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Host-directed immune therapies: a second front in the battle against sepsis
Richard S. Hotchkiss, Guillaume Monneret
Richard S. Hotchkiss, Guillaume Monneret
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Review

Host-directed immune therapies: a second front in the battle against sepsis

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Abstract

Each year, sepsis claims more lives in the United States than many major cancers and HIV/AIDS combined, yet therapeutic progress has been modest. Adding to this crisis is the alarming rise of multidrug-resistant “superbugs,” which increasingly render conventional antibiotics ineffective. Pathogen-targeted antibiotics will always remain a cornerstone of sepsis treatment, and research into novel antibiotics must continue unabated. However, the consistent mortality in sepsis tells us this approach is insufficient. Most deaths in sepsis do not occur during the early cytokine storm–driven hyper-inflammatory phase but rather days or weeks after the initial insult, during a protracted phase of immune suppression. Here, we make the case that a crucial way to reduce sepsis mortality lies in restoration of the patient’s immune competence, enabling the patient to contain and kill the invading microbes. Adjuvant immune therapies will not only enable killing of the initial, invading pathogens but also prevent secondary, hospital-acquired infections. Immunotherapy revolutionized oncology by challenging the assumption that cancer was best treated through cytotoxic or targeted tumor-directed approaches, and sepsis now stands at a similar inflection point. We argue that embracing immune restoration as a core therapeutic objective offers the most promising means to improve survival in this lethal disorder.

Authors

Richard S. Hotchkiss, Guillaume Monneret

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Figure 3

IHC staining of spleens from nonseptic or septic patients showing decrease in HLA-DR expression and loss of DCs but not macrophages in sepsis.

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IHC staining of spleens from nonseptic or septic patients showing decrea...
IHC staining (200× original magnification) for HLA-DR in spleen from nonseptic (A) and septic patient (B). A shows robust periarteriolar staining in T and B cell zones consistent with major histocompatibility (MHC) class II pattern. B shows marked loss of HLA-DR reactivity in B and T cell zones typical of nearly subtotal depletion of HLA-DR–reactive elements in sepsis. IHC staining for macrophages (CD14) showing no differences in the number of splenic macrophages in nonseptic (C) versus septic spleen (D). (E and F) IHC staining for DCs (CD21) (400× original magnification). Note the profound loss of DCs in the septic versus nonseptic patient. Panels A and B are reproduced with permission from JAMA (21). Panels C–F are reproduced with permission from The Journal of Immunology (24).

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

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