首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Pro-Inflammatory Effect of Gliadins and Glutenins Extracted from Different Wheat Cultivars on an In Vitro 3D Intestinal Epithelium Model
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Pro-Inflammatory Effect of Gliadins and Glutenins Extracted from Different Wheat Cultivars on an In Vitro 3D Intestinal Epithelium Model

机译:在体外3D肠上皮模型中从不同小麦品种提取的胶质蛋白和谷蛋白的促进作用

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摘要

There is a need to assess the relationship between improved rheological properties and the immunogenic potential of wheat proteins. The present study aimed to investigate the in vitro effects of total protein extracts from three modern and two landrace Triticum aestivum commercial flour mixes, with significant differences in gluten strength (GS), on cell lines. Cytotoxicity and innate immune responses induced by wheat proteins were investigated using Caco-2 monocultures, two dimensional (2D) Caco-2/U937 co-cultures, and three dimensional (3D) co-cultures simulating the intestinal mucosa with Caco-2 epithelial cells situated above an extra-cellular matrix containing U937 monocytes and L929 fibroblasts. Modern wheat proteins, with increased GS, significantly reduced Caco-2 cell proliferation and vitality in monoculture and 2D co-cultures than landrace proteins. Modern wheat proteins also augmented Caco-2 monolayer disruption and tight junction protein, occludin, redistribution in 3D co-cultures. Release of interleukin-8 into the cell medium and increased U937 monocyte migration in both 2D and 3D co-cultures were similarly apparent. Immuno-activation of migrating U937 cells was evidenced from cluster of differentiation 14 (CD14) staining and CD11b-related differentiation into macrophages. The modern wheat proteins, with gluten polymorphism relatedness and increased GS, were shown to be more cytotoxic and immunogenic than the landrace wheat proteins.
机译:需要评估改善流变性质与小麦蛋白的免疫原性潜力之间的关系。本研究旨在探讨来自三种现代和两种Landrace Triticum Aestivum商业面粉混合物的总蛋白质提取物的体外影响,细胞系上有麸质强度(GS)的显着差异。使用CaCO-2单一栽培,二维(2D)Caco-2 / U937共培养物和三维(3D)共培养物进行小麦蛋白诱导的细胞毒性和先天免疫应答,并用Caco-2上皮细胞模拟肠粘膜的三维(3D)共培养物位于含有U937单核细胞和L929成纤维细胞的细胞外基质上方。现代小麦蛋白质,GS增加,显着降低了单殖民文献和2D共培养物中的Caco-2细胞增殖和活力,而不是Landrace蛋白。现代小麦蛋白也增强了Caco-2单层破坏和紧密结蛋白,occludin,3D共同培养。在2D和3D共培养物中释放白细胞介素-8进入细胞培养基中的U937单核细胞迁移,同样明显。从分化14(CD14)染色和CD11B相关分化的分化簇中,证明了迁移U937细胞的免疫活化。具有麸质多态性相关性和GS增加的现代小麦蛋白被显示出比兰德群蛋白的细胞毒性和免疫原性。

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