The role played by bacterial infections in the onset and metastasis of cancer
•Bacterial dysbiosis induces various changes in host cell machinery.•Bacterial infections trigger chronic inflammation leading to cell proliferation.•Immune response modulation and genomic instability assist tumour development.•Bacterial minicells, microswimmers, and OMVs can act as feasible drug ca...
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Veröffentlicht in: | Current research in microbial sciences 2021-12, Vol.2, p.100078-100078, Article 100078 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | •Bacterial dysbiosis induces various changes in host cell machinery.•Bacterial infections trigger chronic inflammation leading to cell proliferation.•Immune response modulation and genomic instability assist tumour development.•Bacterial minicells, microswimmers, and OMVs can act as feasible drug carriers.•Bacteria acts as a promising approach for targeting the hypoxic core of the tumour.
Understanding various responses of cells towards change in their external environment, presence of other species and is important in identifying and correlating the mechanisms leading to malignant transformations and cancer development. Although uncovering and comprehending the association between bacteria and cancer is highly challenging, it promises excellent perspectives and approaches for successful cancer therapy. This review introduces various bacterial species, their virulence factors, and their role in cell transformations leading to cancer (particularly gastric, oral, colon, and breast cancer). Bacterial dysbiosis permutates host cells, causes inflammation, and results in tumorigenesis. This review explored bacterial-mediated host cell transformation causing chronic inflammation, immune receptor hyperactivation/absconding immune recognition, and genomic instability. Bacterial infections downregulate E-cadherin, leading to loosening of epithelial tight junction polarity and triggers metastasis. In addition to understanding the role of bacterial infections in cancer development, we have also reviewed the application of bacteria for cancer therapy. The emergence of bacteriotherapy combined with conventional therapies led to new and effective ways of overcoming challenges associated with available treatments. This review discusses the application of bacterial minicells, microswimmers, and outer cell membrane vesicles (OMV) for drug delivery applications.
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ISSN: | 2666-5174 2666-5174 |
DOI: | 10.1016/j.crmicr.2021.100078 |