Targeting immune-mediated, age-related, biology has the potential to be a transformative therapeutic strategy. However, the redundant nature of the multiple cytokines that change with aging requires identification of a master downstream regulator to successfully exert therapeutic efficacy. Here, we discovered CCR3 as a prime candidate, and inhibition of CCR3 has pro-cognitive benefits in mice, but these benefits are not driven by an obvious direct action on central nervous system (CNS)-resident cells. Instead, CCR3-expressing T cells in the periphery that are modulated in aging inhibit infiltration of these T cells across the blood-brain barrier and reduce neuroinflammation. The axis of CCR3-expressing T cells influencing crosstalk from periphery to brain provides a therapeutically tractable link. These findings indicate the broad therapeutic potential of CCR3 inhibition in a spectrum of neuroinflammatory diseases of aging.
CITATION STYLE
Rege, S. V., Teichert, A., Masumi, J., Dhande, O. S., Harish, R., Higgins, B. W., … Minami, S. S. (2023). CCR3 plays a role in murine age-related cognitive changes and T-cell infiltration into the brain. Communications Biology, 6(1). https://doi.org/10.1038/s42003-023-04665-w
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