{"title":"基于脂质组学研究补阳还五汤改善阿尔茨海默病小鼠学习记忆障碍的机制。","authors":"Jing Jiang, Kai Duo, Siyu Zhu, Yitong Wang, Hui Xue, Chengyu Piao, Yifan Ren, Xia Lei, Yafeng Zhang, Jianxin Liu, Lihong Yang, Ning Zhang","doi":"10.1007/s11418-025-01890-x","DOIUrl":null,"url":null,"abstract":"<p><p>In this study, a lipid disorder Alzheimer's disease (AD) model was developed with high-fat diet and D-galactose injected intraperitoneally (HFD & D-gal) to evaluate the activities of Buyang Huanwu Decoction (BYHWD) compared with donepezil hydrochloride. The learning and memory abilities of BYHWD were evaluated by Morris water maze test (MWM). The lipid levels in serum, histopathology, and immunohistochemistry of hyperphosphorylated tau protein in hippocampal neurons were conducted to prove the therapy effects of BYHWD. After the identification of constituents absorbed into the brain using LC-MS, UPLC-TQ-MS was employed to analyze endogenous lipid metabolites in the hippocampi of mice. Based on the validated differential markers identified through lipidomics analysis, we further substantiated potential therapeutic pathway of BYHWD through the application of molecular docking technology. The mechanism underlying BYHWD was subsequently confirmed by palmitic acid-injured HT22 cells. The results showed that BYHWD significantly improved the cognitive deficits and regulated the lipid levels of HFD & D-gal mice. BYHWD also protected the neuronal cell condition of hippocampal neurons, increased the density of dendritic spines, and reduced the expression of P-tau. Lipidomics revealed that 41 differential lipid metabolites were retuned after BYHWD administration, and this change may be related to the PPARγ pathway. Calycosin-7-glucoside showed good interaction with PPARγ in vivo composition analysis. Calycosin-7-glucoside increased the mRNA expression levels of lipid metabolism-related enzymes and PPARγ, as well as the expression of PPARγ protein in vitro study. BYHWD activated the PPARγ pathway to induce peroxisome proliferation and regulated lipid metabolism disorders in the AD mice brain.</p>","PeriodicalId":654,"journal":{"name":"Journal of Natural Medicines","volume":" ","pages":""},"PeriodicalIF":2.5000,"publicationDate":"2025-04-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Investigation of the mechanism of Buyang Huanwu decoction in improving learning and memory impairment in Alzheimer's disease mice based on lipidomics.\",\"authors\":\"Jing Jiang, Kai Duo, Siyu Zhu, Yitong Wang, Hui Xue, Chengyu Piao, Yifan Ren, Xia Lei, Yafeng Zhang, Jianxin Liu, Lihong Yang, Ning Zhang\",\"doi\":\"10.1007/s11418-025-01890-x\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>In this study, a lipid disorder Alzheimer's disease (AD) model was developed with high-fat diet and D-galactose injected intraperitoneally (HFD & D-gal) to evaluate the activities of Buyang Huanwu Decoction (BYHWD) compared with donepezil hydrochloride. 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引用次数: 0
摘要
本研究采用高脂饮食和腹腔注射d -半乳糖(HFD & D-gal)建立脂质紊乱性阿尔茨海默病(AD)模型,比较补阳还五汤(BYHWD)与盐酸多奈哌齐的活性。采用Morris水迷宫试验(Morris water maze test, MWM)评价大鼠的学习记忆能力。通过血清脂质水平、组织病理学和海马神经元中tau蛋白高磷酸化的免疫组化来证明BYHWD的治疗效果。在LC-MS鉴定入脑成分后,采用UPLC-TQ-MS分析小鼠海马内源性脂质代谢物。基于脂质组学分析鉴定的鉴别标记,我们通过分子对接技术进一步证实了BYHWD的潜在治疗途径。随后,棕榈酸损伤的HT22细胞证实了BYHWD的机制。结果表明,BYHWD显著改善了HFD和D-gal小鼠的认知缺陷,并调节了脂质水平。BYHWD还能保护海马神经元的神经元细胞状态,增加树突棘的密度,降低P-tau的表达。脂质组学显示,服用BYHWD后,有41种不同的脂质代谢物被恢复,这种变化可能与PPARγ途径有关。体内成分分析表明,毛蕊异黄酮-7-葡萄糖苷与PPARγ具有良好的相互作用。体外研究表明,毛蕊异黄酮-7-葡萄糖苷增加了脂质代谢相关酶和PPARγ mRNA表达水平以及PPARγ蛋白的表达。BYHWD激活PPARγ通路,诱导过氧化物酶体增殖,调节AD小鼠脑脂质代谢紊乱。
Investigation of the mechanism of Buyang Huanwu decoction in improving learning and memory impairment in Alzheimer's disease mice based on lipidomics.
In this study, a lipid disorder Alzheimer's disease (AD) model was developed with high-fat diet and D-galactose injected intraperitoneally (HFD & D-gal) to evaluate the activities of Buyang Huanwu Decoction (BYHWD) compared with donepezil hydrochloride. The learning and memory abilities of BYHWD were evaluated by Morris water maze test (MWM). The lipid levels in serum, histopathology, and immunohistochemistry of hyperphosphorylated tau protein in hippocampal neurons were conducted to prove the therapy effects of BYHWD. After the identification of constituents absorbed into the brain using LC-MS, UPLC-TQ-MS was employed to analyze endogenous lipid metabolites in the hippocampi of mice. Based on the validated differential markers identified through lipidomics analysis, we further substantiated potential therapeutic pathway of BYHWD through the application of molecular docking technology. The mechanism underlying BYHWD was subsequently confirmed by palmitic acid-injured HT22 cells. The results showed that BYHWD significantly improved the cognitive deficits and regulated the lipid levels of HFD & D-gal mice. BYHWD also protected the neuronal cell condition of hippocampal neurons, increased the density of dendritic spines, and reduced the expression of P-tau. Lipidomics revealed that 41 differential lipid metabolites were retuned after BYHWD administration, and this change may be related to the PPARγ pathway. Calycosin-7-glucoside showed good interaction with PPARγ in vivo composition analysis. Calycosin-7-glucoside increased the mRNA expression levels of lipid metabolism-related enzymes and PPARγ, as well as the expression of PPARγ protein in vitro study. BYHWD activated the PPARγ pathway to induce peroxisome proliferation and regulated lipid metabolism disorders in the AD mice brain.
期刊介绍:
The Journal of Natural Medicines is an international journal publishing original research in naturally occurring medicines and their related foods and cosmetics. It covers:
-chemistry of natural products
-biochemistry of medicinal plants
-pharmacology of natural products and herbs, including Kampo formulas and traditional herbs
-botanical anatomy
-cultivation of medicinal plants.
The journal accepts Original Papers, Notes, Rapid Communications and Natural Resource Letters. Reviews and Mini-Reviews are generally invited.