The lymphocyte populations and their migration into the central nervous system in tick-borne encephalitis

Sambor Grygorczuk1, Joanna Osada2, Kacper Toczyłowski3

  • 1Department of the Infectious Diseases and Neuroinfections, Medical University in Białystok, ul. Żurawia 14, 15-540 Białystok, Poland.

Insights

In tick-borne encephalitis (TBE), specific T lymphocyte subsets in cerebrospinal fluid (CSF) correlate with disease severity. The CCR5/CCL5 pathway aids T cell entry into the central nervous system (CNS), while other factors like CCL2 and IL-16 also influence TBE pathogenesis.

Area of Science:

  • Neuroimmunology
  • Virology
  • Immunology

Background:

  • Tick-borne encephalitis (TBE) involves central nervous system (CNS) inflammation, with T lymphocytes dominating cerebrospinal fluid (CSF) pleocytosis.
  • The specific roles of T cell subsets and their migration mechanisms into the CNS during TBE remain unclear.

Purpose of the Study:

  • To investigate CSF lymphocyte subsets and chemotactic axes in TBE patients based on clinical presentation.
  • To elucidate the pathogenetic roles and migration mechanisms of lymphocytes in TBE.

Main Methods:

  • Analysis of CSF and blood lymphocyte subsets (CD3+CD4+, CD3+CD8+) and chemokine receptor expression (CXCR3, CCR5) via flow cytometry.
  • Quantification of chemokines (CCL5, CXCL10, IL-16, CCL2, CCL20, CXCL5) in CSF and serum using ELISA.
  • Stratification of 51 TBE patients by clinical presentation (meningitis, meningoencephalitis, meningoencephalomyelitis), 20 non-TBE meningitis patients, and 11 healthy controls.

Main Results:

  • CSF lymphocyte counts correlated with CNS involvement severity, particularly altered consciousness and focal neurological deficits.
  • CSF CD3+CD4+ and CD3+CD8+ T cells showed enrichment in CCR5+ cells, with increased CSF CCL5 associated with milder TBE presentations.
  • Intrathecal CXCL10 was elevated and correlated with CSF T lymphocyte counts, but CXCR3 expression on these cells was low. Increased CSF CCL2 and IL-16 correlated with lymphocyte counts and suggested a chemotactic gradient towards the CNS.

Conclusions:

  • Distinct lymphoid cell populations in CSF associate differently with TBE clinical manifestations, indicating varied pathogenetic roles.
  • The CCR5/CCL5 axis likely facilitates T lymphocyte migration into the CNS during TBE.
  • While CXCL10 is involved in the intrathecal immune response, CCL2 and IL-16 may also contribute to T cell migration and overall TBE pathogenesis.

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