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. 2020 May 7;31(7):507-514.
doi: 10.1097/WNR.0000000000001422.

Hippocampal complement C3 might contribute to cognitive impairment induced by anesthesia and surgery

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Hippocampal complement C3 might contribute to cognitive impairment induced by anesthesia and surgery

Mu-Huo Ji et al. Neuroreport. .

Abstract

Postoperative cognitive dysfunction is a well-recognized complication after major surgery in the elderly, but its pathophysiological mechanism is not fully understood. In the present study, we used liquid chromatography-tandem mass spectrometry combined with tandem mass tags to identify differentially expressed proteins and perform further functional studies on protein of interest. Here, we showed that hippocampal complement C3 was significantly upregulated after surgery, which was accompanied by marked decreases in synaptic related proteins and density. In aged patients undergoing gastrointestinal surgery, we also found significantly increased plasma level of C3b postoperatively and were negatively associated with cognitive performance. Notably, selective inhibition of complement C3 by compstatin was able to rescue synaptic and cognitive impairments induced by surgery in aged mice. Collectively, our study confirms that surgery can induce cognitive impairments, and the possible mechanisms might be related to abnormal complement signaling and synaptic disruption.

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References

    1. Steinmetz J, Christensen KB, Lund T, Lohse N, Rasmussen LS; ISPOCD Group. Long-term consequences of postoperative cognitive dysfunction. Anesthesiology. 2009; 110:548–555
    1. Krenk L, Rasmussen LS, Kehlet H. New insights into the pathophysiology of postoperative cognitive dysfunction. Acta Anaesthesiol Scand. 2010; 54:951–956
    1. Kim DK, Park J, Han D, Yang J, Kim A, Woo J, et al. Molecular and functional signatures in a novel alzheimer’s disease mouse model assessed by quantitative proteomics. Mol Neurodegener. 2018; 13:2
    1. Mertins P, Tang LC, Krug K, Clark DJ, Gritsenko MA, Chen L, et al. Reproducible workflow for multiplexed deep-scale proteome and phosphoproteome analysis of tumor tissues by liquid chromatography-mass spectrometry. Nat Protoc. 2018; 13:1632–1661
    1. Mosley JD, Benson MD, Smith JG, Melander O, Ngo D, Shaffer CM, et al. Probing the virtual proteome to identify novel disease biomarkers. Circulation. 2018; 138:2469–2481

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