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一种用于研究肠上皮细胞反应性的IPEC-J2和猪外周血单核细胞共培养模型:精氨酸剥夺的调节作用

A Co-Culture Model of IPEC-J2 and Swine PBMC to Study the Responsiveness of Intestinal Epithelial Cells: The Regulatory Effect of Arginine Deprivation.

作者信息

Saleri Roberta, Borghetti Paolo, Ravanetti Francesca, Andrani Melania, Cavalli Valeria, De Angelis Elena, Ferrari Luca, Martelli Paolo

机构信息

Department of Veterinary Science, University of Parma, Strada del Taglio 10, 43126 Parma, Italy.

出版信息

Animals (Basel). 2021 Sep 21;11(9):2756. doi: 10.3390/ani11092756.

Abstract

Arginine is a semi-essential amino acid, supplementation with which induces a reduction of intestinal damage and an improvement of intestinal immunity in weaned piglets, but the mechanism is not yet entirely clear. The aim of this study was to characterise a co-culture model by measuring changes in gene expression over time (24 and 48 h) in intestinal IPEC-J2 cells in the presence of immune cells activated with phytohemagglutinin and, consequently, to assess the effectiveness of arginine deprivation or supplementation in modulating the expression of certain cytokines related to the regulation of intestinal cells' function. The main results show the crucial role of arginine in the viability/proliferation of intestinal cells evaluated by an MTT assay, and in the positive regulation of the expression of pro-inflammatory (, , , ) and anti-inflammatory () cytokines. This experimental model could be important for analysing and clarifying the role of nutritional conditions in intestinal immune cells' functionality and reactivity in pigs as well as the mechanisms of the intestinal defence system. Among the potential applications of our in vitro model of interaction between IEC and the immune system there is the possibility of studying the effect of feed additives to improve animal health and production.

摘要

精氨酸是一种半必需氨基酸,补充精氨酸可减轻断奶仔猪的肠道损伤并提高其肠道免疫力,但其机制尚不完全清楚。本研究的目的是通过测量在存在用植物血凝素激活的免疫细胞的情况下,肠道IPEC-J2细胞中基因表达随时间(24小时和48小时)的变化来表征一种共培养模型,从而评估精氨酸剥夺或补充在调节与肠道细胞功能调节相关的某些细胞因子表达方面的有效性。主要结果表明,通过MTT分析评估,精氨酸在肠道细胞的活力/增殖中起关键作用,并且在促炎( 、 、 、 )和抗炎( )细胞因子的表达的正向调节中起关键作用。该实验模型对于分析和阐明营养条件在猪肠道免疫细胞功能和反应性中的作用以及肠道防御系统的机制可能很重要。在我们的IEC与免疫系统相互作用的体外模型的潜在应用中,有可能研究饲料添加剂对改善动物健康和生产的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdeb/8465608/afd53ba65f91/animals-11-02756-g001.jpg

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