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Biomarkers in the Brain Oxygen Optimization in Severe Traumatic Brain Injury Trial

Biomarkers in the Brain Oxygen Optimization in Severe Traumatic Brain Injury Trial (BioBOOST)

Status
Active, not recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04565119
Acronym
BioBOOST
Enrollment
300
Registered
2020-09-25
Start date
2020-12-20
Completion date
2027-12-31
Last updated
2026-05-06

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

TBI (Traumatic Brain Injury)

Keywords

Biomarkers

Brief summary

BioBOOST is a multicenter, observational study of the effect of derangements in brain physiologic parameters on brain injury biomarker levels in patients with severe traumatic brain injury.

Detailed description

This study is a prospective observational, multi-center study of subjects enrolled in the Brain Oxygen Optimization in Severe Traumatic Brain Injury-Phase 3 (BOOST-3) trial. BOOST-3 is a multicenter, randomized, blinded-endpoint, comparative effectiveness study of goal-directed critical care based upon monitoring of brain tissue oxygen and intracranial pressure versus monitoring of intracranial pressure alone in patients with severe traumatic brain injury. The investigators will obtain an initial set of biospecimens (serum, plasma, cerebrospinal fluid (CSF), DNA and RNA) shortly after randomization into BOOST-3 and within 24 hours of injury. Subsequent biospecimens will be obtained every 8 hours for the first 24 hours post-enrollment. This will allow the characterization of acute changes in biomarker levels. On study days 2 through 5, biospecimens will be obtained twice a day to allow characterization of sub-acute changes in biomarker levels, without overburdening study teams or taking too much blood from individual subjects. On study days 7 and 14 and at 6-months post-enrollment, one set of biospecimen will be obtained, preferably in the morning. Biospecimens collected at each time point will consist of 6 ml of whole blood for serum extraction, 6 ml of whole blood for plasma extraction, 2.5 ml of whole blood for RNA extraction (a total of 14.5 ml \[one tablespoon\] of blood) and 5 ml of cerebrospinal fluid (CSF). BioBOOST will utilize data collected in the BOOST-3 trial. This data includes: demographic data and clinical data such as injury characteristics, vital signs, head CT findings, laboratory data and data on physiologic parameters such as intracranial pressure (ICP), partial pressure of brain tissue oxygen (PbtO2), mean arterial pressure (MAP), and cerebral perfusion pressure (CPP), among others. BioBOOST will also utilize outcome assessment data collected from BOOST-3 participants at 6 months after injury (180 Days ± 30 days). Trained study personnel who are blinded to the treatment arm will administer the outcome assessments, which will include the measures listed below. The battery includes measures of functional status (GOSE), cognition, and emotional health. The 6-month follow-up interview will be done in person whenever possible. It may be done by telephone or video conference with participants where an in-person interview is not possible.

Interventions

There are no interventions being tested in the Bio-BOOST study.

Sponsors

University of Pennsylvania
Lead SponsorOTHER
University of Michigan
CollaboratorOTHER
University of Pittsburgh
CollaboratorOTHER
Medical University of South Carolina
CollaboratorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Enrolled in BOOST-3 (this is an ancillary study to the BOOST-3 trial) * BOOST-3 participant is enrolled at a BioBOOST site * Able to maintain initial blood sample within 24 hours of injury * Provide proxy informed consent

Exclusion criteria

* Profoundly anemic (subjects who are profoundly anemic require blood transfusion) * Age less than 18 years

Design outcomes

Primary

MeasureTime frameDescription
Peak levels of glial fibrillary acidic protein (GFAP)First 5 days after injuryThis hypothesis will be tested via linear regression model, with peak GFAP level as the response variable and hypoxia exposure as the predictor of interest. Hypoxia exposure will be defined as the depth and duration of PbtO2 \< 20 mmHg during the first 48 hours of injury, quantified using area under the curve (AUC) methodology.
Peak levels of ubiquitin C-terminal hydrolase L1 (UCH-L1)First 5 days after injuryThis hypothesis will be tested via linear regression model, with peak UCH-L1level as the response variable and hypoxia exposure as the predictor of interest. Hypoxia exposure will be defined as the depth and duration of PbtO2 \< 20 mmHg during the first 48 hours of injury, quantified using AUC methodology.
Peak levels of neurofilament light chain (NfL)First 5 days after injuryThis hypothesis will be tested via linear regression model, with peak NfL level as the response variable and hypoxia exposure as the predictor of interest. Hypoxia exposure will be defined as the depth and duration of PbtO2 \< 20 mmHg during the first 48 hours of injury, quantified using AUC methodology.
Peak levels of TauFirst 5 days after injuryThis hypothesis will be tested via linear regression model, with peak Tau level as the response variable and hypoxia exposure as the predictor of interest. Hypoxia exposure will be defined as the depth and duration of PbtO2 \< 20 mmHg during the first 48 hours of injury, quantified using AUC methodology.

Countries

United States

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: May 7, 2026