Related Experiment Video
Updated: Jan 12, 2026

Quantitative 3D In Silico Modeling q3DISM of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease
Published on: December 26, 2016
Myricetin Suppresses Inflammatory Th17 Polarization to Mitigate Alzheimer's Disease Pathogenesis
Yufei Li1,2, Ao Sun1,2, Jingjing Han1,3
1Department of Basic Medical Science, Jiangsu Medical College, Yancheng, Jiangsu, China.
Aims:
This study aimed to investigate the therapeutic potential of myricetin, a natural flavonoid, in Alzheimer's disease (AD) by targeting Th17 cell-mediated neuroinflammation through inhibition of the transcription factor RORγt.
Methods:
Virtual screening of 47,963 compounds identified myricetin as a potential RORγt inhibitor, validated by molecular docking and dynamics simulations. In vivo, 3xTg-AD mice were treated with myricetin (50 mg/kg/day) for 8.5 weeks, followed by behavioral tests (novel object recognition, Morris water maze) and pathological analyses (HE/Nissl staining, immunohistochemistry, Western blot). In vitro, Th17 polarization assays and mechanistic studies (ChIP, EMSA, MST) were performed to elucidate myricetin's action on RORγt-IL-17 signaling.
Results:
Myricetin exhibited stable binding to RORγt (Kd = 6.40 μM), suppressing Th17 polarization and IL-17 production. In AD mice, myricetin improved cognitive function, reduced neuronal damage, decreased Aβ plaques and phosphorylated tau levels, and attenuated microglial activation. Mechanistically, myricetin blocked RORγt recruitment to the IL17 promoter, downregulating IL-17 transcription.
Conclusion:
Myricetin ameliorates AD pathology by inhibiting RORγt-driven Th17 polarization, highlighting its potential as a therapeutic agent for AD.
More Related Videos
Related Concept Videos
Alzheimer's Disease: Treatment
Alzheimer's Disease: Overview
The clinical diagnosis of AD hinges on the presence of memory and other cognitive impairments. Biomarkers, such as changes in Aβ...
T Cell Types and Functions
Th1 cells stimulate dendritic cells to express necessary co-stimulatory molecules on their surfaces for...
Atherosclerosis III: Management

