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An orally active carbon monoxide-releasing molecule enhances beneficial gut microbial species to combat obesity in mice

某种肠道细菌 肠道菌群 生物 代谢途径 生物化学 药理学 新陈代谢
作者
Djamal Eddine Benrahla,Shruti Mohan,Matija Trickovic,Florence Castelli,Ghida Alloul,Arielle Sobngwi,Rosa Abdiche,Silas Kieser,Vanessa Démontant,Elisabeth Trawinski,Céline Chollet,Christophe Rodriguez,Hiroaki Kitagishi,François Fenaille,Mirko Trajkovski,Roberto Motterlini,Roberta Foresti
出处
期刊:Redox biology [Elsevier BV]
卷期号:72: 103153-103153 被引量:8
标识
DOI:10.1016/j.redox.2024.103153
摘要

Carbon monoxide (CO), a gaseous signaling molecule, has shown promise in preventing body weight gain and metabolic dysfunction induced by high fat diet (HFD), but the mechanisms underlying these effects are largely unknown. An essential component in response to HFD is the gut microbiome, which is significantly altered during obesity and represents a target for developing new therapeutic interventions to fight metabolic diseases. Here, we show that CO delivered to the gut by oral administration with a CO-releasing molecule (CORM-401) accumulates in faeces and enriches a variety of microbial species that were perturbed by a HFD regimen. Notably, Akkermansia muciniphila, which exerts salutary metabolic effects in mice and humans, was strongly depleted by HFD but was the most abundant gut species detected after CORM-401 treatment. Analysis of bacterial transcripts revealed a restoration of microbial functional activity, with partial or full recovery of the Krebs cycle, β-oxidation, respiratory chain and glycolysis. Mice treated with CORM-401 exhibited normalization of several plasma and fecal metabolites that were disrupted by HFD and are dependent on Akkermansia muciniphila's metabolic activity, including indoles and tryptophan derivatives. Finally, CORM-401 treatment led to an improvement in gut morphology as well as reduction of inflammatory markers in colon and cecum and restoration of metabolic profiles in these tissues. Our findings provide therapeutic insights on the efficacy of CO as a potential prebiotic to combat obesity, identifying the gut microbiota as a crucial target for CO-mediated pharmacological activities against metabolic disorders.

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