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Targeting inflammatory monocytes in sepsis-associated encephalopathy and long-term cognitive impairment
Graciela Andonegui, Erin L. Zelinski, Courtney L. Schubert, Derrice Knight, Laura A. Craig, Brent W. Winston, Simon C. Spanswick, Björn Petri, Craig N. Jenne, Janice C. Sutherland, Rita Nguyen, Natalie Jayawardena, Margaret M. Kelly, Christopher J. Doig, Robert J. Sutherland, Paul Kubes
Graciela Andonegui, Erin L. Zelinski, Courtney L. Schubert, Derrice Knight, Laura A. Craig, Brent W. Winston, Simon C. Spanswick, Björn Petri, Craig N. Jenne, Janice C. Sutherland, Rita Nguyen, Natalie Jayawardena, Margaret M. Kelly, Christopher J. Doig, Robert J. Sutherland, Paul Kubes
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Research Article Inflammation Neuroscience

Targeting inflammatory monocytes in sepsis-associated encephalopathy and long-term cognitive impairment

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Abstract

Sepsis-associated encephalopathy manifesting as delirium is a common problem in critical care medicine. In this study, patients that had delirium due to sepsis had significant cognitive impairments at 12–18 months after hospital discharge when compared with controls and Cambridge Neuropsychological Automated Test Battery–standardized scores in spatial recognition memory, pattern recognition memory, and delayed-matching-to-sample tests but not other cognitive functions. A mouse model of S. pneumoniae pneumonia-induced sepsis, which modeled numerous aspects of the human sepsis-associated multiorgan dysfunction, including encephalopathy, also revealed similar deficits in spatial memory but not new task learning. Both humans and mice had large increases in chemokines for myeloid cell recruitment. Intravital imaging of the brains of septic mice revealed increased neutrophil and CCR2+ inflammatory monocyte recruitment (the latter being far more robust), accompanied by subtle microglial activation. Prevention of CCR2+ inflammatory monocyte recruitment, but not neutrophil recruitment, reduced microglial activation and other signs of neuroinflammation and prevented all signs of cognitive impairment after infection. Therefore, therapeutically targeting CCR2+ inflammatory monocytes at the time of sepsis may provide a novel neuroprotective clinical intervention to prevent the development of persistent cognitive impairments.

Authors

Graciela Andonegui, Erin L. Zelinski, Courtney L. Schubert, Derrice Knight, Laura A. Craig, Brent W. Winston, Simon C. Spanswick, Björn Petri, Craig N. Jenne, Janice C. Sutherland, Rita Nguyen, Natalie Jayawardena, Margaret M. Kelly, Christopher J. Doig, Robert J. Sutherland, Paul Kubes

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Figure 7

Effects of S. pneumoniaeinfection on CCR2+ monocyte recruitment and Morris water maze in CCR2def mice.

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Effects of S. pneumoniaeinfection on CCR2+ monocyte recruitment and Morr...
Wild-type reporter mice CX3CR1GFP/WTCCR2RFP/WT and CX3CR1GFP/WTCCR2RFP/RFP (CCR2def) mice were infected with S. pneumoniae for 24 hours. (A) Quantification of CCR2+ monocyte rolling flux. (B) Quantification of CCR2+ monocyte adhesion. (C) Quantification of CCR2+ monocyte counts in the coronal brain section by confocal microscopy. Data in A–C represent mean ± SEM of n = 3–5. **P < 0.01, ***P < 0.001 vs. control, #P < 0.05 vs. WT + S. pneumoniae, ##P < 0.01 vs. WT + S. pneumoniae, 1-way ANOVA followed by Tukey’s multiple comparisons test. (D) Coronal brain image of CCR2def mice infected with S. pneumoniae for 24 hours. (E) Morris water maze and percentage of distance spent in the target quadrant on the fourth day. (F) Morris water maze and percentage of time in target quadrant. Wild-type mice, CCR2def mice, and mice treated with anti-CCR2 mAb (see Methods) were infected with S. pneumoniae and allowed to recover for 2 weeks, and at this time, the Morris water maze test was assessed. Data represent mean ± SEM of n = 14 in control, n = 7 in WT + S. pneumoniae, n = 11 in CCR2def + S. pneumoniae, and n = 5 in WT + anti-CCR2 + S. pneumoniae mice. *P < 0.05 vs. control mice, 1-way ANOVA followed by Dunnett’s multiple comparisons test.

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