Cox Sharon Natasha, Porcelli Vito, Romano Simona, Palmieri Luigi, Fratantonio Deborah
Department of Biosciences, Biotechnology and Environment, University of Bari Aldo Moro, 70125, Bari, Italy.
Department of Molecular Medicine and Medical Biotechnology, University of Naples, Federico II, 5, 80131, Naples, Italy.
Arch Biochem Biophys. 2025 Feb;764:110266. doi: 10.1016/j.abb.2024.110266. Epub 2024 Dec 12.
Exosome-like nanovesicles (ELNs) of food origin have received great attention in the last decade, due to the hypothesis that they contain bioactive molecules. ELNs purified from edible species have been shown to be protective and are able to regulate intestinal homeostasis. Despite ELNs being potential rising stars in modern healthy diets and biomedical applications, further research is needed to address underlying knowledge gaps, especially related to the specific molecular mechanism through which they exert their action. Here, we investigate the cellular uptake of blueberry-derived ELNs (B-ELNs) using a human stabilized intestinal cell line (HIEC-6) and assess the ability of B-ELNs to modulate the expression of inflammatory genes in response to lipopolysaccharide (LPS). Our findings show that B-ELNs are internalized by HIEC-6 cells and transport labeled RNA cargo into them. Pretreatment with B-ELNs reduces LPS-induced ROS generation and cell viability loss, while modulating the expression of 28 inflammatory genes compared to control. Pathway analysis demonstrates their ability to suppress inflammatory responses triggered by LPS. In conclusion, our data indicate that B-ELNs are up taken by HIEC-6 cells and can modulate inflammatory responses after LPS stimulation, suggesting a therapeutic potential. This study demonstrates the role of B-ELNs in regulating crucial biological processes, like anti-inflammatory responses, which could support intestinal health.
在过去十年中,食物来源的类外泌体纳米囊泡(ELNs)备受关注,因为有假说认为它们含有生物活性分子。从可食用物种中纯化得到的ELNs已被证明具有保护作用,并且能够调节肠道内稳态。尽管ELNs在现代健康饮食和生物医学应用中可能是冉冉升起的新星,但仍需要进一步研究来填补潜在的知识空白,特别是与它们发挥作用的具体分子机制相关的空白。在这里,我们使用人稳定肠道细胞系(HIEC-6)研究蓝莓来源的ELNs(B-ELNs)的细胞摄取情况,并评估B-ELNs调节脂多糖(LPS)刺激下炎症基因表达的能力。我们的研究结果表明,B-ELNs被HIEC-6细胞内化,并将标记的RNA货物转运到细胞内。与对照组相比,用B-ELNs预处理可减少LPS诱导的活性氧生成和细胞活力丧失,同时调节28种炎症基因的表达。通路分析表明它们具有抑制LPS触发的炎症反应的能力。总之,我们的数据表明B-ELNs被HIEC-6细胞摄取,并能在LPS刺激后调节炎症反应,提示其具有治疗潜力。这项研究证明了B-ELNs在调节关键生物学过程(如抗炎反应)中的作用,这可能有助于肠道健康。