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制备生物支架和原代肠上皮细胞以有效建立鱼类肠道黏膜的 3D 模型。

Preparation of Biological Scaffolds and Primary Intestinal Epithelial Cells to Efficiently 3D Model the Fish Intestinal Mucosa.

机构信息

Department of Agricultural and Environmental Sciences-Production, Landscape, Agroenergy, Center for Stem Cell Research, Università degli Studi di Milano, Milan, Italy.

Polymer Chemistry and Biomaterials Group, Centre of Macromolecular Chemistry, Ghent University, Ghent, Belgium.

出版信息

Methods Mol Biol. 2021;2273:263-278. doi: 10.1007/978-1-0716-1246-0_19.

Abstract

Tissue engineering is an elegant tool to create organs in vitro, that can help obviate the lack of organ donors in transplantation medicine and provide the opportunity of studying complex biological systems in vitro, thereby reducing the need for animal experiments. Artificial intestine models are at the core of Fish-AI, an EU FET-Open research project dedicated to the development of a 3D in vitro platform that is intended to enable the aquaculture feed industry to predict the nutritional and health value of alternative feed sources accurately and efficiently.At present, it is impossible to infer the health and nutrition value through the chemical characterization of any given feed. Therefore, each new feed must be tested through in vivo growth trials. The procedure is lengthy, expensive and requires the use of many animals. Furthermore, although this process allows for a precise evaluation of the final effect of each feed, it does not improve our basic knowledge of the cellular and molecular mechanisms determining such end-results. In turn, this lack of mechanistic knowledge severely limits the capacity to understand and predict the biological value of a single raw material and of their different combinations.The protocol described herein allows to develop the two main components essential to produce a functional platform for the efficient and reliable screening of feeds that the feed industry is currently developing for improving their health and nutritional value. It is here applied to the Rainbow Trout, but it can be fruitfully used to many other fish species.

摘要

组织工程是一种在体外创建器官的巧妙工具,可以帮助解决移植医学中器官供体缺乏的问题,并提供在体外研究复杂生物系统的机会,从而减少对动物实验的需求。人工肠模型是 Fish-AI 的核心,这是一个欧盟 FET-Open 研究项目,致力于开发一种 3D 体外平台,旨在使水产养殖饲料行业能够准确高效地预测替代饲料来源的营养和健康价值。目前,通过对任何给定饲料的化学特征进行推断,无法推断其健康和营养价值。因此,必须通过体内生长试验来测试每种新饲料。该过程漫长、昂贵且需要使用大量动物。此外,尽管该过程可以精确评估每种饲料的最终效果,但它并不能提高我们对决定这些最终结果的细胞和分子机制的基本认识。反过来,这种缺乏机制知识严重限制了我们理解和预测单一原材料及其不同组合的生物学价值的能力。本文所述的方案允许开发目前饲料行业正在开发的用于提高其健康和营养价值的有效和可靠筛选饲料的功能平台的两个主要组成部分。本文将其应用于虹鳟鱼,但它可以成功地用于许多其他鱼类。

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