Berberine-associated lipid-inflammatory regulation in atherosclerosis: an integrative transcriptomic, single-cell, and in vivo study.
D, Y., X, W., Y, L., Y, W., X, M., YE, W., Y, Q., Y, Q., J, C., & L, S. (2026). Berberine-associated lipid-inflammatory regulation in atherosclerosis: an integrative transcriptomic, single-cell, and in vivo study.. Functional & integrative genomics. https://doi.org/10.1007/s10142-026-02019-3
D Y, X W, Y L, Y W, X M, YE W, et al. Berberine-associated lipid-inflammatory regulation in atherosclerosis: an integrative transcriptomic, single-cell, and in vivo study.. Functional & integrative genomics. 2026; doi: 10.1007/s10142-026-02019-3
D Y, X W, Y L, et al. Berberine-associated lipid-inflammatory regulation in atherosclerosis: an integrative transcriptomic, single-cell, and in vivo study.[J]. Functional & integrative genomics. 2026. DOI: 10.1007/s10142-026-02019-3.
@article{d2026,
author = {Yao D and Wang X and Li Y and Wang Y and Mao X and Wang YE and Qi Y and Qiu Y and Chen J and Shu L},
title = {Berberine-associated lipid-inflammatory regulation in atherosclerosis: an integrative transcriptomic, single-cell, and in vivo study.},
journal = {Functional & integrative genomics},
year = {2026},
doi = {10.1007/s10142-026-02019-3},
note = {PMID: 42645604},
}
TY - JOUR AU - Yao D AU - Wang X AU - Li Y AU - Wang Y AU - Mao X AU - Wang YE AU - Qi Y AU - Qiu Y AU - Chen J AU - Shu L TI - Berberine-associated lipid-inflammatory regulation in atherosclerosis: an integrative transcriptomic, single-cell, and in vivo study. T2 - Functional & integrative genomics PY - 2026 DO - 10.1007/s10142-026-02019-3 AN - PMID:42645604 ER -
Atherosclerotic plaques combine disturbed lipid metabolism with myeloid inflammation, yet the human plaque context of berberine (BBR)-related targets remains poorly defined. Paired GSE43292 samples were used to characterize plaque-associated changes, GSE100927 to test reproducibility, and GSE159677 to resolve their cellular distribution. Network pharmacology prioritized BBR-atherosclerosis candidates, with molecular docking and 100-ns molecular dynamics used for structural evaluation. High-fat diet-fed ApoE-/- mice received BBR or nanoliposomal BBR (BNL), with atorvastatin as a comparator. In GSE43292, inflammatory response, TNFA signaling via NF-κB, cholesterol homeostasis, and fatty acid metabolism were enriched in plaques. GSE100927 reproduced inflammatory response at the pathway level; ABCA1, CD36, IL1B, and TNF showed concordant expression changes. ABCA1, CD36, and IL1B were detected mainly in monocyte/macrophage and other myeloid populations. Inflammatory macrophages showed larger disease-control differences in inflammatory response and TNFA/NF-κB module scores. Among 70 overlapping BBR-atherosclerosis targets, PPARG was retained for further evaluation. The predicted BBR-PPARγ pose remained relatively stable during simulation. In mice, BBR and BNL lowered serum total cholesterol and low-density lipoprotein cholesterol, reduced hepatic IL-1β, IL-6, and TNF-α, and attenuated liver lipid deposition. Hepatic PPARγ increased significantly only in the BNL group. These findings delineate the myeloid cellular context of lipid- and inflammation-related signals in human plaques and show that BBR and BNL improve selected lipid and hepatic inflammatory measures in ApoE-/- mice. PPARG remains a candidate for functional investigation.