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Activated protein C targets CD8+ dendritic cells to reduce the mortality of endotoxemia in mice
Edward Kerschen, Irene Hernandez, Mark Zogg, Shuang Jia, Martin J. Hessner, Jose A. Fernandez, John H. Griffin, Claudia S. Huettner, Francis J. Castellino, Hartmut Weiler
Edward Kerschen, Irene Hernandez, Mark Zogg, Shuang Jia, Martin J. Hessner, Jose A. Fernandez, John H. Griffin, Claudia S. Huettner, Francis J. Castellino, Hartmut Weiler
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Research Article

Activated protein C targets CD8+ dendritic cells to reduce the mortality of endotoxemia in mice

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Abstract

Activated protein C (aPC) therapy reduces mortality in adult patients with severe sepsis. In mouse endotoxemia and sepsis models, mortality reduction requires the cell signaling function of aPC, mediated through protease-activated receptor–1 (PAR1) and endothelial protein C receptor (EPCR; also known as Procr). Candidate cellular targets of aPC include vascular endothelial cells and leukocytes. Here, we show that expression of EPCR and PAR1 on hematopoietic cells is required in mice for an aPC variant that mediates full cell signaling activity but only minimal anticoagulant function (5A-aPC) to reduce the mortality of endotoxemia. Expression of EPCR in mature murine immune cells was limited to a subset of CD8+ conventional dendritic cells. Adoptive transfer of splenic CD11chiPDCA-1– dendritic cells from wild-type mice into animals with hematopoietic EPCR deficiency restored the therapeutic efficacy of aPC, whereas transfer of EPCR-deficient CD11chi dendritic cells or wild-type CD11chi dendritic cells depleted of EPCR+ cells did not. In addition, 5A-aPC inhibited the inflammatory response of conventional dendritic cells independent of EPCR and suppressed IFN-γ production by natural killer–like dendritic cells. These data reveal an essential role for EPCR and PAR1 on hematopoietic cells, identify EPCR-expressing dendritic immune cells as a critical target of aPC therapy, and document EPCR-independent antiinflammatory effects of aPC on innate immune cells.

Authors

Edward Kerschen, Irene Hernandez, Mark Zogg, Shuang Jia, Martin J. Hessner, Jose A. Fernandez, John H. Griffin, Claudia S. Huettner, Francis J. Castellino, Hartmut Weiler

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Figure 4

EPCR+ DCs are required for the therapeutic efficacy of 5A-aPC.

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EPCR+ DCs are required for the therapeutic efficacy of 5A-aPC.
   
(A) S...
(A) Spleen DCs were enriched by selection on CD11c/PDCA-1 magnetic beads from unchallenged wild-type or EPCRlo mice, and the CD11chiPDCA-1– population was isolated by preparative FACS. (B) Sorted DCs (106) were infused intravenously into mice with hematopoietic EPCR deficiency, treated 24 hours later with LPS/5A-aPC, and monitored for 7-day survival. A control group (ctrl) received wild-type DCs and LPS/S360A-aPC. (C) In an independent experiment, mice with hematopoietic EPCR deficiency received either wild-type DCs or wild-type DCs depleted of EPCR+ cells, followed by treatment with LPS/5A-aPC. Efficacy of 5A-aPC was measured by Kaplan-Meier log-rank analysis of survival.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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