Research

Blood Biomarkers of Brain Injury, Explained

Medically reviewed by Dr. Matt DeGaetano

When brain cells are injured, they release specific proteins into the bloodstream. Measuring those proteins gives physicians objective information that does not depend on how a patient describes their symptoms.

GFAP (glial fibrillary acidic protein)

is a structural protein found in astrocytes, the support cells of the brain. It rises in blood after astrocyte injury [, ].

UCH-L1 (ubiquitin C-terminal hydrolase L1)

is an enzyme concentrated in the cell bodies of neurons. It rises in blood after neuronal injury [, ].

S100B

is a calcium-binding protein found mainly in astrocytes. It has been studied for decades, particularly in Europe, as a screening marker after head injury [, ].

Neurofilament light (NfL)

is a structural protein of axons, the long fibers that carry signals between neurons. It rises in blood after axonal injury and has become one of the most studied markers of neurodegeneration [, ].

The regulatory history

In February 2018, the FDA authorized the first blood test for evaluating mild TBI, measuring GFAP and UCH-L1, through its De Novo pathway []. In January 2021, the FDA cleared a rapid plasma version of the test []. In March 2023, it cleared a widely available core-laboratory version []. In April 2024, it cleared a whole-blood version that runs at the patient's bedside in 15 minutes [].

Each of these clearances covers a specific use: helping physicians decide, within hours of injury, whether a head CT is needed. In the pivotal multicenter trial behind the 2018 authorization, the test predicted the absence of intracranial injury on CT with high sensitivity and a negative predictive value above 99 percent [, ].

What biomarkers add beyond the scan

A normal CT does not mean an uninjured brain. In the multicenter TRACK-TBI study published in The Lancet Neurology, roughly one in four TBI patients with a normal CT had visible injury on MRI, and blood GFAP levels distinguished those patients from patients with normal MRI with an area under the curve of 0.78 []. Day-of-injury GFAP and UCH-L1 levels have also been shown to predict six-month functional outcome, meaning the markers carry information about prognosis, not only about the need for a scan [].

The honest boundaries

Blood biomarkers are a supportive laboratory finding, not a stand-alone diagnosis. The ACRM diagnostic criteria treat them as one contributing element within a clinical evaluation []. FDA clearances cover testing within 12 to 24 hours of injury for CT-triage purposes [, , , ]. Testing outside those windows, and testing for markers such as NfL, is performed as laboratory-developed testing in certified clinical laboratories and interpreted by a physician within the full clinical picture. The published research on those longer time windows is summarized on the timing page.