CD11c<sup>+</sup>CD88<sup>+</sup>CD317<sup>+</sup> myeloid cells are critical mediators of persistent CNS autoimmunity.

Manouchehri, Navid; Hussain, Rehana Z; Cravens, Petra D; Esaulova, Ekaterina; Artyomov, Maxim N; Edelson, Brian T; Wu, Gregory F; Cross, Anne H et al. · Proc Natl Acad Sci U S A · 2021

basic_science · Level V

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Abstract

Natalizumab, a humanized monoclonal antibody (mAb) against α4-integrin, reduces the number of dendritic cells (DC) in cerebral perivascular spaces in multiple sclerosis (MS). Selective deletion of α4-integrin in CD11c<sup>+</sup> cells should curtail their migration to the central nervous system (CNS) and ameliorate experimental autoimmune encephalomyelitis (EAE). We generated CD11c.Cre<sup>+/-</sup><i>ITGA4</i><sup>fl/fl</sup> C57BL/6 mice to selectively delete α4-integrin in CD11c<sup>+</sup> cells. Active immunization and adoptive transfer EAE models were employed and compared with WT controls. Multiparameter flow cytometry was utilized to immunophenotype leukocyte subsets. Single-cell RNA sequencing was used to profile individual cells. α4-Integrin expression by CD11c<sup>+</sup> cells was significantly reduced in primary and secondary lymphoid organs in CD11c.Cre<sup>+/-</sup><i>ITGA4</i><sup>fl/fl</sup> mice. In active EAE, a delayed disease onset was observed in CD11c.Cre<sup>+/-</sup><i>ITGA4</i><sup>fl/fl</sup> mice, during which CD11c<sup>+</sup>CD88<sup>+</sup> cells were sequestered in the blood. Upon clinical EAE onset, CD11c<sup>+</sup>CD88<sup>+</sup> cells appeared in the CNS and expressed CD317<sup>+</sup> In adoptive transfer experiments, CD11c.Cre<sup>+/-</sup><i>ITGA4</i><sup>fl/fl</sup> mice had ameliorated clinical disease phenotype associated with significantly diminished numbers of CNS CD11c<sup>+</sup>CD88<sup>+</sup>CD317<sup>+</sup> cells. In human cerebrospinal fluid from subjects with neuroinflammation, microglia-like cells display coincident expression of <i>ITGAX</i> (CD11c), <i>C5AR1</i> (CD88), and <i>BST2</i> (CD317). In mice, we show that only activated, but not naïve microglia expressed CD11c, CD88, and CD317. Finally, anti-CD317 treatment prior to clinical EAE substantially enhanced recovery in mice.

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