Lee Bao-Hong, Wu She-Ching, Chien Hao-Yuan, Shen Tang-Long, Hsu Wei-Hsuan
Department of Horticulture, National Chiayi University, Chiayi 60004, Taiwan.
Department of Food Sciences, National Chiayi University, Chiayi 60004, Taiwan.
Food Funct. 2023 Oct 2;14(19):8942-8950. doi: 10.1039/d3fo01608k.
Nano-sized extracellular vesicles (EV) are essential for cell communication. Studies on EV from natural sources including edible plants are gaining momentum due to the biological implications. In this study, EV from tomato fruit were isolated by ultracentrifugation and their physical and morphological features along with their biocargo profiles were analyzed. We found that tomato EV promote the growth of probiotic species, while inhibiting growth of the opportunistic intestinal pathogens and . Tomato EV reversed microbiota dysbiosis caused by in a simulator of the gut microbiota fermentation model. Phospholipid analysis of tomato EV revealed that the anti-bacterial effect of tomato-EV was driven by the presence of specific lipids in the EV, as demonstrated by lipid depletion and reconstitution experiments. The findings suggest the potential of tomato-derived EV for treating gut microbiota dysbiosis and preventing intestinal bacterial infections.
纳米级细胞外囊泡(EV)对于细胞通讯至关重要。由于其生物学意义,对包括可食用植物在内的天然来源的EV的研究正在兴起。在本研究中,通过超速离心从番茄果实中分离出EV,并分析了它们的物理和形态特征以及生物负载谱。我们发现番茄EV促进益生菌的生长,同时抑制机会性肠道病原体的生长。在肠道微生物群发酵模型模拟器中,番茄EV逆转了由[具体物质]引起的微生物群失调。番茄EV的磷脂分析表明,番茄EV的抗菌作用是由EV中特定脂质的存在驱动的,脂质消耗和重组实验证明了这一点。这些发现表明番茄来源的EV在治疗肠道微生物群失调和预防肠道细菌感染方面具有潜力。