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胶原胆红素相互作用的微观评价:体外表面现象。

A microscopic evaluation of collagen-bilirubin interactions: in vitro surface phenomenon.

机构信息

CSIR-Central Leather Research Institute, Council of Scientific and Industrial Research, Adyar, Chennai, 600 020, India.

出版信息

J Microsc. 2014 Feb;253(2):109-18. doi: 10.1111/jmi.12101. Epub 2013 Dec 12.

Abstract

This study is carried out to understand the morphology variations of collagen I matrices influenced by bilirubin. The characteristics of bilirubin interaction with collagen ascertained using various techniques like XRD, CLSM, fluorescence, SEM and AFM. These techniques are used to understand the distribution, expression and colocalization patterns of collagen-bilirubin complexes. The present investigation mimic the in vivo mechanisms created during the disorder condition like jaundice. Fluorescence technique elucidates the crucial role played by bilirubin deposition and interaction during collagen organization. Influence of bilirubin during collagen fibrillogenesis and banding patterns are clearly visualize using SEM. As a result, collagen-bilirubin complex provides different reconstructed patterns because of the influence of bilirubin concentration. Selectivity, specificity and spatial organization of collagen-bilirubin are determined through AFM imaging. Consequently, it is observed that the morphology and quantity of the bilirubin binding to collagen varied by the concentrations and the adsorption rate in protein solutions. Microscopic studies of collagen-bilirubin interaction confirms that bilirubin influence the fibrillogenesis and alter the rate of collagen organization depending on the bilirubin concentration. This knowledge helps to develop a novel drug to inhibit the interface point of interaction between collagen and bilirubin.

摘要

本研究旨在了解胆红素影响下 I 型胶原基质的形态变化。使用 XRD、CLSM、荧光、SEM 和 AFM 等各种技术确定胆红素与胶原的相互作用特征。这些技术用于了解胶原-胆红素复合物的分布、表达和共定位模式。本研究模拟了在黄疸等疾病状态下体内形成的机制。荧光技术阐明了胆红素沉积和相互作用在胶原组织中的关键作用。SEM 清楚地显示了胆红素对胶原原纤维形成和带型的影响。结果表明,由于胆红素浓度的影响,胶原-胆红素复合物提供了不同的重构模式。通过 AFM 成像确定了胶原-胆红素的选择性、特异性和空间组织。因此,观察到胆红素与胶原结合的形态和数量随浓度和蛋白溶液中的吸附率而变化。胶原-胆红素相互作用的显微镜研究证实,胆红素影响原纤维形成,并根据胆红素浓度改变胶原组织的速度。这一知识有助于开发一种新型药物来抑制胶原和胆红素之间相互作用的界面点。

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