Tumor hijacks macrophages and microbiota through extracellular vesicles

Jipeng Jiang1,2, Jie Mei3,4, Yongfu Ma2

  • 1Postgraduate School Medical School of Chinese PLA Beijing P. R. China.

PubMed

Insights

Tumor-derived extracellular vesicles (TDEVs) mediate crosstalk between tumor cells, macrophages, and microbes within the tumor microenvironment (TME). Understanding these interactions is key to developing new cancer therapies.

Area of Science:

  • Oncology
  • Immunology
  • Microbiology

Background:

  • The tumor microenvironment (TME) comprises tumor cells, tumor-associated macrophages (TAMs), and microbiota, all influencing tumor progression.
  • TAMs' altered phenotypes and functions are linked to cancer development.
  • Microbial colonization, including pathogens, contributes to tumor generation and progression.

Purpose of the Study:

  • To review the role of tumor-derived extracellular vesicles (TDEVs) in mediating crosstalk among tumor cells, TAMs, and microbiota.
  • To elucidate how TDEVs facilitate the recruitment and interaction of TAMs and microbes within the TME.
  • To highlight the significance of these interactions in promoting tumor progression and identifying therapeutic targets.

Main Methods:

  • Literature review focusing on the interplay between tumor cells, TAMs, microbiota, and TDEVs.
  • Analysis of mechanisms by which TDEVs transfer malignant factors.
  • Examination of how TDEVs influence TAMs and microbial communities in the TME.

Main Results:

  • TDEVs act as crucial messengers, transferring factors that regulate TAM and microbial behavior.
  • Tumor cells utilize TDEVs to recruit and influence both TAMs and microbes.
  • Hijacked TAMs and microbes engage in feedback loops that promote tumor growth and survival within the TME.

Conclusions:

  • TDEVs play a central role in orchestrating the complex interactions within the TME.
  • Clarifying the specific crosstalk mediated by TDEVs is essential for identifying novel therapeutic strategies.
  • Targeting TDEV-mediated communication pathways offers potential for improving cancer treatment and patient prognosis.

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