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Role of Gut Microbiome in Cancer Treatment
Vijay Mishra1, Yachana Mishra2
1School of Pharmaceutical Sciences, Lovely Professional University, Phagwara, Punjab 144411 India.
Abstract:
The gut microbiota influences the effectiveness and side effects of cancer treatments, particularly immunotherapy and associated immune-related complications. This important involvement of the microbiome is supported by the patients receiving antibiotics responding poorly to immunotherapy. Relatively few research has examined the underlying processes, and until recently, data regarding the detection of the microbial organisms that trigger these effects were inconsistent. Since then, a deeper comprehension of the processes of action and taxonomic classification of the relevant species has been attained. It's been demonstrated that certain bacterial species can enhance the body's reaction to immune checkpoint inhibitors through the release of distinct metabolites or products. Nonetheless, in certain patients who are not responding, Gram-negative bacteria may have a dominating suppressive impact. Patients' propensity to react to immunotherapy can be somewhat accurately predicted by machine learning techniques based on their microbiome makeup. Consequently, there has been an increase in interest in modifying the microbiome makeup to enhance patient reaction to medication. Clinical proof-of-concept studies demonstrate that dietary modifications or fecal microbiota transplantation (FMT) might be used therapeutically to increase the efficacy of immunotherapy in cancer patients. Current developments and new approaches for microbiota-based cancer treatments have been emphasized. In conclusion, preclinical research on animals and human clinical trials has made tremendous progress in our understanding of the function of the gut microbiome in health and illness. These investigations have shed light on the effects of food, FMT, probiotics, prebiotics, and microbiome-disease connections. However, there are still a lot of issues and restrictions that must be resolved before this research can be used in real-world clinical settings.
Insights
The gut microbiome significantly impacts cancer immunotherapy effectiveness and side effects. Modulating the gut microbiota through diet or fecal microbiota transplantation (FMT) shows promise for improving patient responses.
Area of Science:
- Oncology
- Microbiology
- Immunology
Background:
- The gut microbiota plays a crucial role in cancer treatment efficacy, particularly with immunotherapy.
- Antibiotic use in patients correlates with poorer immunotherapy outcomes, highlighting the microbiome's influence.
- Understanding the specific microbial mechanisms and species involved in immunotherapy response is an active area of research.
Purpose of the Study:
- To review current understanding of the gut microbiome's impact on cancer immunotherapy.
- To explore the mechanisms by which microbes influence treatment response and side effects.
- To discuss emerging therapeutic strategies targeting the microbiome to enhance cancer treatment.
Main Methods:
- Review of preclinical animal studies and human clinical trials.
- Analysis of machine learning models predicting immunotherapy response based on microbiome composition.
- Examination of evidence for dietary interventions and fecal microbiota transplantation (FMT).
Main Results:
- Specific bacterial species and their metabolites can enhance response to immune checkpoint inhibitors.
- Gram-negative bacteria may suppress immunotherapy response in non-responding patients.
- Machine learning models can predict patient response to immunotherapy using microbiome data.
Conclusions:
- The gut microbiome is a critical factor in cancer immunotherapy success.
- Therapeutic manipulation of the microbiome, via diet or FMT, offers potential to improve immunotherapy efficacy.
- Further research is needed to overcome challenges before widespread clinical application.
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