Alzheimer's disease (AD) is a neurodegenerative disorder characterized by progressive cognitive impairment, and there remains a lack of effective treatments capable of reversing or significantly slowing disease progression. Accumulating evidence indicates that the immune function of microglia, the resident immune cells of the central nervous system, is a critical factor in regulating AD pathogenesis. Emerging research in immunometabolism further reveals that glucose metabolic reprogramming serves as a central driver of microglial phenotypic and functional differentiation. This review systematically outlines the fundamental characteristics of microglial glucose metabolism and focuses on how the dynamic metabolic reprogramming it undergoes during AD progression regulates microglial immune behavior and inflammatory responses. Building on this, we further summarize key regulatory targets within the "metabolism-immune axis" and corresponding pharmacological intervention strategies. Finally, this article discusses current challenges and future research directions in the field of microglial immunometabolism. This review aims to provide a theoretical foundation for AD intervention strategies targeting the "metabolism-immune axis" and to offer insights for the development of novel disease-modifying therapeutics.
Qingyu Cao, Mengmeng Shen, Yan Liu et al.· Journal of Alzheimer's Disea...· 0 citations
Hemorrhoids are commonly associated with inflammatory manifestations. Puji Zhichuang suppositories (PJZC) have been widely applied in the treatment of hemorrhoids; however, their underlying therapeutic mechanisms remain insufficiently understood. Therefore, this study investigated the mechanisms of PJZC in inflammatory hemorrhoids using network pharmacology, 16 S rDNA sequencing, and fecal metabolomics analyses. First, the anti-inflammatory effects of PJZC were validated by evaluating perianal diameter, anorectal coefficient, TNF-α and IL-6 levels, intestinal barrier integrity, and damage-associated molecular patterns (DAMPs). Subsequent multi-omics analyses demonstrated that PJZC exert anti-inflammatory effects may involve reduced PI3K-Akt signaling pathway, gut microbiota composition and metabolic profiles. Finally, molecular docking analysis predicted that the core targets and active ingredients may be closely related to ITGB1, EGFR, and bile acids.
Min Yang, Hongbao Liang, Jian Li et al.· Scientific Reports· 0 citations