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Characterization and Functional Prediction of Bacteria in Ovarian Tissues
Published on: October 23, 2021
Microbiome in Cancer Development and Treatment
Sona Ciernikova1, Aneta Sevcikova1, Beata Mladosievicova2
1Department of Genetics, Cancer Research Institute, Biomedical Research Center of the Slovak Academy of Sciences, Dubravska cesta 9, 845 05 Bratislava, Slovakia.
Abstract:
Targeting the microbiome, microbiota-derived metabolites, and related pathways represents a significant challenge in oncology. Microbiome analyses have confirmed the negative impact of cancer treatment on gut homeostasis, resulting in acute dysbiosis and severe complications, including massive inflammatory immune response, mucosal barrier disruption, and bacterial translocation across the gut epithelium. Moreover, recent studies revealed the relationship between an imbalance in the gut microbiome and treatment-related toxicity. In this review, we provide current insights into the role of the microbiome in tumor development and the impact of gut and tumor microbiomes on chemo- and immunotherapy efficacy, as well as treatment-induced late effects, including cognitive impairment and cardiotoxicity. As discussed, microbiota modulation via probiotic supplementation and fecal microbiota transplantation represents a new trend in cancer patient care, aiming to increase bacterial diversity, alleviate acute and long-term treatment-induced toxicity, and improve the response to various treatment modalities. However, a more detailed understanding of the complex relationship between the microbiome and host can significantly contribute to integrating a microbiome-based approach into clinical practice. Determination of causal correlations might lead to the identification of clinically relevant diagnostic and prognostic microbial biomarkers. Notably, restoration of intestinal homeostasis could contribute to optimizing treatment efficacy and improving cancer patient outcomes.
Insights
The gut microbiome significantly impacts cancer treatment outcomes and toxicity. Modulating the microbiome through probiotics or fecal transplants may improve treatment efficacy and patient health.
Area of Science:
- Oncology
- Microbiology
- Immunology
Background:
- Cancer treatments negatively affect gut homeostasis, causing dysbiosis and complications like inflammation and bacterial translocation.
- Gut microbiome imbalance is linked to increased treatment-related toxicity.
- The microbiome influences tumor development and response to cancer therapies.
Purpose of the Study:
- To review the role of the microbiome in cancer development.
- To examine the impact of gut and tumor microbiomes on chemotherapy and immunotherapy efficacy.
- To discuss microbiota modulation strategies for cancer patient care.
Main Methods:
- Literature review of current research on the microbiome in oncology.
- Analysis of studies investigating the relationship between gut microbiota and treatment toxicity.
- Exploration of microbiota modulation techniques.
Main Results:
- Microbiome alterations negatively impact cancer treatment outcomes.
- Gut dysbiosis contributes to severe treatment complications and late effects.
- Microbiota modulation shows promise in improving treatment response and reducing toxicity.
Conclusions:
- Understanding the microbiome-host relationship is crucial for clinical integration.
- Microbiota modulation can enhance treatment efficacy and patient outcomes.
- Identifying microbial biomarkers may aid in diagnosis and prognosis.
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