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Abatacept inhibits Th17 differentiation and mitigates α-synuclein-induced dopaminergic dysfunction in mice

  • Julia R. Clarke,
  • Thiago Sa Bacelar,
  • Gabriel Gripp Fernandes,
  • Raquel Costa da Silva,
  • Leticia S. Antonio,
  • Mariana Queiroz,
  • Renata V. de Souza,
  • Leticia F. Valadão,
  • Gabriel S. Ribeiro,
  • Emanuelle V. De Lima,
  • Lilian C. Colodeti,
  • Luana C. Mangeth,
  • Adalgisa Wiecikowski,
  • Talita N. da Silva,
  • Heitor A. Paula-Neto,
  • Robson da Costa,
  • Yraima Cordeiro,
  • Giselle F. Passos,
  • Claudia P. Figueiredo

摘要

Parkinson’s disease (PD) is a multifaceted disease characterized by degeneration of nigrostriatal dopaminergic neurons, which results in motor and non-motor dysfunctions. Accumulation of α-synuclein (αSYN) in Lewy bodies is a key pathological feature of PD. Although the exact cause of PD remains unknown, accumulating evidence suggests that brain infiltration of T cells plays a critical role in the pathogenesis of disease, contributing to neuroinflammation and dopaminergic neurodegeneration. Here, we used a mouse model of brain-infused aggregated αSYN, which recapitulates motor and non-motor dysfunctions seen in PD patients. We found that αSYN-induced motor dysfunction in mice is accompanied by an increased number of brain-residing Th17 (IL17+ CD4+) cells, but not CD8+ T cells. To evaluate whether the modulation of T cell response could rescue αSYN-induced damage, we chronically treated animals with abatacept (8 mg/kg, sc, 3x per week), a selective T-cell co-stimulation modulator. We found that abatacept treatment decreased Th1 (IFNƔ+ CD4+) and Th17 (IL17+ CD4+) cells in the brain, rescued motor function and prevented dopaminergic neuronal loss in αSYN-infused mice. These results highlight the significance of effector CD4+ T cells, especially Th17, in the progression of PD and introduce novel possibilities for repurposing immunomodulatory drugs used for arthritis as PD-modifying therapies.