Berberine: A Negentropic Modulator for Multi-System Coordination
Xiaolian Tian, Qingbo Chen, Yingying He, Yangyang Cheng, Mengyu Zhao, Yuanbin Li, Meng Yu, Jiandong Jiang, Lulu Wang

TL;DR
Berberine helps coordinate multiple body systems to improve metabolism and inflammation by acting as a systems-level modulator.
Contribution
Berberine is identified as a negentropic modulator that restores coordination across metabolic, immune, and microbial systems.
Findings
Berberine's effects are mediated through an AMPK-centered hub integrating metabolic and inflammatory signals.
Berberine improves gut barrier function, microbial balance, and redox homeostasis.
Combination therapies with berberine show enhanced efficacy in metabolic and inflammatory conditions.
Abstract
Berberine (BBR), a protoberberine alkaloid with a long history of medicinal use, has consistently demonstrated benefits in glucose–lipid metabolism and inflammatory balance across both preclinical and human studies. These diverse effects are not mediated by a single molecular target but by BBR’s capacity to restore network coordination among metabolic, immune, and microbial systems. At the core of this regulation is an AMP-activated Protein Kinase (AMPK)-centered mechanistic hub, integrating signals from insulin and nutrient sensing, Sirtuin 1/3 (SIRT1/3)-mediated mitochondrial adaptation, and inflammatory pathways such as nuclear Factor Kappa-light-chain-enhancer of Activated B cells (NF-κB) and NOD-, LRR- and Pyrin Domain-containing Protein 3 (NLRP3). This hub is dynamically regulated by system-level inputs from the gut, mitochondria, and epigenome, which in turn strengthen intestinal…
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Taxonomy
TopicsBerberine and alkaloids research · Autophagy in Disease and Therapy · Alkaloids: synthesis and pharmacology
