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A Preclinical Controlled Cortical Impact Model for Traumatic Hemorrhage Contusion and Neuroinflammation
Published on: June 10, 2020
IL-13 Ameliorates Neuroinflammation and Promotes Functional Recovery after Traumatic Brain Injury
Wanying Miao1,2,3, Yongfang Zhao1,2,3, Yichen Huang1,2,3
1State Key Laboratory of Medical Neurobiology, Fudan University, Shanghai 200032, China.
Abstract:
Microglia play essential roles in neuroinflammatory responses after traumatic brain injury (TBI). Our previous studies showed that phenotypes of microglia, as well as infiltrating macrophages, altered at different stages after CNS injury, which was correlated to functional outcomes. IL-13 is an anti-inflammatory cytokine that has been reported to protect against demyelination and spinal cord injury through immunomodulation. The effects of IL-13 in microglia/macrophage-mediated immune responses after TBI remain unknown. In this study, we showed that intranasal administration of IL-13 in male C57BL/6J mice accelerated functional recovery in the controlled cortical impact model of TBI. IL-13 treatment increased the time to fall off in the Rotarod test, reduced the number of foot faults in the foot fault test, and improved the score in the wire hang test up to 28 d after TBI. Consistent with functional improvement, IL-13 reduced neuronal tissue loss and preserved white matter integrity 6 d after TBI. Furthermore, IL-13 ameliorated the elevation of proinflammatory factors and reduced the number of proinflammatory microglia/macrophages 6 d after TBI. Additionally, IL-13 enhanced microglia/macrophage phagocytosis of damaged neurons in the peri-lesion areas. In vitro studies confirmed that IL-13 treatment inhibited the production of proinflammatory cytokines in rat primary microglia in response to LPS or dead neuron stimulation and increased the ability of microglia to engulf fluorophore-labeled latex beads or dead neurons. Collectively, we demonstrated that IL-13 treatment improved neurologic outcomes after TBI through adjusting microglia/macrophage phenotypes and inhibiting inflammatory responses. IL-13 may represent a potential immunotherapy to promote long-term recovery from TBI.
Insights
Interleukin-13 (IL-13) administration enhances recovery after traumatic brain injury (TBI) by modulating microglia and macrophage activity, reducing inflammation, and improving neurological function.
Area of Science:
- Neuroscience
- Immunology
- Regenerative Medicine
Background:
- Microglia are key players in neuroinflammation following traumatic brain injury (TBI).
- Previous research indicates altered microglia and macrophage phenotypes correlate with functional outcomes post-CNS injury.
- Interleukin-13 (IL-13), an anti-inflammatory cytokine, shows protective effects in other neurological conditions but its role in TBI is unexplored.
Purpose of the Study:
- To investigate the therapeutic potential of IL-13 in TBI by examining its effects on microglia/macrophage-mediated immune responses.
- To assess the impact of IL-13 on functional recovery, neuropathology, and inflammatory markers after TBI.
Main Methods:
- Intranasal administration of IL-13 in a controlled cortical impact mouse model of TBI.
- Functional assessments including Rotarod, foot fault, and wire hang tests.
- Histological analysis to evaluate neuronal loss and white matter integrity.
- Measurement of proinflammatory factors and assessment of microglia/macrophage phagocytosis in vivo and in vitro.
Main Results:
- IL-13 treatment significantly accelerated functional recovery up to 28 days post-TBI.
- IL-13 reduced neuronal tissue loss and preserved white matter integrity.
- The treatment decreased proinflammatory factors and the number of proinflammatory microglia/macrophages.
- In vitro studies confirmed IL-13's ability to inhibit proinflammatory cytokine production and enhance microglial phagocytosis.
Conclusions:
- IL-13 administration improves neurological outcomes after TBI by reprogramming microglia/macrophage phenotypes and suppressing inflammation.
- IL-13 demonstrates potential as an immunotherapy for promoting long-term recovery from TBI.

