the early stages were probed by atomic force microscopy (AFM) and shear modulation force microscopy (SMFM). The nucleation of the mineral crystals on the protein matrices was investigated by scanning electron microscopy (SEM). Preliminary data showed that the moduli of all protein fibers increased at the early stages, with collagen having the largest increase in supersaturated calcium bicarbonate solution. In metastable calcium phosphate solutions the modulus of the mixed elastin-fibronectin fibres increased to a greater extent than the moduli of the fibers composed of the single proteins. Longer exposure in the mineral solutions led to the formation of crystals templated along the self-assembled fiber structures.
机译:细胞外基质(ECM)蛋白在骨骼和工程组织的生物矿化过程中起着至关重要的作用。在先前的研究中,我们表明方解石在纯弹性蛋白纤维上优先成核。但是,实际的细胞ECM纤维是由蛋白质(主要是胶原蛋白,纤连蛋白和某些弹性蛋白)的组合组成。在这里,当这些ECM蛋白结合在一起时,我们将跟踪体外碳酸钙和磷酸钙的矿化过程,并确定生物矿化过程中这些蛋白之间的差异。通过原子力显微镜(AFM)和剪切调制力显微镜(SMFM)探测蛋白质纤维在早期的表面形态和机械性能。通过扫描电子显微镜(SEM)研究了蛋白质基质上矿物晶体的成核现象。初步数据显示,所有蛋白质纤维的模量在早期都增加,胶原蛋白在过饱和碳酸氢钙溶液中的增加最大。在亚稳态磷酸钙溶液中,混合的弹性蛋白-纤连蛋白纤维的模量增加的程度大于由单一蛋白质组成的纤维的模量。在矿物质溶液中的暴露时间更长,导致沿自组装纤维结构模板化的晶体形成。

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