4.6 Article

Characterization of Antigen-Induced CD4+T-Cell Senescence in Multiple Sclerosis

期刊

FRONTIERS IN NEUROLOGY
卷 13, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fneur.2022.790884

关键词

multiple sclerosis (MS); CD4; T-cell; T-cell senescence; regulation

资金

  1. European Research Council Advanced Grant [340733]
  2. Clinical Research Priority Programs (CRPPs) Heterogeneity MS and Precision MS of the University Zurich
  3. Swiss National Science Foundation [CRSII3_154483]
  4. Swiss MS Society
  5. European Research Council (ERC) [340733] Funding Source: European Research Council (ERC)
  6. Swiss National Science Foundation (SNF) [CRSII3_154483] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

Antigen-induced T-cell exhaustion and T-cell senescence control effector T-cell responses. This study analyzes the markers of CD4+ T-cell senescence in patients with multiple sclerosis (MS) and finds their correlation with markers of neurodegeneration, suggesting their relevance in disease pathogenesis and regulation.
Antigen-induced T-cell exhaustion and T-cell senescence are peripheral regulatory mechanisms that control effector T-cell responses. Markers of exhaustion and senescence on T Cells indicate the previous activation by repetitive stimulation with specific antigens. Malignant tumors are accompanied by enhanced T-cell exhaustion and T-cell senescence resulting in immune evasion, while these control mechanisms might be diminished in autoimmune diseases including multiple sclerosis (MS). To better understand the involvement of antigen-induced T-cell senescence in controlling CD4+ T-cell-mediated autoimmune responses in MS, we have analyzed the re-expression of CD45RA and the downregulation of CD28 and CD27 molecules as markers of antigen-induced T-cell senescence in fresh cerebrospinal fluid (CSF)-infiltrating and paired circulating T cells from patients with MS. Patients with different levels of CD4+ T-cell senescence were identified and characterized regarding demographical and clinical features as well as intrathecal markers of neurodegeneration. CD4+ T-cell senescence was also analyzed in control patients to explore a putative deficit of this regulatory mechanism in MS. This study shows heterogeneity of markers of CD4+ T-cell senescence in patients with MS. Patients with high levels of CD4+ T-cell senescence in peripheral blood showed increased frequencies of CSF-infiltrating CD28+ CD27-EM CD4+ T cells with a proinflammatory Th1 functional phenotype. The correlation of these cells with the intrathecal levels of neurofilament light chain, a marker of neurodegeneration, suggests their relevance in disease pathogenesis and the involvement of T-cell senescence in their regulation. Markers of antigen-induced T-senescence, therefore, show promise as a tool to identify pathogenic CD4+ T cells in patients with MS.

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