Engineered T cell therapy for central nervous system injury.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39232158.
- Also identified by DOI 10.1038/s41586-024-07906-y.
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Abstract
Traumatic injuries to the central nervous system (CNS) afflict millions of individuals worldwide<sup>1</sup>, yet an effective treatment remains elusive. Following such injuries, the site is populated by a multitude of peripheral immune cells, including T cells, but a comprehensive understanding of the roles and antigen specificity of these endogenous T cells at the injury site has been lacking. This gap has impeded the development of immune-mediated cellular therapies for CNS injuries. Here, using single-cell RNA sequencing, we demonstrated the clonal expansion of mouse and human spinal cord injury-associated T cells and identified that CD4<sup>+</sup> T cell clones in mice exhibit antigen specificity towards self-peptides of myelin and neuronal proteins. Leveraging mRNA-based T cell receptor (TCR) reconstitution, a strategy aimed to minimize potential adverse effects from prolonged activation of self-reactive T cells, we generated engineered transiently autoimmune T cells. These cells demonstrated notable neuroprotective efficacy in CNS injury models, in part by modulating myeloid cells via IFNγ. Our findings elucidate mechanistic insight underlying the neuroprotective function of injury-responsive T cells and pave the way for the future development of T cell therapies for CNS injuries.
Medical subject headings
- Autoimmunity
- Cell Engineering
- Cell- and Tissue-Based Therapy
- Central Nervous System
- Neuroprotection
- Spinal Cord Injuries
- T-Lymphocytes