Tomato-derived extracellular vesicles increase intestinal zinc transportation by potentially down-regulating the expression of the metallothionein family

被引:0
|
作者
Huang, Ziyu [1 ]
Whitehead, Bradley [2 ,3 ]
Nejsum, Peter [2 ,3 ]
Corredig, Milena [1 ]
Rasmussen, Martin Kroyer [1 ]
机构
[1] Aarhus Univ, Dept Food Sci, Aarhus, Denmark
[2] Aarhus Univ, Dept Clin Med, Aarhus, Denmark
[3] Aarhus Univ Hosp, Dept Infect Dis, Aarhus, Denmark
关键词
Nanovesicle; Metallothionein; Zinc; Intestine; Tomato; CELLS; MICE; NANOPARTICLES; COLITIS;
D O I
10.1016/j.foodres.2025.115804
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Extracellular vesicles (EVs) have the ability to regulate physiological and pathological processes across species and have been shown to be present in plants. Tomatoes are one of the most widespread vegetables on the market and exhibit a broad range of health-promoting effects, including antioxidant and anti-inflammatory properties. However, little is known about the bioactivity of tomato-derived EVs. Here, we isolated EVs from tomatoes and explored their gene regulatory potential using array-based transcriptomics. Interestingly, using a differentiated Caco-2 monolayer model, tomato-derived EVs were shown to upregulate the transportation of zinc, which may involve the down-regulation of metallothionein proteins (MTs). Differentiated Caco-2 cells internalized tomatoderived EVs. Post-EV treatment the relative expression levels of MT-related mRNAs within the cells decreased by approximately threefold, accompanied by an approximately twofold reduction in intracellular zinc concentration. Additionally, the amount of secreted zinc in the basolateral medium increased by approximately threefold. Moreover, tomato-derived EV regulation of MT gene expression occurred only in differentiated epithelial cells. This effect was observed in differentiated Caco-2 and HIEC-6 cells, whereas no impact was seen on the MT gene in undifferentiated cells. This mechanistic study uniquely demonstrates the bioactivity of tomato-derived EVs, and for the first time, reveals the ability of plant-derived EVs to modify zinc regulation across the intestinal epithelia. This further suggests the potential of plant-derived EVs as functional food supplements in the future.
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页数:11
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