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Updated: Sep 7, 2025

In Vivo Chronic Two-Photon Imaging of Microglia in the Mouse Hippocampus
Published on: July 6, 2022
sVCAM1 in the Hippocampus Contributes to Postoperative Cognitive Dysfunction in Mice by Inducing Microglial
Chenglong Li1, Qi Li1, Shuai Liu1
1Department of Anaesthesiology, The Fourth Affiliated Hospital of Harbin Medical University, 37 Yiyuan Road, Harbin, 150001, Heilongjiang, China.
Abstract:
Postoperative cognitive dysfunction (POCD) is a severe postsurgical complication, but its underlying mechanisms remain unclear. Neuroinflammation mediated by microglial activation plays a major role in POCD pathophysiology. Upregulation of vascular cell adhesion molecule 1 (VCAM1) on brain endothelial cells is closely correlated with microglial activation in the mouse hippocampus. However, the role of VCAM1 upregulation in microglial activation remains unknown. Soluble VCAM1 (sVCAM1) activates the very late antigen-4 (VLA-4) receptor under inflammatory conditions. Therefore, we hypothesized that sVCAM1 which is shed from VCAM1 contributes to POCD by triggering hippocampal microglial activation through the VLA-4 receptor. We found that VCAM1 and sVCAM1 expression in the mouse hippocampus was upregulated after surgery, and the upregulation was accompanied by hippocampal microglial activation. sVCAM1 levels in mouse and human serum were increased after surgery. Anti-VCAM1 treatment inhibited microglial activation, proinflammatory cytokine production, VLA-4 expression and P38 mitogen-associated protein kinase (MAPK) pathway activation and attenuated hippocampal-dependent cognitive dysfunction. In vitro, recombinant sVCAM1 promoted M1 polarization in BV2 cells, increased VLA-4 expression and activated the P38 MAPK pathway. These effects were reversed by VLA-4 receptor blockade. Anti-VLA-4 treatment ameliorated hippocampal-dependent cognitive dysfunction after surgery by inhibiting microglial activation, proinflammatory cytokine production and P38 pathway activation. In conclusion, increased sVCAM1 in the hippocampus is involved in microglial activation and cognitive dysfunction induced by surgery. Inhibiting the sVCAM1-VLA-4 interaction in microglia may be a therapeutic strategy for POCD.
Insights
Postoperative cognitive dysfunction (POCD) involves neuroinflammation. Soluble vascular cell adhesion molecule 1 (sVCAM1) triggers microglial activation via the VLA-4 receptor, contributing to POCD. Targeting this interaction may offer therapeutic benefits.
Area of Science:
- Neuroscience
- Immunology
- Molecular Biology
Background:
- Postoperative cognitive dysfunction (POCD) is a significant postsurgical complication with unclear mechanisms.
- Neuroinflammation, driven by microglial activation, is implicated in POCD.
- Vascular cell adhesion molecule 1 (VCAM1) upregulation correlates with microglial activation in the hippocampus, but its role is unknown.
Purpose of the Study:
- To investigate the role of soluble VCAM1 (sVCAM1) in triggering hippocampal microglial activation and contributing to POCD.
- To test the hypothesis that sVCAM1 activates the very late antigen-4 (VLA-4) receptor, leading to microglial activation and cognitive dysfunction.
Main Methods:
- Assessed VCAM1 and sVCAM1 expression in mouse hippocampus post-surgery.
- Measured serum sVCAM1 levels in mice and humans.
- Administered anti-VCAM1 and anti-VLA-4 treatments in vivo.
- Utilized in vitro BV2 cell models with recombinant sVCAM1 and VLA-4 blockade.
- Analyzed microglial activation, cytokine production, VLA-4 expression, and P38 MAPK pathway activation.
Main Results:
- Surgery upregulated hippocampal VCAM1 and sVCAM1, correlating with microglial activation.
- Serum sVCAM1 increased post-surgery in mice and humans.
- Anti-VCAM1 and anti-VLA-4 treatments reduced microglial activation, inflammation, and cognitive deficits.
- In vitro, sVCAM1 induced M1 polarization and activated the P38 MAPK pathway in BV2 cells, effects reversed by VLA-4 blockade.
Conclusions:
- Elevated hippocampal sVCAM1 contributes to surgery-induced microglial activation and cognitive dysfunction.
- The sVCAM1-VLA-4 interaction in microglia is a key mechanism in POCD.
- Inhibiting the sVCAM1-VLA-4 pathway presents a potential therapeutic strategy for POCD.

