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Updated: Dec 3, 2025

Acute Brain Trauma in Mice Followed By Longitudinal Two-photon Imaging
Published on: April 6, 2014
Targeted deletions of complement lectin pathway genes improve outcome in traumatic brain injury, with MASP-2 playing
D Mercurio1, M Oggioni1, S Fumagalli1
1Department of Neuroscience, Istituto di Ricerche Farmacologiche Mario Negri IRCCS, via Mario Negri 2, 20156, Milan, Italy.
Abstract:
The lectin pathway (LP) of complement activation is believed to contribute to brain inflammation. The study aims to identify the key components of the LP contributing to TBI outcome as possible novel pharmacological targets. We compared the long-term neurological deficits and neuropathology of wild-type mice (WT) to that of mice carrying gene deletions of key LP components after experimental TBI. WT or MASP-2 (Masp2-/-), ficolin-A (Fcna-/-), CL-11 (Colec11-/-), MASP-1/3 (Masp1-/-), MBL-C (Mbl2-/-), MBL-A (Mbl1-/-) or MBL-/- (Mbl1-/-/Mbl2-/-) deficient male C57BL/6J mice were used. Mice underwent sham surgery or TBI by controlled cortical impact. The sensorimotor response was evaluated by neuroscore and beam walk tests weekly for 4 weeks. To obtain a comparative analysis of the functional outcome each transgenic line was rated according to a health score calculated on sensorimotor performance. For selected genotypes, brains were harvested 6 weeks after injury for histopathological analysis. MASP-2-/-, MBL-/- and FCN-A-/- mice had better outcome scores compared to WT. Of these, MASP-2-/- mice had the best recovery after TBI, showing reduced sensorimotor deficits (by 33% at 3 weeks and by 36% at 4 weeks). They also showed higher neuronal density in the lesioned cortex with a 31.5% increase compared to WT. Measurement of LP functional activity in plasma from MASP-2-/- mice revealed the absence of LP functional activity using a C4b deposition assay. The LP critically contributes to the post-traumatic inflammatory pathology following TBI with the highest degree of protection achieved through the absence of the LP key enzyme MASP-2, underlining a therapeutic utility of MASP-2 targeting in TBI.
Insights
The lectin pathway (LP) critically contributes to brain inflammation after traumatic brain injury (TBI). Targeting MASP-2, a key LP enzyme, significantly improves neurological recovery and reduces brain damage following TBI.
Area of Science:
- Neuroscience
- Immunology
- Complement System Biology
Background:
- The lectin pathway (LP) of complement activation is implicated in neuroinflammation.
- Understanding LP's role in traumatic brain injury (TBI) is crucial for developing new therapies.
Purpose of the Study:
- To identify key lectin pathway components contributing to TBI outcomes.
- To evaluate the therapeutic potential of targeting LP components for TBI treatment.
Main Methods:
- Comparison of long-term neurological deficits and neuropathology in wild-type mice versus mice deficient in specific LP components (MASP-2, ficolin-A, CL-11, MASP-1/3, MBL-C, MBL-A, MBL) after experimental TBI.
- Assessment of sensorimotor function using neuroscore and beam walk tests over 4 weeks.
- Histopathological analysis of brain tissue 6 weeks post-injury.
- Functional assessment of LP activity via C4b deposition assay.
Main Results:
- Mice deficient in MASP-2, MBL, or FCN-A showed improved outcomes compared to wild-type mice after TBI.
- MASP-2 deficient mice exhibited the best recovery, with significantly reduced sensorimotor deficits and increased neuronal density in the lesioned cortex.
- Absence of MASP-2 function was confirmed, correlating with improved TBI outcomes.
Conclusions:
- The lectin pathway plays a critical role in the inflammatory response and pathology following TBI.
- Targeting MASP-2, a key enzyme in the LP, offers significant therapeutic potential for improving recovery after TBI.

