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Microbiota metabolized Bile Acids accelerate Gastroesophageal Adenocarcinoma via FXR inhibition

Baumeister, T.; Proano Vasco, A. I.; Metwaly, A.; Kleigrewe, K.; Kuznetsov, A.; Schoemig, L.; Borgmann, M.; Khiat, M.; Anand, A.; Boettcher, K.; Haller, D.; Dunkel, A.; Somoza, V.; Reiter, S.; Meng, C.; Thimme, R.; Schmid, R.; Patil, D.; Burgermeister, E.; Huang, Y.; Sun, Y.; Wang, H.; Wang, T. C.; Abrams, J.; Quante, M.

2024-06-12 cancer biology
10.1101/2024.06.11.598405 bioRxiv
Show abstract

BackgroundThe incidence of Barrett esophagus (BE) and Gastroesophageal Adenocarcinoma (GEAC) correlates with obesity and a diet rich in fat. Bile acids (BA) support fat digestion and undergo microbial metabolization in the gut. The farnesoid X receptor (FXR) is an important modulator of the BA homeostasis. The capacity of inhibiting cancer-related processes when activated, make FXR an appealing therapeutic target. In this work, we assess the role of diet on the microbiota-BA axis and evaluate the role of FXR in disease progression. ResultsHere we show that high fat diet (HFD) accelerated tumorigenesis in L2-IL1B mice (BE- and GEAC- mouse model) while increasing BA levels and enriching gut microbiota that convert primary to secondary BA. While upregulated in BE, expression of FXR was downregulated in GEAC in mice and humans. In L2-IL1B mice, FXR knockout enhanced the dysplastic phenotype and increased Lgr5 progenitor cell numbers. Treatment of murine organoids and L2-IL1B mice with the FXR agonist obeticholic acid (OCA) deacelerated GEAC progression. ConclusionWe provide a novel concept of GEAC carcinogenesis being accelerated via the diet-microbiome-metabolome axis and FXR inhibition on progenitor cells. Further, FXR activation protected with OCA ameliorated the phenotype in vitro and in vivo, suggesting that FXR agonists have potential as differentiation therapy in GEAC prevention. Statement of significanceIf its inhibition is linked to disease progression and its activation to cancer prevention, exploring the potential of FXR as a therapeutic target has great clinical relevance in GEAC context.

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