ArticleScientific reports2026
Ameliorative effect of curcumin and/or cerium oxide nanoparticles on diabetes of rats: biochemical, molecular, and pathological insights.
Article in Scientific reports, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Diabetes mellitus encompasses a spectrum of metabolic dysfunctions fundamentally defined by a chronic state of hyperglycemia and oxidative cytotoxicity, where current therapies often fail to arrest progressive β-cell failure. This study evaluated the protective efficacy and mechanistic pathways of Nanocurcumin, Cerium Oxide Nanoparticles (CNPs), and their combinatorial formulation in alleviating pathologies in an alloxan-induced type 1 diabetic rat model. Nanoparticle characterization via transmission electron microscopy and XRD analysis confirmed the successful preparation of spheroidal Nanocurcumin (30 ± 5 nm) and CNPs (17 ± 2 nm). A total of fifty male albino rats were randomly allocated into five distinct experimental groups: negative control, diabetic (alloxan 150 mg/kg), Nanocurcumin (5 mg/kg), CNPs (45 mg/kg), and a combination group of both dosages. Intraperitoneal treatments were administered for three weeks pre-induction of diabetes and four weeks post-induction. Blood and tissue samples (liver and pancreas) were collected. The combination therapy demonstrated superior efficacy over monotherapies, reducing blood glucose by 69% and restoring serum insulin by 50%. It significantly ameliorated dyslipidemia, lowering total cholesterol by up to 50% and triglycerides by up to 56%, and attenuated hepatorenal injury, evidenced by reduced liver enzyme activities (ALT decreased by up to 36% and AST by up to 21%) alongside normalized urea and creatinine levels. In hepatic and pancreatic tissues, the treatments attenuated oxidative stress by reducing the lipid peroxidation marker MDA by 36-65% and enhancing antioxidant defenses, including increases in GSH (up to 58%), GPx (up to 25%), and catalase activities (up to 58%). Molecular analysis revealed upregulated hepatic IR, PI3K, and AKT expression, alongside suppression of pancreatic VEGF and iNOS. Histopathological examination confirmed islet architecture preservation and reduced NF-κB p65 immunoreactivity. Co-administration of Nanocurcumin and CNPs provides a potent, multi-targeted protective strategy, offering a promising preclinical avenue for diabetes management beyond traditional glycemic control, which warrants further translational investigation.
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