Non-classical tissue monocytes and two functionally distinct populations of interstitial macrophages populate the mouse lung.

Schyns, Joey; Bai, Qiang; Ruscitti, Cecilia; Radermecker, Coraline; De Schepper, Sebastiaan; Chakarov, Svetoslav; Farnir, Frédéric; Pirottin, Dimitri et al. · Nat Commun · 2019

basic_science · Level V

Where this comes from

Abstract

Resident tissue macrophages (RTM) can fulfill various tasks during development, homeostasis, inflammation and repair. In the lung, non-alveolar RTM, called interstitial macrophages (IM), importantly contribute to tissue homeostasis but remain little characterized. Here we show, using single-cell RNA-sequencing (scRNA-seq), two phenotypically distinct subpopulations of long-lived monocyte-derived IM, i.e. CD206<sup>+</sup> and CD206<sup>-</sup>IM, as well as a discrete population of extravasating CD64<sup>+</sup>CD16.2<sup>+</sup> monocytes. CD206<sup>+</sup> IM are peribronchial self-maintaining RTM that constitutively produce high levels of chemokines and immunosuppressive cytokines. Conversely, CD206<sup>-</sup>IM preferentially populate the alveolar interstitium and exhibit features of antigen-presenting cells. In addition, our data support that CD64<sup>+</sup>CD16.2<sup>+</sup> monocytes arise from intravascular Ly-6C<sup>lo</sup> patrolling monocytes that enter the tissue at steady-state to become putative precursors of CD206<sup>-</sup>IM. This study expands our knowledge about the complexity of lung IM and reveals an ontogenic pathway for one IM subset, an important step for elaborating future macrophage-targeted therapies.

Medical subject headings