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Active, Not Recruiting

NCT Number: NCT05201833

TRACK-TBI Longitudinal Biomarker Study

The overarching goal of this study is to improve understanding of the long-range natural history of TBI by extending follow-up of a previously enrolled cohort (TRACK-TBI) beyond the first 12 months after injury.

Active, Not Recruiting

This study is active but is not currently recruiting participants.

Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Observational

Primary location

University of California, San Francisco, San Francisco, California, United States

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About this study

This longitudinal observational study is part of the Transforming Research and Clinical Knowledge in Traumatic Brain Injury (TRACK-TBI) initiative, a multi-institutional project designed to characterize the acute and longer-term clinical, neuroimaging, and blood biomarker features of TBI. TRACK-TBI enrolled TBI patients at 18 Level 1 Trauma Centers in the US, across the age and injury spectrum. This study will extend the follow-up period for TRACK-TBI participants. The extensive clinical, imaging, and biomarker data that has already been collected in these TRACK-TBI participants, in combination with the extended longitudinal data, will allow for the identification of risk factors, co-morbidities, and prognostic biomarkers of TBI. Consequently, the extension of study follow-up will help to determine negative neurological and psychological outcomes of individuals who experienced a TBI compared to healthy and orthopedic controls.

TBI is a complex disease process, in which diverse injury subtypes and multiple molecular mechanisms overlap. There is a need to identify and measure these subtypes, in order to develop precision medicine approaches where specific pathobiological processes are targeted by mechanistically appropriate therapies. The absence of validated biomarkers in the neurotrauma field is a barrier to drug development in this area, and there are currently no disease-modifying therapies that limit the burden of TBI. Biomarkers specific for injury mechanisms should be identified to select participants for clinical trials of targeted therapies (prognostic biomarkers), as well as to confirm target engagement and biological efficacy (pharmacodynamic biomarkers).

Traumatic axonal injury (TAI) is a common pathologic consequence of TBI, and underlies some of the most disabling consequences of injury, including cognitive and affective problems. TAI progresses for years after injury in a subset of patients, and is a key mechanism for long-term neurodegeneration after TBI. Recent breakthroughs in pre-clinical models indicate that novel therapeutic interventions, including strategies such as targeting the mitochondrial transition pore, or promoting axonal maintenance factors are effective in promoting resilience of injured axons and improving neurologic outcome after experimental TBI. Translation of such promising therapies into clinical trials will require prognostic biomarkers that can measure TAI in individual patients, so they can be selected for early phase studies of axon-protective therapies, as well pharmacodynamic biomarkers than can measure the biologic efficacy of such treatments. Currently, the best biomarker for TAI is fractional anisotropy (FA) and mean diffusivity (MD) of white matter tracts, measured using diffusion tensor imaging (DTI) MRI. This technique, while robust, is poorly suited for dynamic longitudinal assessments, and measures the end-result of axonal degeneration, rather than an early step in the neurodegenerative process. Recently, the ability to assay axonal proteins in peripheral blood has made it potentially feasible to assess of TAI rapidly, inexpensively, and longitudinally. The axonal protein that holds the most promise as a biomarker of axonal degeneration is neurofilament light chain (NF-L). This project aims to address the gaps in the existing literature regarding specific biomarkers for injury mechanisms and outcomes following TBI. Furthermore, it is likely that a sophisticated understanding of the subtypes and molecular mechanisms of TBI will be required to successfully develop therapies to treat these subtypes.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • LONGITUDINAL Telephone Assessment:
  • Participated in TRACK-TBI,
  • At least two years post injury, and
  • Completed at least 1 GOSE during the TRACK-TBI follow-up assessments
  • LONGITUDINAL BIOMARKER In-Person Assessment:

Must complete at least one Longitudinal Telephone Assessment and fall into one of the following groups:

  • Group 1- Completed TRACK-TBI 6M MRI and are stable or improved with regard to Criteria for Establishing Decline
  • Group 2- Criteria for Establishing Decline met when comparing the Telephone Assessments to the last completed TRACK-TBI assessment
  • Group 3- All TRACK-TBI orthopedic controls

Ability of participant or legally authorized representative to provide informed consent

Exclusion criteria

  • Dementia diagnosed prior to the index TBI

Treatment and study plan

Telephone Outcome Assessment

Behavioral

Assessments will be administered over the telephone to evaluate participant outcome status

In-Person Outcome Assessment

Behavioral

Assessments will be administered to evaluate participant outcome status

3T Magnetic Resonance Imaging (MRI)

Procedure

Participants will be asked to complete a 3T MRI

Blood draw

Procedure

Blood Draw for Plasma, DNA, Serum, RNA

Primary outcomes

  1. Glasgow Outcome Scale Extended (GOSE)

    Time frame: ~4-6 years post-injury

    The GOSE provides an overall measure of functional status based on information on cognition, independence, employability, and social/community participation collected via structured interview. Individuals are described by one of the eight outcome categories: Dead (1); Vegetative State (2); Lower Severe Disability (3); Upper Severe Disability (4); Lower Moderate Disability (5); Upper Moderate Disability (6); Lower Good Recovery (7) and Upper Good Recovery (8). Good Recovery is defined as a score of 7-8, Moderate Disability is defined by a score of 5-6 and Severe Disability is defined by a score of 3-4.

Secondary outcomes

  1. Serum NF-L (neurofilament light chain)

    Time frame: ~4-6 years post-injury

    Using advanced blood-based assay platforms, levels of blood biomarkers neurofilament light chain (NF-L) will be measured to validate the utility as a biomarkers for traumatic axonal injury (TAI).

Sponsors and collaborators

Lead sponsor

University of Pennsylvania

Other

Collaborators

  • National Football League
  • National Institute of Neurological Disorders and Stroke (NINDS)

Registry information

Official study title

Transforming Research and Clinical Knowledge in Traumatic Brain Injury (TRACK-TBI)- a Longitudinal Biomarker Study

Acronym: TRACK-BIO

Important dates

Study start
2022
Primary completion
2026
Study completion
2027
First posted
Jan 21, 2022
Registry last updated
May 29, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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