The human tissue-resident CCR5+ T cell compartment maintains protective and functional properties during inflammation

Amanda S Woodward Davis1, Hayley N Roozen1, Matthew J Dufort2

  • 1Fred Hutchinson Cancer Research Center, Vaccine and Infectious Disease Division, Seattle, WA 98109, USA.

Insights

Tissue-resident memory T (TRM) cells expressing CCR5 are crucial for maintaining barrier immunity. These CCR5+ T cells remain stable in tissues, even during inflammation or CCR5 antagonist treatment.

Area of Science:

  • Immunology
  • Cell Biology

Background:

  • CCR5 antagonists reduce inflammation but paradoxically spare host immunity at barrier sites.
  • The role of tissue-resident CCR5-expressing T cells in this phenomenon is unclear.

Purpose of the Study:

  • To investigate the characteristics and function of human CCR5-expressing T cells residing in tissues.
  • To resolve the paradox of CCR5 antagonist efficacy without compromising barrier immunity.

Main Methods:

  • Single-cell analysis of human CCR5+ T cell populations in blood and mucosal tissues (healthy and inflamed).
  • Examination of tissue samples from the CHARM-03 clinical trial involving CCR5 antagonist treatment.

Main Results:

  • 65% of CD4 tissue-resident memory T (TRM) cells express CCR5.
  • CCR5+ T cells are enriched near epithelial layers and include TH1, TH17, and regulatory T cell subsets.
  • These CCR5+ TRM populations are stable in inflamed tissues and during CCR5 antagonist therapy.

Conclusions:

  • Human CCR5+ TRM cells are strategically positioned and equipped to maintain barrier immunity independently of CCR5-mediated peripheral recruitment.
  • This resident immune cell compartment explains the preservation of immunity at barrier sites during CCR5 antagonist treatment.

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