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Updated: Dec 11, 2025

Analyzing the Functions of Mast Cells In Vivo Using 'Mast Cell Knock-in' Mice
Published on: May 27, 2015
Mast Cell Deficiency Protects Mice from Surgery-Induced Neuroinflammation
Xiang Zhang1, Hongquan Dong2, Fei Wang1
1Department of Anesthesiology, Fudan University Shanghai Cancer Center, Department of Oncology, Shanghai Medical College, Fudan University, Shanghai 200032, China.
Abstract:
Neuroinflammation plays a key role in the occurrence and development of neurodegenerative diseases. Microglia, the resident immune cells in the brain, have been recognized to contribute to neuroinflammation. Previous studies have shown that activated mast cells may be involved in surgery-induced neuroinflammation and neuronal apoptosis by using pharmacological methods. This study is aimed at ascertaining the exactly role of mast cells on neuroinflammation with the mast cell-deficient mice. Adult male C57BL6/J wild-type (WT) and mast cell-deficient (C57BL6/J KitWsh/Wsh (Wsh)) mice underwent tibial fracture surgery. Blood-brain barrier (BBB) breakdown, microglial activation, and neuroinflammatory levels were examined at 1 day after surgery. Surgery-induced BBB breakdown, microglial activation, and neuroinflammatory levels were significantly, pharmacologically reduced using a mast cell stabilizer, cromolyn sodium in WT mice (P < 0.05). These results were reproduced with mast cell deficiency. WT mice administered intraventricularly with cromolyn exhibited reduced BBB breakdown, microglial activation, and neuroinflammatory levels versus vehicle (P < 0.05). But there was no effect of cromolyn versus vehicle in Wsh mice, clarifying the specificity of cromolyn on brain mast cells. These findings demonstrated that activated mast cells promote surgery-induced BBB breakdown and neuroinflammation in mice, and open up a new therapeutic target for neuroinflammation-related diseases.
Insights
Activated mast cells exacerbate surgery-induced neuroinflammation and blood-brain barrier damage. Targeting mast cells offers a new therapeutic strategy for neurodegenerative diseases.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Neuroinflammation is critical in neurodegenerative diseases.
- Microglia contribute to neuroinflammation.
- Mast cells' role in surgery-induced neuroinflammation is unclear.
Purpose of the Study:
- To determine the precise role of mast cells in surgery-induced neuroinflammation.
- To investigate mast cells' involvement in blood-brain barrier (BBB) breakdown and microglial activation.
Main Methods:
- Used wild-type (WT) and mast cell-deficient (Wsh) mice undergoing tibial fracture surgery.
- Assessed BBB breakdown, microglial activation, and neuroinflammation post-surgery.
- Administered cromolyn sodium (mast cell stabilizer) in WT and Wsh mice.
Main Results:
- Surgery induced BBB breakdown, microglial activation, and neuroinflammation in WT mice.
- Cromolyn sodium significantly reduced these effects in WT mice.
- Mast cell deficiency (Wsh mice) prevented surgery-induced neuroinflammation and BBB breakdown, with cromolyn showing no additional effect, confirming specificity.
Conclusions:
- Activated mast cells promote surgery-induced BBB breakdown and neuroinflammation.
- Mast cells represent a novel therapeutic target for neuroinflammation-related diseases.

