Anti-Inflammatory Peptide Prevents Aβ(25-35)-Induced Inflammation in Rats via Lipoxygenase Inhibition.

抗炎肽通过抑制脂氧合酶来预防大鼠体内 Aβ(25-35) 诱导的炎症

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作者:Yadav Yudhishthir, Anwar Masroor, Sharma Hanuman, Jain Suman, Sharma Uma, Haldar Partha, Dey Aparajit B, Dey Sharmistha
Neuroinflammation, triggered by lipoxygenase (LOX), contributes to Alzheimer's disease (AD) progression. Overexpression of LOX-5 in patients with AD serum highlights its role. This study assessed the efficacy of the LOX-inhibitor-peptide YWCS in an AD rat model induced by Aβ(25-35) injection. Cognitive tests, magnetic resonance imaging (MRI) scans, and molecular analyses were conducted. YWCS treatment significantly improved cognitive function, as evidenced by improved performance in the open field, novel object recognition, elevated plus maze, and Morris water maze tests. MRI scans revealed hippocampal shrinkage in AD rats and no changes were observed from YWCS treatment. Molecular analysis revealed altered expression of LOX-5, LOX-12, Aβ, γ-secretase components, p-Tau(181), Akt, p-Akt, and p53 in AD rats. Immunofluorescence staining confirmed increased expression of LOX, Aβ, and p-Tau(181) in the hippocampus of AD rats, which was reduced by YWCS treatment. Serum LOX levels were elevated in AD rats and significantly decreased after YWCS treatment, aligning with previous findings in human AD patients and AD cell models. YWCS offered improvements in behavioral and inflammatory marker regulation and also prevented progression of the disease, as shown by MRI results. These results suggest that YWCS, by targeting LOX, has the potential to be a promising therapeutic agent for AD.

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