LabMedica

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

New Tool Enables Direct Detection of HPV mRNA in FFPE Tissue Specimens

By LabMedica International staff writers
Posted on 08 Jul 2022
Print article
Image: Automated RNAscope ISH fits seamlessly into pathology workflows (Photo courtesy of Bio-Techne)
Image: Automated RNAscope ISH fits seamlessly into pathology workflows (Photo courtesy of Bio-Techne)

Human papillomavirus (HPV) is a major cause of oropharyngeal squamous cell carcinoma (OPSCC) and has emerged as a valuable diagnostic marker that significantly impacts clinical management. Immunohistochemistry (IHC) for p16 protein, a surrogate marker, is widely used for HPV detection in OPSCC; however, misdiagnosis rates of 5-20% have been reported when using p16. The presence of E6/E7 mRNA is considered the gold standard for diagnosing HPV-related OPSCC. Now, a highly accurate new tool enables direct detection of HPV mRNA in FFPE tissue specimens of patients diagnosed with OPSCC to aid in the identification of high-risk HPV.

Bio-Techne’s (Minneapolis, MN, USA) newly-launched RNAscope ISH Probe High Risk HPV offers a superior method for detection of E6/E7 mRNA when assessing HPV status in OPSCC patients, enabling clinicians to provide a more accurate diagnosis and improve patient management. RNAscope in situ hybridization (ISH) is a highly sensitive and specific spatial biology technology. Its double Z probe design enables an exceptional signal-to-noise ratio when staining formalin-fixed paraffin-embedded (FFPE) tissue specimens. RNAscope ISH allows users to visualize and localize biomarker expression patterns by light microscopy. Over the past 10 years, RNAscope ISH has proven its reliability, reproducibility, and robustness with more than 6,000 peer reviewed publications, making it a powerful solution for anatomic pathologists.

RNAscope ISH Probe High Risk HPV is used in an RNAscope ISH assay for the qualitative detection of HPV E6/E7 mRNA in FFPE tissue specimens. RNAscope ISH Probe High Risk HPV is for use in clinical laboratories with the CE-IVD marked BOND RNAscope Brown Detection kit on the automated Leica Biosystems BOND-III stainer. The assay detects high-risk HPV types 16, 18, 26, 31, 33, 35, 39, 45, 51, 52, 53, 56, 58, 59, 66, 68, 73, and 82. Bio-Techne has launched the CE-IVD marked RNAscope ISH Probe High Risk HPV in Europe.

"Bio-Techne's innovative tissue diagnostic solutions empower our customers to serve patients and improve lives," said Kim Kelderman, President, Diagnostics and Genomics Segment of Bio-Techne. "We are excited to launch the new CE-IVD RNAscope ISH Probe High Risk HPV, which provides pathologists a highly accurate tool for the direct detection of HPV mRNA to inform treatment selection in oropharyngeal squamous cell carcinoma patients."

Related Links:
Bio-Techne 

Gold Member
Veterinary Hematology Analyzer
Exigo H400
Verification Panels for Assay Development & QC
Seroconversion Panels
New
Lyme Disease Test
Lyme IgG/IgM Rapid Test Cassette
New
Immunofluorescence Analyzer
MPQuanti

Print article

Channels

Molecular Diagnostics

view channel
Image: The study investigated D-dimer testing in patients who are at higher risk of pulmonary embolism (Photo courtesy of Adobe Stock)

D-Dimer Testing Can Identify Patients at Higher Risk of Pulmonary Embolism

Pulmonary embolism (PE) is a commonly suspected condition in emergency departments (EDs) and can be life-threatening if not diagnosed correctly. Achieving an accurate diagnosis is vital for providing effective... 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
Sekisui Diagnostics UK Ltd.