We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress hp
Sign In
Advertise with Us
LGC Clinical Diagnostics

Download Mobile App




Protein Biomarker Identifies Damaged Brain Wiring After Concussion

By LabMedica International staff writers
Posted on 08 Dec 2015
Print article
Image: SNTF stained axons (brown) shortly after traumatic brain injury. The undulating course suggests damage to the internal skeleton, and the SNTF stain shows the high calcium concentration-activated enzymes that destroy the axon from the inside out (Photo courtesy of the laboratory of Douglas Smith, MD).
Image: SNTF stained axons (brown) shortly after traumatic brain injury. The undulating course suggests damage to the internal skeleton, and the SNTF stain shows the high calcium concentration-activated enzymes that destroy the axon from the inside out (Photo courtesy of the laboratory of Douglas Smith, MD).
Mild traumatic brain injury (TBI) or concussion is often defined as a brief loss of normal brain function typically following a blow to the head and is by far the most common form of TBI and frequently does not even receive medical attention.

A brain protein called alpha II-spectrin N-terminal fragment (SNTF), which rises in the blood after some concussions, signals the type of brain damage that is thought to be the source of cognitive impairments, and may be useful as a biomarker of permanent axonal injury.

Scientists at University of Pennsylvania School of Medicine (Philadelphia, PA, USA) selected TBI cases to include 18 patients who died acutely following severe TBI, with survival times ranging from six hours to one week. Detailed reports from the diagnostic autopsy and/or forensic reports were available for all cases and indicated a history of a single severe TBI, supported by autopsy findings. TBI cases were compared to material from 16 age/sex-matched controls, acquired at routine diagnostic post-mortem at the same institution. Controls had no documented history of TBI.

Paraffin-embedded tissue from human postmortem studies was subjected to routine histology including hematoxylin and eosin (H&E) staining as well as immunohistological techniques. A synthetic peptide corresponding to the calpain-generated neoepitope in SNTF (CAQQEVY) was conjugated covalently to maleimide-activated Sepharose via the cysteine side chain and the resulting resin used for affinity purification of SNTF-specific antibodies. Adjacent, serial sections were labeled with an antibody reactive for the N-terminal amino acids 66–81 of the amyloid precursor protein (APP). Some sections were coverslipped using fluorescence mounting medium and visualized using a confocal Eclipse Ti microscope (Nikon; Tokyo, Japan).

Immunohistochemistry (IHC) specific for SNTF was compared to that of amyloid precursor protein (APP), the current standard for diffuse axonal injury (DAI) diagnosis, and other known markers of axonal pathology including non-phosphorylated neurofilament-H (SMI-32), neurofilament-68 (NF-68) and compacted neurofilament-medium (RMO-14) using double and triple immunofluorescent labeling. Supporting its use as a biomarker of DAI, SNTF immunoreactive axons were observed at all time points following both human severe TBI and in the model of mild TBI.

Robert Siman, PhD, a coauthor of the study, said, “The study suggests that we may soon have a blood biomarker for concussion akin to the standard blood test used to detect cardiac damage from heart attacks. SNTF in the blood of a concussed individual may provide a specific diagnosis of diffuse axonal injury as well as the process of axonal degeneration. The study was published on November 20, 2015, in the journal Acta Neuropathologica.

Related Links:

University of Pennsylvania School of Medicine 
Nikon 


Gold Member
Antipsychotic TDM Assays
Saladax Antipsychotic Assays
Antipsychotic TDM AssaysSaladax Antipsychotic Assays
New
Gold Member
Syphilis Screening Test
VDRL Antigen MR
New
Hepatitis B Virus Test
HBs Ab – ELISA

Print article

Channels

Clinical Chemistry

view channel
Image: The new saliva-based test for heart failure measures two biomarkers in about 15 minutes (Photo courtesy of Trey Pittman)

POC Saliva Testing Device Predicts Heart Failure in 15 Minutes

Heart failure is a serious condition where the heart muscle is unable to pump sufficient oxygen-rich blood throughout the body. It ranks as a major cause of death globally and is particularly fatal for... Read more

Hematology

view channel
Image: The smartphone technology measures blood hemoglobin levels from a digital photo of the inner eyelid (Photo courtesy of Purdue University)

First-Of-Its-Kind Smartphone Technology Noninvasively Measures Blood Hemoglobin Levels at POC

Blood hemoglobin tests are among the most frequently conducted blood tests, as hemoglobin levels can provide vital insights into various health conditions. However, traditional tests are often underutilized... Read more

Immunology

view channel
Image: Under a microscope, DNA repair is visible as bright green spots (“foci”) in the blue-stained cell DNA. Orange highlights actively growing cancer cells (Photo courtesy of WEHI)

Simple Blood Test Could Detect Drug Resistance in Ovarian Cancer Patients

Every year, hundreds of thousands of women across the world are diagnosed with ovarian and breast cancer. PARP inhibitors (PARPi) therapy has been a major advancement in treating these cancers, particularly... Read more

Microbiology

view channel
Image: HNL Dimer can be a novel and potentially useful clinical tool in antibiotic stewardship in sepsis (Photo courtesy of Shutterstock)

Unique Blood Biomarker Shown to Effectively Monitor Sepsis Treatment

Sepsis remains a growing problem across the world, linked to high rates of mortality and morbidity. Timely and accurate diagnosis, along with effective supportive therapy, is essential in reducing sepsis-related... Read more
Copyright © 2000-2024 Globetech Media. All rights reserved.