AI Article Synopsis

  • The study investigates the interaction between plant-derived nanovesicles (PDNVs), particularly lemon-derived nanovesicles (LNVs), and mammalian cells, highlighting their potential to regulate important molecular pathways.
  • It focuses on the antioxidant effects of LNVs and industrial-scale lemon nanovesicles (iLNVs) on healthy human liver cells and rats with metabolic syndrome induced by a high-fat diet, showing a reduction in reactive oxygen species (ROS) production and an increase in antioxidant proteins (Nrf2 and HO-1).
  • The results suggest that iLNVs improve glucose tolerance and lipid metabolism in rats while enhancing overall liver health, positioning LNVs/iLNVs as a potential treatment for

Article Abstract

The cross-talk between plant-derived nanovesicles (PDNVs) and mammalian cells has been explored by several investigations, underlining the capability of these natural nanovesicles to regulate several molecular pathways. Additionally, PDNVs possess biological proprieties that make them applicable against pathological conditions, such as hepatic diseases. In this study we explored the antioxidant properties of lemon-derived nanovesicles, isolated at laboratory (LNVs) and industrial scale (iLNVs) in human healthy hepatocytes (THLE-2) and in metabolic syndrome induced by a high-fat diet (HFD) in the rat. Our findings demonstrate that in THLE-2 cells, LNVs and iLNVs decrease ROS production and upregulate the expression of antioxidant mediators, Nrf2 and HO-1. Furthermore, the in vivo assessment reveals that the oral administration of iLNVs improves glucose tolerance and lipid dysmetabolism, ameliorates biometric parameters and systemic redox homeostasis, and upregulates Nrf2/HO-1 signaling in HFD rat liver. Consequently, we believe LNVs/iLNVs might be a promising approach for managing hepatic and dysmetabolic disorders.

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Source
http://dx.doi.org/10.1016/j.biopha.2024.117532DOI Listing

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