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临床试验/NCT07636213
NCT07636213尚未招募不适用

BRIDGE-US: Bridging Readiness in Deployed Neurotrauma Gaps for Excellence

University of Chicago1 个研究点 分布在 1 个国家目标入组 270 人开始时间: 2026年7月1日最近更新:

试验速览

阶段
不适用
状态
尚未招募
入组人数
270
试验地点
1

研究概览

简要总结

The purpose of this research study is to prospectively collect biospecimens, imaging, and clinical data from patients with penetrating brain injuries across high-volume PBI sites in the US (including UChicago). Biospecimens will undergo biomarker analysis - biomarker data specific to PBI is extremely limited, and could provide critical insight to outcome identification and clinical decision making.

This data will be used to build the first comprehensive PBI Data Commons, biorepository, and imaging repository which will create the infrastructure necessary to close critical knowledge gaps, advance biomarker discovery specific to PBI, and provide the foundation for future research aimed at improving prognostication and treatment for patients with this devastating injury.

详细描述

Penetrating brain injury (PBI) is one of the most devastating and understudied forms of traumatic brain injury (TBI), characterized by the violation of the skull and brain parenchyma by foreign objects such as bullets or shrapnel. Unlike blunt TBI, PBI involves unique mechanical and secondary injury patterns, including direct tissue destruction, vascular damage, hemorrhage, cavitation, and axonal shearing. These injuries often lead to severe disability or death, particularly in military and civilian populations exposed to ballistic trauma. Despite the increasing burden of firearm-related PBI in civilian trauma centers and the operational relevance in military settings, there remains a significant lack of structured data, standardized terminology, and biological understanding to guide prognostication or treatment decisions. This knowledge gap has fostered therapeutic nihilism, resulting in high rates of early withdrawal of life-sustaining therapies and a lack of targeted clinical pathways for these patients.

Emerging biomarker research in blunt TBI has identified several promising molecular indicators that reflect different aspects of brain injury. These include S100 calcium-binding protein B (S100B), glial fibrillary acidic protein (GFAP), ubiquitin C-terminal hydrolase L1 (UCH-L1), and neurofilament light chain (NFL), which are associated with glial activation, neuronal injury, and axonal damage, respectively. Elevated levels of GFAP and UCH-L1, for example, have been correlated with injury severity and poor outcomes in both civilian and military TBI populations, while NFL has shown potential as a predictor of long-term cognitive deficits. However, biomarker data specific to PBI is extremely limited. The distinct mechanical forces and injury patterns of PBI suggest that biomarker profiles may differ significantly from those seen in blunt trauma, highlighting the need for focused investigation. The temporal profiles of biomarkers have been assessed in blunt TBI but not in PBI. Advancing biomarker discovery in PBI could help identify patients at risk of poor outcomes, support early clinical decision-making, and differentiate PBI from overlapping conditions.

Beyond molecular markers, imaging plays a critical role in the diagnosis and management of PBI. High-resolution structural imaging, including computed tomography (CT) and advanced magnetic resonance imaging (MRI) techniques such as diffusion tensor imaging (DTI), provides critical insights into the extent of parenchymal damage, vascular injury, and axonal disruption. However, imaging access is often limited in prehospital or austere environments, especially in military settings. A combined approach leveraging clinical data, biomarkers, and imaging holds promise for improving the characterization of PBI and guiding treatment decisions across care environments.

The study's integrated approach will create the infrastructure necessary to close critical knowledge gaps, advance biomarker discovery specific to PBI, and provide the foundation for future research aimed at improving prognostication and treatment for patients with this devastating injury.

研究设计

研究类型
Observational
观察模型
Other
时间视角
Prospective

入排标准

年龄范围
16 Years 至 —(Child, Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Age: Subjects aged 16 years and older
  • Injury Type/Evidence: Patients with a confirmed PBI as demonstrated by head imaging or physical exam (evidence of dural penetration by a projectile)
  • Timeframe: Patients must be enrolled within 8 hours of injury

排除标准

  • No subjects will be excluded based on gender or ethnicity for this study. Subjects under the age of 16 will be excluded. These subjects differ significantly in terms of neurodevelopment, physiology, and trauma response, which introduces heterogeneity that could confound study results. Additionally, pediatric PBI has distinct etiologies, treatment pathways, and prognostic indicators compared to adult PBI (note that age 16 and up are treated medically as adults).
  • FULL EXCLUSION CRITERIA:
  • Dead on Arrival (DOA): Patients who receive CPR with no return of pulse
  • Non-penetrating injury: Patients with head injuries that do not include dural penetration
  • Polytrauma: Patients with penetrating or blunt injuries to other parts of the body
  • Known or suspected pregnancy
  • Known or suspected prisoner

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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