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.

LabMedica

Download Mobile App
Recent News Expo Clinical Chem. Molecular Diagnostics Hematology Immunology Microbiology Pathology Technology Industry Focus

Assay Developed to Measure Anti-Factor VIII Antibodies

By LabMedica International staff writers
Posted on 21 Nov 2022
Print article
Image: The compact xMAP INTELLIFLEX system is a flow-based, multiplex platform that simplifies the workflow by combining the established performance of xMAP technology (Photo courtesy of Thermo Fisher Scientific)
Image: The compact xMAP INTELLIFLEX system is a flow-based, multiplex platform that simplifies the workflow by combining the established performance of xMAP technology (Photo courtesy of Thermo Fisher Scientific)

Hemophilia is a mostly inherited genetic disorder that impairs the body's ability to make blood clots, a process needed to stop bleeding. This results in people bleeding for a longer time after an injury, easy bruising, and an increased risk of bleeding inside joints or the brain.

The development of neutralizing (inhibitors) and non-neutralizing antibodies (NNAs) is a complication to factor replacement therapy in hemophilia. The diagnostic methods available lack standardization, have high inter-laboratory variation, and false-negative as well as false-positive results may affect treatment.

Medical Laboratory Scientists at the University and Regional Laboratories Region Skåne (Skåne, Sweden) analyzed 112 samples obtained from patients with hemophilia A. They developed a diagnostic approach for measuring neutralizing inhibitors and non-neutralizing antibodies (NNAs) to factor VIII (FVIII) based on the xMAP-based fluorescence immunoassay (xFLI, Luminex Corporation, Austin, TX, USA).

The diagnostic approach developed by the scientists involved an xFLI system that they prepared in the laboratory. With this approach, they used commercially available FVIII concentrates coupled to dye-labeled magnetic beads, which could then be used for immunoassays. The FVIII concentrates were a full-length product (Advate, Lexington, MA, USA) and a product lacking in B domain (NovoEight, Plainsboro, NJ, USA). They compared xFLI-based results with those obtained using an enzyme-linked immunosorbent assay (ELISA) and another approach called the chromogenic Bethesda-Nijmegen Assay (CBA).

The investigators reported that the xFLI system using Advate FVIII concentrate showed a statistically significant correlation with the ELISA system in detecting anti-FVIII antibodies. In analyses of 86 samples, the xFLI system using Advate also showed a significant correlation with results from the CBA system for detecting anti-FVIII antibodies. In investigations comparing the xFLI system with NovoEight FVIII concentrate, significant correlations were also seen with the ELISA approach and with the CBA approach.

Analyses using ELISA and CBA methods demonstrated a concordance of 69.8% with each other. Overall concordance between the xFLI system and the ELISA approach was calculated to be 82.1%, and between the xFLI system and for the CBA approach it was 77.9%. Sensitivity also appeared improved with xFLI than with both ELISA and CBA approaches.

The authors concluded that the anti-FVIII antibody xFLI method is adaptable to clinical practice and more sensitive and reproducible than ELISA and CBA. Actual NNA titers were determined to both full-length and B-domain deleted FVIII. The xFLI is thus valuable for confirmation of all anti-FVIII antibodies. The study was published on October 3, 2022 in the journal Haemophilia.

Related Links:
University and Regional Laboratories Region Skåne 
Luminex Corporation 
Advate 
NovoEight 

Gold Member
Pharmacogenetics Panel
VeriDose Core Panel v2.0
Verification Panels for Assay Development & QC
Seroconversion Panels
New
Lyme Disease Test
Lyme IgG/IgM Rapid Test Cassette
New
Piezoelectric Micropump
Disc Pump

Print article

Channels

Molecular Diagnostics

view channel
Image: The experimental blood test accurately indicates severity and predicts potential recovery from spinal cord injury (Photo courtesy of 123RF)

Blood Test Identifies Multiple Biomarkers for Rapid Diagnosis of Spinal Cord Injury

The National Institutes of Health estimates that 18,000 individuals in the United States sustain spinal cord injuries (SCIs) annually, resulting in a staggering financial burden of over USD 9.... Read more

Immunology

view channel
Image: The findings were based on patients from the ADAURA clinical trial of the targeted therapy osimertinib for patients with NSCLC with EGFR-activated mutations (Photo courtesy of YSM Multimedia Team)

Post-Treatment Blood Test Could Inform Future Cancer Therapy Decisions

In the ongoing advancement of personalized medicine, a new study has provided evidence supporting the use of a tool that detects cancer-derived molecules in the blood of lung cancer patients years after... Read more

Microbiology

view channel
Image: Schematic representation illustrating the key findings of the study (Photo courtesy of UNIST)

Breakthrough Diagnostic Technology Identifies Bacterial Infections with Almost 100% Accuracy within Three Hours

Rapid and precise identification of pathogenic microbes in patient samples is essential for the effective treatment of acute infectious diseases, such as sepsis. The fluorescence in situ hybridization... Read more

Industry

view channel
Image: Tumor-associated macrophages visualized using the Multiomic LS Assay (Photo courtesy of ACD)

Leica Biosystems and Bio-Techne Expand Spatial Multiomic Collaboration

Bio-Techne Corporation (Minneapolis, MN, USA) has expanded the longstanding partnership between its spatial biology brand, Advanced Cell Diagnostics (ACD, Newark, CA, USA), and Leica Biosystems (Nussloch,... Read more
Sekisui Diagnostics UK Ltd.