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猪小肠和结肠黏液的流变学:非黏蛋白成分对凝胶结构的弱化作用

The rheology of pig small intestinal and colonic mucus: weakening of gel structure by non-mucin components.

作者信息

Sellers L A, Allen A, Morris E R, Ross-Murphy S B

机构信息

Department of Physiological Sciences, Medical School, University of Newcastle upon Tyne, U.K.

出版信息

Biochim Biophys Acta. 1991 Dec 6;1115(2):174-9. doi: 10.1016/0304-4165(91)90027-e.

Abstract

Mechanical spectroscopy has been used to study the structure and properties of pig small intestinal and colonic adherent mucus gel. Both mucus secretions had properties of viscoelastic gels, but that from the small intestine was substantially weaker in quality. Small intestinal mucus gel was disrupted by acid (pH 1), detergents (bile) and protein denaturants while that from the colon remained stable following these treatments. Concentration of purified colonic mucin produced a gel with the same rheological properties as the native secretion. Purified small intestinal mucin when concentrated produced a stronger gel than the native secretion and, in contrast to the latter, one which was not disrupted by acid or denaturants. The instability of native small intestinal mucus was shown not to be a function of the mucin components (which alone could account for the gel-forming properties), but to arise from the presence of insoluble material largely from sloughed mucosal cells. These studies show (1) that mucus gels from the colon and small intestine have similar mechanical behaviour and properties to those from the stomach and duodenum, and (2) emphasise the caution that should be exercised when interpreting the rheological properties of mucus preparations, particularly with respect to their content of mucosal cellular material.

摘要

机械光谱法已被用于研究猪小肠和结肠附着黏液凝胶的结构与特性。两种黏液分泌物都具有黏弹性凝胶的特性,但小肠黏液的性质明显较弱。小肠黏液凝胶会被酸(pH 1)、洗涤剂(胆汁)和蛋白质变性剂破坏,而结肠黏液在这些处理后仍保持稳定。纯化的结肠黏蛋白浓缩后形成的凝胶具有与天然分泌物相同的流变学特性。纯化的小肠黏蛋白浓缩后形成的凝胶比天然分泌物更强,并且与后者不同的是,它不会被酸或变性剂破坏。天然小肠黏液的不稳定性并非黏蛋白成分的作用(黏蛋白本身可解释凝胶形成特性),而是源于大量来自脱落黏膜细胞的不溶性物质的存在。这些研究表明:(1)结肠和小肠的黏液凝胶与胃和十二指肠的黏液凝胶具有相似的力学行为和特性;(2)强调在解释黏液制剂的流变学特性时应谨慎,特别是关于其黏膜细胞物质的含量。

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