Department of Food Science and Engineering, College of Agricultural, Yanbian University, Yanji 133000, Jilin, China.
Department of Food Science and Engineering, College of Integration Science, Yanbian University, Yanji 133000, Jilin, China.
Food Funct. 2024 May 20;15(10):5238-5250. doi: 10.1039/d3fo05783f.
Exosome-like nanoparticles (ELNs) are novel naturally occurring plant ultrastructures and contain unique bioactive components. However, the potential applications and biological functions of plant ELNs, especially in the context of health promotion and disease prevention, remain largely unexplored. This study aimed to explore the biological activities and functional mechanisms of -derived exosome-like nanoparticles (AAELNs). We reported the development of AAELNs, which possess particle sizes of 157.8 nm and a negative surface charge of -23.07 mV, uptaking by RAW264.7 cells, and reduction of oxidative stress by decreasing the activity of GSH-Px and T-SOD and increasing the content of MDA. Through the use of high-throughput sequencing technology, 12 known miRNA families and 23 additional miRNAs were identified in AAELNs, GO and KEGG term enrichment analysis revealed the potential of AAELNs-miRNAs in modulating neural-relevant behaviors. Additionally, LC-MS/MS analysis detected a total of 32 major lipid classes, 430 lipid subclasses, and 1345 proteins in AAELNs. Furthermore, fluorescence disappearance and fermentation experiments demonstrated that AAELNs were able to enter the colon and improve the microbial structure. These findings suggest that AAELNs could serve as nanoshuttles in food, potentially offering health-enhancing properties.
外泌体样纳米颗粒(ELNs)是新型天然存在的植物超微结构,包含独特的生物活性成分。然而,植物 ELNs 的潜在应用和生物学功能,特别是在促进健康和预防疾病方面,仍在很大程度上未被探索。本研究旨在探索来源于拟南芥的外泌体样纳米颗粒(AAELNs)的生物学活性和功能机制。我们报道了 AAELNs 的开发,其粒径为 157.8nm,表面带负电荷-23.07mV,被 RAW264.7 细胞摄取,并通过降低 GSH-Px 和 T-SOD 的活性以及增加 MDA 的含量来减轻氧化应激。通过使用高通量测序技术,在 AAELNs 中鉴定出 12 个已知的 miRNA 家族和 23 个额外的 miRNAs,GO 和 KEGG 术语富集分析表明 AAELNs-miRNAs 具有调节神经相关行为的潜力。此外,LC-MS/MS 分析检测到 AAELNs 中总共有 32 种主要脂质类、430 种脂质亚类和 1345 种蛋白质。此外,荧光消失和发酵实验表明,AAELNs 能够进入结肠并改善微生物结构。这些发现表明,AAELNs 可以作为食品中的纳米载体,可能具有增强健康的特性。