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纯化胃肠道粘蛋白的粒子追踪微观流变学

Particle tracking microrheology of purified gastrointestinal mucins.

作者信息

Georgiades Pantelis, Pudney Paul D A, Thornton David J, Waigh Thomas A

机构信息

Biological Physics, Department of Physics and Astronomy, University of Manchester, Manchester, M60 1QD, UK; Wellcome Trust Centre for Cell-Matrix Research, Faculty of Life Sciences, Michael Smith Building, University of Manchester, Oxford Road, Manchester, M13 9PT, UK.

出版信息

Biopolymers. 2014 Apr;101(4):366-77. doi: 10.1002/bip.22372.

Abstract

The rheological characteristics of gastric and duodenal mucin solutions, the building blocks of the mucus layer that covers the epithelia of the two organs, were investigated using particle tracking microrheology. We used biochemically well characterized purified porcine mucins (MUC5AC and MUC2) as models for human mucins, to probe their viscoelasticity as a function of mucin concentration and pH. Furthermore, we used both reducing (dithiothreitol, DTT) and chaotropic agents (guanidinium chloride and urea) to probe the mesoscopic forces that mediate the integrity of the polymer network. At neutral pH both gastric and duodenal mucins formed self-assembled semi-dilute networks above a certain critical mucin concentration (c*) with the viscosity (η) scaling as η∼c(0.53±0.08) for MUC5AC and η∼c(0.53±0.06) for MUC2, where c is the mucin concentration. Above an even higher mucin concentration threshold (ce , the entanglement concentration) reptation occurs and there is a dramatic increase in the viscosity scaling, η∼c(3.92±0.38) for MUC5AC and η∼c(5.1±0.8) for MUC2. The dynamics of the self-assembled comb polymers is examined in terms of a scaling model for flexible polyelectrolyte combs. Both duodenum and gastric mucin are found to be pH switchable gels, gelation occurring at low pHs. There is a hundred-fold increase in the elastic shear modulus once the pH is decreased. The addition of DTT, guanidinium chloride and urea disassembles both the semi-dilute and gel structures causing a large increase in the compliance (decrease in their shear moduli). Addition of the polyphenol EGCG has a reverse effect on mucin viscoelasticity, that is, it triggers a sol-gel transition in semi-dilute mucin solutions at neutral pH.

摘要

利用粒子追踪微观流变学研究了胃和十二指肠粘蛋白溶液的流变特性,这两种溶液是覆盖这两个器官上皮的粘液层的组成部分。我们使用生物化学性质明确的纯化猪粘蛋白(MUC5AC和MUC2)作为人类粘蛋白的模型,以探究其粘弹性随粘蛋白浓度和pH值的变化。此外,我们使用还原剂(二硫苏糖醇,DTT)和离液剂(氯化胍和尿素)来探究介导聚合物网络完整性的介观力。在中性pH值下,胃和十二指肠粘蛋白在高于一定临界粘蛋白浓度(c*)时形成自组装半稀网络,对于MUC5AC,粘度(η)的标度为η∼c(0.53±0.08),对于MUC2,粘度(η)的标度为η∼c(0.53±0.06),其中c是粘蛋白浓度。在更高的粘蛋白浓度阈值(ce,缠结浓度)以上,发生链段滑移,粘度标度急剧增加,对于MUC5AC,η∼c(3.92±0.38),对于MUC2,η∼c(5.1±0.8)。根据柔性聚电解质梳的标度模型研究了自组装梳状聚合物的动力学。发现十二指肠和胃粘蛋白都是pH可切换凝胶,在低pH值下发生凝胶化。一旦pH值降低,弹性剪切模量会增加一百倍。添加DTT、氯化胍和尿素会破坏半稀和凝胶结构,导致顺应性大幅增加(剪切模量降低)。添加多酚表没食子儿茶素(EGCG)对粘蛋白粘弹性有相反的影响,即它在中性pH值下触发半稀粘蛋白溶液中的溶胶-凝胶转变。

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