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Novel Biopolymeric Template for the Nucleation and Growth of Hydroxyapatite Crystals Based on Self-Assembled Fibrinogen Fibrils

机译:基于自组装纤维蛋白原原纤维的羟基磷灰石晶体成核和生长的新型生物聚合物模板

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摘要

We prepared amyloid-like fibrinogen (Fg) fibrils at pH 2.0 in the absence of thrombin; furthermore, we prepared uniform 2-D Fg fibril networks on a hydrophilic mica matrix. We found that several experimental parameters, such as concentration, pH value, and ionic strength, strongly affected the formation of Fg fibrils as well as fibril networks. Biomimetic mineralization was conducted on the Fg fibrils and 2-D Fg fibril networks in 1.5 x simulated body fluid (SBF) for different periods of time. The present results may lead to a fundamental understanding of possible mechanisms for the pH-mediated self assembly of Fg molecules and the formation of Fg fibrils and fibril networks in the absence of thrombin and provide a feasible strategy that may enable the design and fabrication of new functional biomaterials based on self-assembled protein fibrils.
机译:我们在不存在凝血酶的条件下,在pH 2.0的条件下制备了淀粉样蛋白纤维蛋白原(Fg)原纤维。此外,我们在亲水性云母基质上制备了均匀的2-D Fg原纤维网络。我们发现几个实验参数,例如浓度,pH值和离子强度,强烈影响Fg纤丝以及纤丝网络的形成。在1.5倍模拟体液(SBF)中的Fg纤丝和2-D Fg纤丝网络上进行了仿生矿化,持续了不同的时间。目前的结果可能导致对pH介导的Fg分子自我组装以及在没有凝血酶的情况下形成Fg纤丝和纤丝网络的可能机制的基本理解,并提供可行的策略,使新的设计和制造成为可能。基于自组装蛋白原纤维的功能性生物材料。

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