Interspecies communication between plant and mouse gut host cells through edible plant derived exosome‐like nanoparticles

外体 微泡 Wnt信号通路 细胞生物学 生物 转录因子 细胞因子 小RNA 分子生物学 信号转导 基因 生物化学 免疫学
作者
Jingyao Mu,Xiaoying Zhuang,Qilong Wang,Hong Jiang,Zhongbin Deng,Baomei Wang,Lifeng Zhang,Sham S. Kakar,Jun Yan,Donald M. Miller,Huang‐Ge Zhang
出处
期刊:Molecular Nutrition & Food Research [Wiley]
卷期号:58 (7): 1561-1573 被引量:596
标识
DOI:10.1002/mnfr.201300729
摘要

Scope Exosomes, small vesicles participating in intercellular communication, have been extensively studied recently; however, the role of edible plant derived exosomes in interspecies communication has not been investigated. Here, we investigate the biological effects of edible plant derived exosome‐like nanoparticles (EPDENs) on mammalian cells. Methods and results In this study, exosome‐like nanoparticles from four edible plants were isolated and characterized. We show that these EPDENs contain proteins, lipids, and microRNA. EPDENs are taken up by intestinal macrophages and stem cells. The results generated from EPDEN‐transfected macrophages indicate that ginger EPDENs preferentially induce the expression of the antioxidation gene, heme oxygenase‐1 and the anti‐inflammatory cytokine, IL‐10; whereas grapefruit, ginger, and carrot EPDENs promote activation of nuclear factor like (erythroid‐derived 2). Furthermore, analysis of the intestines of canonical Wnt‐reporter mice, i.e. B6.Cg‐Tg(BAT‐lacZ)3Picc/J mice, revealed that the numbers of β‐galactosidase + (β‐Gal) intestinal crypts are increased, suggesting that EPDEN treatment of mice leads to Wnt‐mediated activation of the TCF4 transcription machinery in the crypts. Conclusion The data suggest a role for EPDEN‐mediated interspecies communication by inducing expression of genes for anti‐inflammation cytokines, antioxidation, and activation of Wnt signaling, which are crucial for maintaining intestinal homeostasis.
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