Prolonged Suppression of Butyrate-Producing Bacteria Is Associated With Acute Gastrointestinal Graft-vs-Host Disease and Transplantation-Related Mortality After Allogeneic Stem Cell Transplantation

Abstract Background Butyrogenic bacteria play an important role in gut microbiome homeostasis and intestinal epithelial integrity. Previous studies have demonstrated an association between administration of short-chain fatty acids like butyrate and protection from acute graft-vs-host disease (GvHD)...

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Veröffentlicht in:Clinical infectious diseases 2022-03, Vol.74 (4), p.614-621
Hauptverfasser: Meedt, Elisabeth, Hiergeist, Andreas, Gessner, André, Dettmer, Katja, Liebisch, Gerhard, Ghimire, Sakhila, Poeck, Hendrik, Edinger, Matthias, Wolff, Daniel, Herr, Wolfgang, Holler, Ernst, Weber, Daniela
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Sprache:eng
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Zusammenfassung:Abstract Background Butyrogenic bacteria play an important role in gut microbiome homeostasis and intestinal epithelial integrity. Previous studies have demonstrated an association between administration of short-chain fatty acids like butyrate and protection from acute graft-vs-host disease (GvHD) after allogeneic stem cell transplantation (ASCT). Methods In the current study, we examined the abundance and butyrogenic capacity of butyrate-producing bacteria in 28 healthy donors and 201 patients after ASCT. We prospectively collected serial stool samples and performed polymerase chain reaction analysis of the butyrate-producing bacterial enzyme butyryl–coenzyme A (CoA):acetate CoA-transferase (BCoAT) in fecal nucleic acid extracts. Results Our data demonstrate a strong and prolonged suppression of butyrogenic bacteria early in the course of ASCT. In a multivariable analysis, early use of broad-spectrum antibiotics before day 0 (day of transplantation) was identified as an independent factor associated with low BCoAT copy numbers (odds ratio, 0.370 [95% confidence interval, .175–.783]; P = .009). Diminished butyrogens correlated with other biomarkers of microbial diversity, such as low 3-indoxylsulfate levels, reduced abundance of Clostridiales and low inverse Simpson and effective Shannon indices (all P 
ISSN:1058-4838
1537-6591
DOI:10.1093/cid/ciab500