Targeting the gut and tumor microbiome in cancer treatment resistance
Sona Ciernikova1, Aneta Sevcikova1, Michal Mego2
1Department of Genetics, Cancer Research Institute, Biomedical Research Center of the Slovak Academy of Sciences, Bratislava, Slovakia.
Abstract:
Therapy resistance represents a significant challenge in oncology, occurring in various therapeutic approaches. Recently, animal models and an increasing set of clinical trials highlight the crucial impact of the gut and tumor microbiome on treatment response. The intestinal microbiome contributes to cancer initiation, progression, and formation of distant metastasis. In addition, tumor-associated microbiota is considered a critical player in influencing tumor microenvironments and regulating local immune processes. Intriguingly, numerous studies have successfully identified pathogens within the gut and tumor microbiome that might be linked to a poor response to different therapeutic modalities. The unfavorable microbial composition with the presence of specific microbes participates in cancer resistance and progression via several mechanisms, including upregulation of oncogenic pathways, macrophage polarization reprogramming, metabolism of chemotherapeutic compounds, autophagy pathway modulation, enhanced DNA damage repair, inactivation of a proapoptotic cascade, and bacterial secretion of extracellular vesicles, promoting the processes in the metastatic cascade. Targeted elimination of specific intratumoral bacteria appears to enhance treatment response. However, broad-spectrum antibiotic pretreatment is mostly connected to reduced efficacy due to gut dysbiosis and lower diversity. Mounting evidence supports the potential of microbiota modulation by probiotics and fecal microbiota transplantation to improve intestinal dysbiosis and increase microbial diversity, leading to enhanced treatment efficacy while mitigating adverse effects. In this context, further research concerning the identification of clinically relevant microbiome signatures followed by microbiota-targeted strategies presents a promising approach to overcoming immunotherapy and chemotherapy resistance in refractory patients, improving their outcomes.
Insights
The gut microbiome significantly impacts cancer treatment response. Modulating the microbiome with probiotics or fecal transplants may improve outcomes for patients resistant to therapies.
Area of Science:
- Oncology
- Microbiology
- Immunology
Background:
- Therapy resistance is a major challenge in cancer treatment.
- The gut and tumor microbiome critically influence treatment response, cancer progression, and metastasis.
- Specific microbial compositions are linked to poor treatment outcomes.
Purpose of the Study:
- To review the role of the gut and tumor microbiome in cancer therapy resistance.
- To explore mechanisms by which microbiota affects treatment efficacy.
- To highlight potential microbiota-targeted strategies for overcoming resistance.
Main Methods:
- Review of existing animal models and clinical trial data.
- Analysis of studies identifying microbial roles in cancer initiation, progression, and metastasis.
- Examination of mechanisms linking microbiota to resistance (e.g., oncogenic pathways, immune modulation, drug metabolism).
Main Results:
- Unfavorable microbial compositions can drive cancer resistance through various mechanisms.
- Targeted elimination of intratumoral bacteria may improve treatment response.
- Broad-spectrum antibiotics can reduce efficacy by causing gut dysbiosis.
- Microbiota modulation (probiotics, fecal microbiota transplantation) shows potential to enhance efficacy and reduce side effects.
Conclusions:
- Microbiota plays a crucial role in cancer therapy resistance and progression.
- Targeted microbiome modulation strategies offer a promising avenue to improve outcomes for refractory cancer patients.
- Further research into microbiome signatures and targeted interventions is warranted to overcome resistance to immunotherapy and chemotherapy.
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