Background: Hyperlipidemia is a major risk factor for cardiometabolic disorders, including non-alcoholic fatty liver disease (NAFLD), and is closely associated with oxidative stress. Opuntia ficus-indica (OFI) cladodes are recognized as a rich source of bioactive phytochemicals; however, the molecular mechanisms underlying their metabolic benefits remain incompletely understood. Objectives: This study aimed to comprehensively evaluate the hypolipidemic and hepatoprotective potential of a polyphenol-rich O. ficus-indica cladode extract (OCE) using an integrated approach combining in vivo evaluation, untargeted metabolomics (UHPLC-Orbitrap-MS/MS), molecular docking, and ADMET prediction. Methods: Hyperlipidemic mice fed a high-fat diet (HFD) were treated with OCE, while molecular docking was performed on ten major annotated phytochemicals against twelve key proteins involved in lipid metabolism and cholesterol homeostasis, including HMGCR, FAS, PPARα, PCSK9, and NPC1L1, using simvastatin as the reference compound. Results: OCE treatment significantly improved plasma and hepatic lipid profiles, improved glucose homeostasis, and markedly reduced hepatic malondialdehyde (MDA) levels, indicating attenuation of oxidative stress. Histopathological analysis further supported a pronounced hepatoprotective effect, with a substantial reduction in hepatic steatosis. Untargeted metabolomics enabled the annotation of 102 metabolites, putatively identifying piscidic acid as the predominant phenolic constituent together with a diverse profile of flavonoids and phenolic acids. Molecular docking supported the potential contribution of these phytochemicals to the regulation of lipid metabolism through favorable interactions with multiple therapeutic targets, while ADMET prediction suggested an overall favorable pharmacokinetic and toxicity profile despite the lower intestinal permeability predicted for glycosylated derivatives. Conclusions: Overall, these findings support O. ficus-indica cladodes as a promising source of dietary bioactive compounds with potential applications in the nutritional management and prevention of hyperlipidemia and related cardiometabolic disorders.
Abderrahmane Hadini, Abdelhay Addous, A. Baraich et al.· Nutrients· 0 citations
Septoria tritici blotch (STB), caused by Zymoseptoria tritici, is one of the most damaging foliar diseases of bread wheat (Triticum aestivum L.), leading to yield losses of up to 50% under favorable conditions and increasing reliance on synthetic fungicides. In this study, the antifungal activity of essential oil (EO) and hydrosol (the aqueous phase obtained as a by-product of hydrodistillation) derived from a local Algerian red garlic variety was evaluated in vitro against Z. tritici. Garlic extracts were characterized through morphological, physicochemical, and chemical analyses, with the volatile composition of EO determined by gas chromatography–mass spectrometry (GC–MS). The EO was rich in organosulfur compounds, particularly diallyl trisulfide and diallyl disulfide. Antifungal assays demonstrated a strong dose-dependent inhibition of mycelial growth, as evaluated by radial growth inhibition percentage. Garlic essential oil completely inhibited fungal growth at 0.30 µL mL⁻¹, although a reduction in efficacy over time suggested limited stability. Notably, garlic hydrosol achieved complete and stable inhibition at 150 µL mL⁻¹, representing a promising and underexplored approach for STB control.
Roumeissa Djerboua, Laid Benderradji, I. Sanah et al.· Journal of plant diseases an...· 0 citations
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