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Gut virome and metabolic associations in patients with acute pancreatitis
Min Liu1, Lvyue Wang1, Jianjun Liu2
1Department of Critical Care Medicine, The Second Hospital of Nanjing, Affiliated to Nanjing University of Chinese Medicine, Nanjing, China.
Abstract:
Acute pancreatitis (AP) is a frequent inflammatory disorder with outcomes ranging from mild disease to severe forms marked by infection and organ failure. Gut microenvironment disruption and barrier dysfunction are increasingly recognized as key drivers of AP progression, yet most microbiome studies have focused on bacteria. The gut virome modulates bacterial ecology and host immune responses and remains poorly characterized in AP. We aimed to comprehensively profile virome alterations in AP and evaluate their associations with disease severity, etiology, and clinical parameters. Metagenomic sequencing data from AP patients and healthy controls (HCs) were analyzed using the viromic tools. Viral diversity, taxonomy, functional composition, and predicted viral-host linkages were profiled. Microbial-viral-metabolite networks were constructed, and classification performance was evaluated using random forest models. AP viromes exhibited significantly reduced Shannon and Simpson diversity and distinct β-diversity separation from HCs. AP-enriched phages predominantly targeted Parabacteroides, Escherichia, and Bacteroides, while HC-enriched phages were linked to SCFA-producing commensals. Functional analysis revealed enrichment of replication- and lysis-related auxiliary metabolic genes (AMGs) in AP-enriched viral operational taxonomic units (vOTUs), whereas HC-associated vOTUs carried stability-related functions. Severity- and etiology-stratified analyses indicated consistent enrichment of Peduoviridae infecting Enterobacteriaceae and higher prevalence of eukaryotic viruses in advanced stages. Network analyses revealed denser microbial-viral-metabolite interactions in AP, correlated with hepatobiliary and lipid metabolic markers. A minimal seven-virus panel achieved an AUC of 97.5% for AP classification. AP is characterized by profound gut virome remodeling reflecting disease severity and etiology, with diagnostic and mechanistic relevance for future therapeutic strategies.IMPORTANCEThis study highlights the gut virome as a previously underappreciated component of acute pancreatitis (AP)-associated dysbiosis and suggests that viral communities may influence disease severity and metabolic disturbances beyond bacterial effects alone. By demonstrating the diagnostic potential of virome-based signatures, our findings support expanding microbiome research in AP to include viral components, with implications for improved disease stratification and future therapeutic development.
Insights
The gut virome is significantly altered in acute pancreatitis (AP), showing reduced diversity and distinct viral communities. These changes correlate with disease severity and can help classify AP, offering new diagnostic and therapeutic avenues.
Area of Science:
- Microbiology and Virology
- Gastroenterology
- Systems Biology
Background:
- Acute pancreatitis (AP) is a significant inflammatory condition with severe outcomes.
- Gut barrier dysfunction is crucial in AP, but the virome's role is understudied.
- Bacterial dysbiosis is known, yet viral community shifts in AP require comprehensive profiling.
Purpose of the Study:
- To comprehensively profile gut virome alterations in acute pancreatitis (AP) patients.
- To assess associations between virome changes, AP severity, etiology, and clinical parameters.
- To explore the diagnostic potential of gut virome signatures in AP.
Main Methods:
- Metagenomic sequencing of gut viromes from AP patients and healthy controls (HCs).
- Bioinformatic analysis of viral diversity, taxonomy, function, and predicted viral-host interactions.
- Construction of microbial-viral-metabolite networks and machine learning for classification.
Main Results:
- AP viromes showed significantly reduced viral diversity and distinct community composition compared to HCs.
- AP-associated phages targeted specific bacteria, while HC-associated phages linked to commensals; viral functional genes differed.
- A seven-virus panel achieved 97.5% accuracy in classifying AP, correlating with disease severity and metabolic markers.
Conclusions:
- Acute pancreatitis is characterized by profound gut virome remodeling linked to disease severity and etiology.
- Gut virome alterations represent a potential biomarker for AP diagnosis and stratification.
- Understanding the virome's role in AP offers new insights into pathogenesis and therapeutic strategies.
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