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
Advertise with Us
LGC Clinical Diagnostics

Download Mobile App




Genomic Urine Test Predicts Bladder Cancer Recurrence Before Clinical Symptoms Emerge

By LabMedica International staff writers
Posted on 23 Aug 2023
Image: The UroAmp test detects bladder cancer 12 years before clinical signs and symptoms appear (Photo courtesy of Convergent Genomics)
Image: The UroAmp test detects bladder cancer 12 years before clinical signs and symptoms appear (Photo courtesy of Convergent Genomics)

Bladder cancer, a highly prevalent disease, ranks among the UK's top ten most common cancers and the fifth most common across the European Union. Unfortunately, advanced bladder cancer has a bleak prognosis, as only approximately 50% of patients survive beyond five years after diagnosis. This is largely attributed to late diagnosis and recurring bouts of the disease. Nevertheless, the odds of survival escalate significantly when bladder cancer is identified in its early stages – over 80% of patients diagnosed early survive for at least five years. Now, new research has shown that a non-invasive genomic urine test can detect bladder cancer or predict its recurrence before clinical signs or symptoms appear.

UroAmp from Convergent Genomics (South San Francisco, CA, USA) employs next-generation DNA sequencing to deeply examine 60 key genes related to urothelial cancer, hunting for mutations, while simultaneously broadly assessing genome-wide changes. The outcome is a comprehensive genomic profile offering insights into a patient's cancer prognosis and predicted responses to genome-targeted drug treatments. In a multi-center case-control study, UroAmp's diagnostic and prognostic performance for bladder cancer was measured against standard-of-care methods such as cystoscopy, cytology, and pathology. The study encompassed 581 patients, including those under evaluation for hematuria (blood in urine) and those undergoing post-surgery recurrence monitoring.

Notably, UroAmp demonstrated its capability to detect minimal residual disease in surveillance patients post-cystoscopy and urine cytology, with several predicted recurrences identified over a year before clinical diagnosis. The study revealed that high-risk patients were six times more likely to experience cancer recurrence compared to low-risk patients – a crucial insight given the disease's overall recurrence rate of 60% to 70% following treatment. Additionally, UroAmp showcased a sensitivity of 95% and specificity of 90% in detecting bladder tumors during the initial diagnosis phase. This study builds upon recent breakthroughs from large public research initiatives, further defining the key genome segments that are most commonly mutated in bladder cancer. The research also identified gene associations with tumor grade and bladder invasion. A UroAmp molecular grade prediction algorithm accurately identified high-grade cancers with a positive predictive value of 88% and specificity of 95%. Several mutations discovered in this research are also under study as potential targets for new drugs or for predicting responses to existing FDA-approved therapies.

"These findings demonstrate the power of genomics in detecting minimal residual disease from urine and accurately stratifying a bladder cancer patient's risk to better inform decisions about their treatment and surveillance," said Keyan Salari, MD, PhD, lead study author and Assistant Professor of Urology at Harvard Medical School and Massachusetts General Hospital

"The combination of prognostic insights, therapeutic targets, and the ability to non-invasively monitor genomic response over time with UroAmp presents a new paradigm to enhance clinical trials and to ultimately better personalize care and improve outcomes," added study co-author Trevor Levin, Ph.D., Founder and CEO, Convergent Genomics.

Related Links:
Convergent Genomics 

Gold Member
Veterinary Hematology Analyzer
Exigo H400
3-Part Differential Hematology Analyzer
Swelab Alfa Plus Sampler
New
HAV Rapid Test
OnSite HAV IgG/IgM Rapid Test
New
Droplet Digital PCR System
QX600 AutoDG

Channels

Hematology

view channel
Image: CitoCBC is the world first cartridge-based CBC to be granted CLIA Waived status by FDA (Photo courtesy of CytoChip)

Disposable Cartridge-Based Test Delivers Rapid and Accurate CBC Results

Complete Blood Count (CBC) is one of the most commonly ordered lab tests, crucial for diagnosing diseases, monitoring therapies, and conducting routine health screenings. However, more than 90% of physician... Read more

Immunology

view channel
Image: Schematic overview of the deep learning-based circulating exosome analysis for lung cancer detection (Photo courtesy of Chuan Xu, Cheng Jiang)

Liquid Biopsy Approach to Transform Diagnosis, Monitoring and Treatment of Lung Cancer

Lung cancer continues to be a major contributor to cancer-related deaths globally, with its biological complexity and diverse regulatory processes making diagnosis and treatment particularly difficult.... Read more

Pathology

view channel
Image: The Aiforia Breast Cancer Grading AI solution is CE-IVD marked (Photo courtesy of Aiforia Technologies)

Clinical AI Solution for Automatic Breast Cancer Grading Improves Diagnostic Accuracy

Labs that use traditional image analysis methods often suffer from bottlenecks and delays. By digitizing their pathology practices, labs can streamline their work, allowing them to take on larger caseloads... Read more
Copyright © 2000-2025 Globetech Media. All rights reserved.