The gut microbiome in chemotherapy-induced fatigue: Exploring clinical associations and modulation via fecal microbiota transplantation in female mice
Abstract
Background Fatigue is a common and debilitating side effect of chemotherapy, negatively affecting treatment adherence and survival. Chemotherapy alters gut microbiome composition, and accumulating evidence suggests that gut microbes contribute to chemotherapy-induced fatigue. Because the gut microbiome is modifiable through targeted interventions, such as fecal microbiota transplantation (FMT), microbiome modulation has emerged as a potential strategy to mitigate treatment-related toxicities. To understand the impact of FMT interventions across the gut-brain axis, studying rodent chemotherapy models that simultaneously capture behavioral side effects and gastrointestinal pathology is warranted. Methods Patient-reported fatigue and diarrhea were assessed in breast cancer patients before and during chemotherapy ( n = 67). In parallel, mice were treated with chemotherapy (5-fluorouracil [5-FU] or paclitaxel) with or without FMT derived from pre-chemotherapy fecal material. Outcomes included fatigue (in-cage locomotion and voluntary wheel running), gut microbiome composition (16S rRNA sequencing), intestinal and brain gene/protein expression (RT-qPCR, single-cell RNA sequencing, and/or multiplex electrochemiluminescence assay), and circulating inflammatory markers. Results In patients, increased fatigue during chemotherapy was associated with worse diarrhea and shifts in gut microbiome composition. In mice receiving 5-FU, FMT produced mild-to-moderate benefits, most notably preserving body mass, with milder and transient benefits for fatigue. FMT partially normalized gut bacterial taxa, reduced 5-FU-induced colonic Il1b expression, and prevented chemotherapy-related increases in brain Aqp4 . FMT did not attenuate other inflammatory effects induced by 5-FU or paclitaxel. Conclusion These findings are consistent with a role for gut microbes in chemotherapy-induced fatigue and suggest that FMT is not universally beneficial, with effects varying by chemotherapy drug.
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Authors: Ángela del Águila, Jeremy Beales, Jana Fisher, Nicholas R. Lozier, Krithika Dama, Y. Valentine, Zoe M. Tapp, Sagar D. Sardesai, Nicole O. Williams, Margaret E. Gatti-Mays, Daniel G. Stover, Preeti K. Sudheendra, Robert Wesolowski, Audrey F. Duff, Ai Ni, Michael T. Bailey, Leah M. Pyter
Institutions: The Ohio State University Wexner Medical Center, The Ohio State University, Nationwide Children's Hospital