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通过肌红蛋白胶体与溶液中胶原的界面相互作用引发纤维增生。

Initiating fibro-proliferation through interfacial interactions of myoglobin colloids with collagen in solution.

机构信息

Advanced Materials Lab., CSIR-CLRI, Adyar, Chennai 600020, India.

Advanced Materials Lab., CSIR-CLRI, Adyar, Chennai 600020, India.

出版信息

Int J Biol Macromol. 2017 Aug;101:117-125. doi: 10.1016/j.ijbiomac.2017.03.071. Epub 2017 Mar 18.

Abstract

This work examines fibro-proliferation through interaction of myoglobin (Mb), a globular protein with collagen, an extracellular matrix fibrous protein. Designed colloids of Mb at pH 4.5 and 7.5 have been mixed with collagen solution at pH 7.5 and 4.5 in different concentrations altering their surface charges. For the Mb colloids, 100-200nm sizes have been measured from Transmission electron micrographs and zeta sizer. CD spectra shows a shift to beta sheet like structure for the protein in the colloids. Interaction at Mb/Collagen interface studied using Dilational rheology, Quartz crystal microbalance with dissipation and Differential Scanning calorimetry show that the perturbation is not only by the charge compensation arising from the difference in pH of the colloids and collagen, but also by the organized assembly of collagen at that particular pH. Results demonstrate that positive Mb colloids at pH 4.5, having more% of entrained water stabilize the collagen fibrils (pH 7.5) around them. Ensuing dehydration leads to effective cross-linking and inherently anisotropic growth of fibrils/fibres of collagen. In the case of Mb colloids at pH 7.5, the fibril formation seems to supersede the clustering of Mb suggesting that the fibro-proliferation is both pH and hydrophilic-hydrophobic balance dependent at the interface.

摘要

这项工作通过肌红蛋白(Mb)与胶原蛋白的相互作用研究了纤维增生,肌红蛋白是一种球形蛋白,胶原蛋白是细胞外基质的纤维蛋白。设计了在 pH 值为 4.5 和 7.5 时的 Mb 胶体,并将其与在 pH 值为 7.5 和 4.5 的胶原蛋白溶液以不同浓度混合,改变其表面电荷。从透射电子显微镜和zeta 粒径仪测量了 Mb 胶体的 100-200nm 粒径。CD 光谱显示胶体中蛋白质的结构向β片层样结构转移。使用膨胀流变学、石英晶体微天平耗散和差示扫描量热法研究 Mb/胶原蛋白界面的相互作用表明,这种扰动不仅是由于胶体和胶原蛋白的 pH 值差异引起的电荷补偿,还与胶原蛋白在特定 pH 值下的有序组装有关。结果表明,在 pH 值为 4.5 时带正电荷的 Mb 胶体,由于夹带更多的水,稳定了周围的胶原蛋白纤维(pH 值为 7.5)。随后的脱水导致纤维的有效交联和固有各向异性生长。在 pH 值为 7.5 的 Mb 胶体的情况下,纤维的形成似乎取代了 Mb 的聚集,这表明在界面处纤维增生既依赖于 pH 值,也依赖于亲水性-疏水性平衡。

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