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Published on: August 30, 2019
The Gut Microbiome as a Biomarker and Therapeutic Target of Immune Checkpoint Inhibitors: A Review for Oncologists
Thiti Susiriwatananont1,2, Panuch Eiamprapaporn2,3, Maria Vazquez Roque4
1Division of Medical Oncology, Department of Medicine, Faculty of Medicine, Chulalongkorn University and The King Chulalongkorn Memorial Hospital, Bangkok 10330, Thailand.
Abstract:
Immune checkpoint inhibitors (ICIs) have transformed cancer therapy, yet their benefits remain limited to a subset of patients, underscoring the need for more reliable biomarkers and novel therapeutic strategies. The gut microbiome has emerged as a critical modulator of systemic immunity and a promising determinant of ICI response. Evidence links specific microbial features, taxa, and bioactive metabolites to enhanced antitumor immunity, whereas disruptions, such as antibiotic exposure, are associated with poorer outcomes. Advances in sequencing and multi-omics technologies have provided more profound insights into microbiome-immune crosstalk, though methodological heterogeneity continues to challenge reproducibility. Translational studies demonstrate that microbiome-based intervention, including fecal microbiota transplantation (FMT), biotics supplementation, and engineered microbial strains, can enhance ICI efficacy or mitigate immune-related toxicities. Despite encouraging early clinical signals, broader implementation requires methodological rigor, standardized protocols, and innovative trial designs that account for host and environmental factors. For clinicians, the most immediate strategies involve prudent antibiotic stewardship and patient enrollment in microbiome-focused clinical trials. Overall, the gut microbiome is a promising biomarker and a therapeutic target, representing a new frontier for personalizing immunotherapy and improving patient outcomes in oncology.
Insights
The gut microbiome influences cancer immunotherapy effectiveness. Modulating the gut microbiome, through interventions like fecal microbiota transplantation, shows promise for improving patient outcomes and personalizing cancer treatment.
Area of Science:
- Oncology
- Immunology
- Microbiome Research
Background:
- Immune checkpoint inhibitors (ICIs) have revolutionized cancer therapy but benefit only a subset of patients.
- The gut microbiome significantly impacts systemic immunity and response to ICIs.
- Specific microbial compositions and metabolites correlate with enhanced antitumor immunity.
Purpose of the Study:
- To explore the role of the gut microbiome as a biomarker for ICI response.
- To investigate microbiome-based interventions for enhancing ICI efficacy and managing toxicities.
- To highlight the potential of microbiome modulation in personalizing cancer immunotherapy.
Main Methods:
- Review of current literature on microbiome-immune interactions in cancer.
- Analysis of multi-omics data and sequencing technologies for microbiome insights.
- Examination of translational studies on microbiome-based interventions (e.g., FMT, probiotics).
Main Results:
- Gut microbiome composition is linked to ICI efficacy and immune-related adverse events.
- Antibiotic exposure is associated with diminished ICI response.
- Microbiome-targeted interventions demonstrate potential to improve ICI outcomes in preclinical and early clinical studies.
Conclusions:
- The gut microbiome is a critical factor in cancer immunotherapy response and a potential therapeutic target.
- Standardized protocols and rigorous trial designs are needed for microbiome-based interventions.
- Prudent antibiotic stewardship and enrollment in microbiome trials are immediate clinical strategies.
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