Highlights
• Human Gut Metabolome-Microbiome Atlas in HAP: Metabolomic and metagenomic profiling of HAP patients uncovered a striking depletion of caffeine levels (3.2-fold vs. HTG controls, p<0.001), inversely correlated with disease severity (Spearman’s ρ = -0.74, p<0.0001).
• Microbiota-Dependent Therapeutic Efficacy: caffeine’s protective effects in HAP mice (reducing pancreatic necrosis by 68%, p<0.01) were abolished upon microbiota ablation, establishing gut microbes as indispensable mediators.
• Faecalibacterium prausnitzii as a caffeine-Responsive Keystone Species: This anti-inflammatory commensal, depleted 5.1-fold in HAP patients (p<0.001), was identified as the primary driver of caffeine’s efficacy through fecal microbiota transplantation (FMT) and mono-colonization experiments.
• Mechanistic Breakthrough – TLR4/NLRP3 Signaling Axis: Multi-tissue RNA-seq and TLR4-/- models revealed caffeine suppresses gut barrier disruption by inhibiting TLR4-dependent NLRP3 inflammasome activation (IL-1β ↓72%, p<0.001), linking microbial modulation to systemic inflammation resolution.
• Direct Clinical Translation: We propose caffeine as the nutritional intervention targeting the gut-pancreas axis for HAP, supported by dose-response validation and safety profiling in preclinical models.

京公网安备11010802044758号
Comments on this article