NARA Discovery
Article Details
← Back to Search Results
Journal Article

Investigation of the mechanism of Buyang Huanwu decoction in improving learning and memory impairment in Alzheimer's disease mice based on lipidomics

Jing Jiang; Kai Duo; Siyu Zhu; Yitong Wang; Hui Xue; Chengyu Piao; Yifan Ren; Xia Lei; Yafeng Zhang; Jianxin Liu; Lihong Yang; Ning Zhang
Journal of Natural Medicines · Vol. 79, Issue 3 · pp. 568-590 · 2025

Abstract

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. Graphical abstract

Bibliographic Information

JournalJournal of Natural Medicines
PublisherSpringer
Publication Date2025-05-01
Publication Year2025
Volume79
Issue3
Pages568-590
Document TypeJournal Article
Print ISSN1340-3443
eISSN1861-0293
DOI10.1007/s11418-025-01890-x

Access Information

NARA Access Coverage2006-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11418
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.