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P-selectin-positive microthrombi in traumatic brain injury: an immunohistochemical study
Rossana Cecchi1, Jessika Camatti2, Maria Laura Schirripa2
1University of Modena and Reggio Emilia, Modena, Italy.
Abstract:
Traumatic brain injury (TBI) is characterized by complex secondary injury mechanisms, including microvascular dysfunction and platelet/endothelial activation. The formation of microthrombi within the cerebral microcirculation has been proposed as a contributing factor to secondary brain damage, but its characterization in human post-mortem tissue remains limited. This retrospective study included 30 cases of fatal TBI resulting from road traffic accidents and 13 non-traumatic controls without evidence of cranial or parenchymal brain pathology. Brain samples were collected during medico-legal autopsy and analyzed using immunohistochemistry for P-selectin (CD62P). Microthrombi were evaluated using a semi-quantitative approach based on 12 non-overlapping microscopic fields per section. Cases were grouped according to survival intervals. P-selectin-positive microthrombi were detectable at early stages after trauma, including within the first hour. Their number increased in the early post-traumatic period, with the highest values observed within 4-48 h, followed by a progressive decline at longer survival intervals. Morphological analysis showed a transition from P-selectin-positive aggregates compatible with early platelet/endothelial activation to thrombotic formations with an increasing cellular component morphologically compatible with leukocytes over time. Control cases showed minimal or absent P-selectin expression, with significantly lower counts than TBI cases. P-selectin-positive microthrombi can be identified in human post-mortem brain tissue following TBI and show a time-related distribution, supporting the involvement of platelet/endothelial activation and thromboinflammatory microvascular alterations in secondary brain injury. Further studies are needed to validate these findings and to better define their specificity, temporal significance, and forensic applicability.
Insights
Microthrombi expressing P-selectin are found in the brain after traumatic brain injury (TBI). These P-selectin-positive microthrombi indicate early platelet and endothelial activation, contributing to secondary brain damage.
Area of Science:
- Neuroscience
- Pathology
- Immunology
Background:
- Traumatic brain injury (TBI) involves complex secondary injury mechanisms.
- Microvascular dysfunction and platelet/endothelial activation are key TBI components.
- Microthrombi formation in cerebral microcirculation is a suspected contributor to secondary brain damage, but human post-mortem data is scarce.
Purpose of the Study:
- To investigate the presence and characteristics of P-selectin-positive microthrombi in human post-mortem brain tissue following TBI.
- To determine the temporal distribution of these microthrombi in relation to survival intervals after TBI.
- To assess the role of platelet/endothelial activation and thromboinflammation in TBI-related secondary brain injury.
Main Methods:
- Retrospective analysis of 30 fatal TBI cases (road traffic accidents) and 13 non-traumatic controls.
- Immunohistochemistry using P-selectin (CD62P) on post-mortem brain samples.
- Semi-quantitative evaluation of microthrombi in 12 fields per section, grouped by survival intervals.
Main Results:
- P-selectin-positive microthrombi were detected early after TBI, even within the first hour.
- Microthrombi counts peaked between 4-48 hours post-trauma, declining thereafter.
- Morphological analysis revealed a transition from platelet/endothelial aggregates to leukocyte-inclusive thrombi over time.
- Control cases showed minimal P-selectin expression compared to TBI cases.
Conclusions:
- P-selectin-positive microthrombi are identifiable in human post-mortem TBI brain tissue.
- Their time-related distribution supports the involvement of thromboinflammatory microvascular alterations in secondary brain injury.
- Findings highlight the significance of platelet/endothelial activation in TBI pathogenesis.

