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Towards bioinspired in vitro models of intestinal mucus

机译:建立受生物启发的肠道粘液体外模型

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Intestinal mucus is a biological structure that acts as a barrier between the external environment and the epithelium. It actively selects nutrient and drug intake, regulates the symbiosis with the intestinal microbiota and keeps the epithelium protected from the attack of pathogens. All these functions are closely connected to the chemical and structural complexity of this biological material, on which its viscoelastic and diffusive properties depend. Many models have been proposed to replicate these characteristics using glycoproteins in solution and possibly the addition of other mucus components, such as lipids and other proteins. In the field of mucus modelling, an overall view of the mucus as a material, having its own viscous, rheological and diffusive characteristics, has been undersized with respect to a pure biological-functional analysis. In this review, we propose a description of the mucus as a biomaterial, including a presentation of its chemical and structural complexity, and of its main viscoelastic-diffusive properties, in order to provide a synthesis of the characteristics necessary for the engineering of more advanced mucus models.
机译:肠粘液是一种生物学结构,可充当外部环境与上皮之间的屏障。它积极地选择营养和药物摄入,调节与肠道菌群的共生关系,并保护上皮免受病原体的侵袭。所有这些功能都与这种生物材料的化学和结构复杂性紧密相关,而该材料的粘弹性和扩散特性也取决于它们。已经提出了许多模型来使用溶液中的糖蛋白并可能添加其他粘液成分(例如脂质和其他蛋白)来复制这些特征。在粘液建模领域,相对于纯生物学功能分析,粘液作为一种材料具有其自身的粘性,流变学和扩散特性的整体视图已经过小。在这篇综述中,我们提出了对粘液作为生物材料的描述,包括其化学和结构复杂性及其主要粘弹性扩散特性的介绍,以提供对更高级工程技术所必需的特性的综合黏液模型。

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