The Tissue-Dependent Role of Akkermansia muciniphila in Stress-Associated Breast Cancer: Integrating Microbiota and Psycho-Oncological Care

Long-term psychological stress drives breast cancer progression through neuroendocrine, immune, and gut microbiota (GM) dysbiosis. Preclinical and clinical data link stress-induced depletion of Akkermansia muciniphila and its cross-fed metabolite, butyrate, to the activation of the Low-Density Lipoprotein Receptor-Related Protein 5 (LRP5)-Wnt/β-catenin signaling pathway and increased cancer stemness. However, the current evidence has critical limitations. A. muciniphila does not produce butyrate, and its effects are highly context-dependent. While gut-resident populations are generally beneficial, translocation to mammary tissue can paradoxically induce oxidative stress and promote tumor progression. Therefore, future interventions must move beyond indiscriminate live bacterial supplementation. For the safe management of stress-associated breast cancer, future research should prioritize tissue-context-aware strategies, such as harnessing postbiotics (e.g., purified Amuc_1100, extracellular vesicles) and bacterial metabolites (e.g., targeted butyrate modulation), or utilizing high-fiber diets, integrated with established psycho-oncological care.

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Publication Details

Journal
Applied Microbiology
Published
2026-09-30
DOI
https://doi.org/10.3390/applmicrobiol6100117
Primary Topic
Gut microbiota and health
Type
article
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article

The Tissue-Dependent Role of Akkermansia muciniphila in Stress-Associated Breast Cancer: Integrating Microbiota and Psycho-Oncological Care

Alberto Rubio‐Casillas, Vladimir Nikolaevich Uversky, Sylvia Genova, Elrashdy Moustafa Mohamed Redwan
Applied Microbiology
Gut microbiota and health
article

The Tissue-Dependent Role of Akkermansia muciniphila in Stress-Associated Breast Cancer: Integrating Microbiota and Psycho-Oncological Care

Alberto Rubio‐Casillas, Vladimir Nikolaevich Uversky, Sylvia Genova, Elrashdy Moustafa Mohamed Redwan
article en

Abstract

Long-term psychological stress drives breast cancer progression through neuroendocrine, immune, and gut microbiota (GM) dysbiosis. Preclinical and clinical data link stress-induced depletion of Akkermansia muciniphila and its cross-fed metabolite, butyrate, to the activation of the Low-Density Lipoprotein Receptor-Related Protein 5 (LRP5)-Wnt/β-catenin signaling pathway and increased cancer stemness. However, the current evidence has critical limitations. A. muciniphila does not produce butyrate, and its effects are highly context-dependent. While gut-resident populations are generally beneficial, translocation to mammary tissue can paradoxically induce oxidative stress and promote tumor progression. Therefore, future interventions must move beyond indiscriminate live bacterial supplementation. For the safe management of stress-associated breast cancer, future research should prioritize tissue-context-aware strategies, such as harnessing postbiotics (e.g., purified Amuc_1100, extracellular vesicles) and bacterial metabolites (e.g., targeted butyrate modulation), or utilizing high-fiber diets, integrated with established psycho-oncological care.

Applied MicrobiologyVol. 6(10)
King Abdulaziz University (SA), University of South Florida (US), Medical University Plovdiv (BG), Secretaría de Salud de Jalisco (MX), City of Scientific Research and Technological Applications (EG), USF Health Byrd Alzheimer's Institute (US), Biotechnology Research Institute (CN)
Reduced inequalities
Openalex Percentile: Top 19%
Gut microbiota and health
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The Tissue-Dependent Role of Akkermansia muciniphila in Stress-Associated Breast Cancer: Integrating Microbiota and Psycho-Oncological Care — Alberto Rubio‐Casillas, Vladimir Nikolaevich Uversky, et al. · Applied Microbiology (2026) | TGRS Research Map | TGRS