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ZHANG Jing, JIN Ziai, WANG Ziyue, et al. Zidovudine ameliorates metabolic disorders in HFD-fed rats by enhancing fatty acid oxidationJ. J China Pharm Univ, 2026, 57(2): 256-265. DOI: 10.11665/j.issn.1000-5048.2025102401
Citation: ZHANG Jing, JIN Ziai, WANG Ziyue, et al. Zidovudine ameliorates metabolic disorders in HFD-fed rats by enhancing fatty acid oxidationJ. J China Pharm Univ, 2026, 57(2): 256-265. DOI: 10.11665/j.issn.1000-5048.2025102401

Zidovudine ameliorates metabolic disorders in HFD-fed rats by enhancing fatty acid oxidation

  • This study aimed to investigate the effects of zidovudine (AZT) on high-fat diet (HFD)-induced metabolic disturbances in rats and its underlying mechanisms. The HFD rat model was established, and the animals were divided into the control group, the model group, and the AZT-treated group at low (25 mg/kg) and high (50 mg/kg) doses. Metabolic phenotype, hepatic lipid deposition, oxidative stress, mitochondrial function, and peroxisome proliferator-activated receptor (PPAR) signaling were evaluated. AZT treatment significantly mitigated HFD-induced body weight gain and reduced both the mass and adipocyte size of inguinal and epididymal white adipose tissues; it also enhanced metabolic flexibility and improved glucose tolerance without elevating blood lactate levels. High-dose AZT further lowered hepatic triglyceride accumulation, ameliorated steatosis, and additionally, attenuated hepatic oxidative stress by increasing superoxide dismutase (SOD) activity and decreasing malondialdehyde (MDA) levels. Western blot analysis revealed that AZT upregulated hepatic PPARα and carnitine palmitoyltransferase 1α (CPT1α), while downregulating PPARγ expression. In conclusion, AZT effectively ameliorates HFD-induced metabolic disorders without inducing mitochondrial toxicity, which may be related to the promotion of fatty acid oxidation, the reduction of oxidative stress, and the modulation of both the PPAR signaling pathway and pyrimidine metabolism.
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