首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >A quantitative comparable study on multi-hierarchy conformation of acid and pepsin-solubilized collagens from the skin of grass carp (Ctenopharyngodon idella)
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A quantitative comparable study on multi-hierarchy conformation of acid and pepsin-solubilized collagens from the skin of grass carp (Ctenopharyngodon idella)

机译:草鲤鱼皮肤酸和胃蛋白溶解胶原蛋白多等级构象的定量比较研究(Ctenopharyncodon Idella)

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摘要

This work aimed to improve yield of collagen from the grass carp skin by employing different strategies (acid-acid method, pepsin-pepsin method and acid-pepsin method, denoted as A-A, P-P, A-P, respectively). And further to conduct quantitative characterization on structural properties, self-assembly kinetics and gelation properties of these collagens. Herein, a two-step collagen extraction method (pepsin-pepsin) was established with the high yield. Meanwhile, structural measurements of high-yield collagen (pepsin-soluble collagen, PSC) and acid-soluble collagen (ASC) indicated that both collagens maintained the typical triple helical conformation of collagen type I. Moreover, the fibrillogenesis tests of PSC and ASC at the various temperatures confirmed that self-assembly were the entropy-driven process. The gelation time of both ASC and PSC was determined by the dynamic time sweep at the different frequencies combined with Winter's criterion. The self-assembly kinetics results showed that fibrillogenesis rate for ASC solution was faster, and more liable to gelation relative to PSC. Mechanical measurements suggested that ASC showed the more resistance ability to deformation than PSC due to more complicated architecture, confirmed by higher fractal dimension. However, the equivalent typical assemblies of PSC to ASC at the various stages can still be expected via controlling incubation time or temperature under the guidance of Arrhenius equation. This study would provide some strategies for achieving maximum utilization of waste biomass and significant insights into the mechanisms underlying the quantitative differences in multiple hierarchy conformation (molecule, fibrillogenesis and hydrogel) of ASC and PSC, which may benefit for subsequent design, development and optimization of collagen-based hydrogels in biomedical industries.
机译:这项工作旨在通过采用不同的策略(酸性酸法,胃蛋白酶 - 百草蛋白法和酸 - 百事碱法,分别为A-A,P-P,A-P,分别为A-A,P-P,A-P表示的胶原蛋白从草药皮肤的产量。进一步对这些胶原蛋白的结构性质,自组装动力学和凝胶化性质进行定量表征。在此,以高产率建立了两步胶原萃取方法(百事糖素)。同时,高产胶原(百草蛋白可溶性胶原蛋白,PSC)和酸溶胶原(ASC)的结构测量表明,两种胶原蛋白都保持了胶原蛋白I型的典型三螺旋构象。此外,PSC和ASC的原纤化试验各种温度证实,自组装是熵驱动的过程。通过与冬季标准相结合的不同频率的动态时间扫描来确定ASC和PSC的凝胶化时间。自组装动力学结果表明,ASC溶液的原纤化率更快,更容易相对于PSC凝胶化。机械测量表明,由于更复杂的架构,ASC显示出比PSC更加变形的能力,通过更高的分形维度确认。然而,通过在Arhenius方程的引导下控制孵育时间或温度,仍然可以预期在各个阶段处于ASC的等效典型组件。本研究将提供一些策略,以实现废物生物量的最大利用和对ASC和PSC的多层次构象(分子,原纤化和水凝胶)的定量差异的定量差异的机制,这可能有利于随后的设计,开发和优化基于胶原的生物医学行业水凝胶。

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