Probucol mitigates high-fat diet-induced cognitive and social impairments by regulating brain redox and insulin resistance

Han-ming Wu, Yang Vivian Yang, Na-Jun Huang, Li-Ping Fan, Ying-Ying Dai, Ke-Ting Hu, Tian-Yu Tang, Lin Liu, Yue Xu, Dong-Tai Liu, Ze-Xin Cai, Xiao-Yu Niu, Xin-Yi Ren, Zheng-Hao Yao, Hao-Yu Qin, Jian-Zhen Chen, Xi Huang, Cixiong Zhang, Xiang You, Chen Wang, Ying He, Wei Hong, Yu-Xia Sun, Yi-Hong Zhan, Shu-Yong Lin
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Abstract

Probucol has been utilized as a cholesterol-lowering drug with antioxidative properties. However, the impact and fundamental mechanisms of probucol in obesity-related cognitive decline are unclear. In this study, male C57BL/6J mice were allocated to a normal chow diet (NCD) group or a high-fat diet (HFD) group, followed by administration of probucol to half of the mice on the HFD regimen. Subsequently, the mice were subjected to a series of behavioral assessments, alongside the measurement of metabolic and redox parameters. Notably, probucol treatment effectively alleviates cognitive and social impairments induced by HFD in mice, while exhibiting no discernible influence on mood-related behaviors. Notably, the beneficial effects of probucol arise independently of rectifying obesity or restoring systemic glucose and lipid homeostasis, as evidenced by the lack of changes in body weight, serum cholesterol levels, blood glucose, hyperinsulinemia, systemic insulin resistance, and oxidative stress. Instead, probucol could regulate the levels of nitric oxide and superoxide-generating proteins, and it could specifically alleviate HFD-induced hippocampal insulin resistance. These findings shed light on the potential role of probucol in modulating obesity-related cognitive decline and urge reevaluation of the underlying mechanisms by which probucol exerts its beneficial effects.
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普罗布考通过调节大脑氧化还原和胰岛素抵抗减轻高脂饮食引起的认知和社交障碍
普罗布考是一种具有抗氧化特性的降胆固醇药物。然而,普罗布考对肥胖相关认知能力下降的影响和基本机制尚不清楚。在这项研究中,雄性C57BL/6J小鼠被分配到正常饲料(NCD)组或高脂饮食(HFD)组,然后给一半的高脂饮食小鼠服用丙谷酚。随后,对小鼠进行了一系列行为评估,并测量了代谢和氧化还原参数。值得注意的是,丙谷酚治疗能有效缓解高纤维食物诱导的小鼠认知和社交障碍,同时对情绪相关行为没有明显影响。值得注意的是,丙谷醇的有益作用并不依赖于纠正肥胖或恢复全身葡萄糖和脂质平衡,体重、血清胆固醇水平、血糖、高胰岛素血症、全身胰岛素抵抗和氧化应激均未发生变化就证明了这一点。相反,丙谷酚能调节一氧化氮和超氧化物生成蛋白的水平,并能特异性缓解高频分解胰岛素诱导的海马胰岛素抵抗。这些发现揭示了益普索在调节与肥胖相关的认知能力下降方面的潜在作用,并敦促人们重新评估益普索发挥其有益作用的潜在机制。
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