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

First-of-Its-Kind Saliva-Based Rapid Test Uses DNA Aptamer to Detect COVID-19

By LabMedica International staff writers
Posted on 18 May 2022
Image: AptameX DNA Aptamer-based COVID-19 rapid test has received CE Mark (Photo courtesy of Achiko)
Image: AptameX DNA Aptamer-based COVID-19 rapid test has received CE Mark (Photo courtesy of Achiko)

As the world moves beyond the acute phase of the pandemic amidst the slow rate of vaccination in developing countries, the combination of ultra-low cost, highly accurate testing and rising availability of therapeutics may present an option to alleviate the effects of COVID-19 for the vast majority of people so that everyone can continue with their daily lives. Now, a newly-launched affordable, saliva-based rapid test uses a DNA aptamer instead of an antibody to detect COVID-19 and is read by a UV Spectrophotometer. DNA aptamers are believed to offer a structural advantage over other enzyme-based approaches in sensitivity, specificity, quality of production, lower costs, test formats and other areas.

The AptameX COVID-19 rapid test from Achiko AG (Zurich, Switzerland) is an innovative rapid test that uses DNA aptamers instead of antigens to detect the SARS-CoV-2 virus. Aptamers are single-stranded DNA or RNA oligonucleotides that bind to specific targets via shape recognition with high affinity and specificity. As aptamers are synthetic, they can be produced at a low cost and in scale. By using aptamer technology, the company has been able to design a friendlier and better customer experience that achieves higher degrees of accuracy than nearly all other rapid tests and at a lower cost to the end consumer.

The AptameX COVID-19 rapid test comes in the form of a user-friendly, saliva-based rapid test. First, a patient rinses their mouth with a standard non-alcoholic dental mouthwash, followed by purified water. The patient then spits into a sample collection tube which is then processed by a lab. The sample is diluted in water and added to a cuvette containing reagent. After 10 minutes, a salt quench is added and after one minute, the sample is ready to be scanned by a standard UV-spectrophotometer. The rapid test is separated into the sampling and software, plus the spectrophotometer. Future iterations may be packaged with other approved spectrophotometers to provide a more convenient solution.

Through differentiated chemistry, Achiko has been able to develop a user-friendly, saliva-based test that is sensitive at the important higher CT values. In a clinical environment, the company had successfully classified results when compared against a PCR test, at above 97% sensitivity and 97% specificity at an average CT score of 28, substantially higher than what many rapid tests are reporting. Achiko has successfully registered AptameX under the European Union’s Medical Device Research (MDR) and In Vitro Diagnostic Regulation (IVDR), and has obtained a CE Mark that grants it access to 27 countries in the European Union for its COVID-19 AptameX test and system, establishing a foundation for applying for regulatory approval across the world.

“This is the first major mainstream use of DNA aptamers in a consumer testing product and a fantastic milestone for Achiko,” stated Steven Goh, CEO of Achiko AG. “This matters as the world moves to treating COVID-19 as endemic, key sectors such as aged care, healthcare, manufacturing, and many others need to find a way to cope with COVID’s challenges. PCR testing whilst accurate is often impractical in an endemic setting, and recent research indicates that many rapid tests are simply not sensitive enough to detect the more recent variants.”

Related Links:
Achiko AG 

Platinum Member
Fully Automatic ACLIA Analyzer
MAGLUMI X8
Gold Member
Flu SARS-CoV-2 Combo Test
OSOM® Flu SARS-CoV-2 Combo Test
Automatic CLIA Analyzer
Shine i6000
Automated Urinalysis Solution
UN-9000

Channels

Molecular Diagnostics

view channel
Image: The researchers Manel Pérez Pons y Carlos Rodriguez Muñoz at the IRBLleida laboratory (Photo courtesy of IRBLleida)

New Blood RNA Markers Help Advance Precision Medicine for Respiratory Patients

Risk stratification in hospitalized respiratory disease, particularly among older adults with COVID-19, remains challenging despite rich clinical datasets. Blood-based non-coding RNA biomarkers are promising,... Read more

Microbiology

view channel
Image: The “broth” used to monitor red blood cell depletion in whole blood spiked with one colony-forming-unit of E. coli bacteria, each incubated at different orbital shaking speeds—left to right: 0 RPM, 65 RPM, 120 RPM and 200 RPM—after four hours of incubation. This culturing raises a bacteria-rich, plasma-like layer of bacteria to the top of the vials, while clusters of stuck blood cells known as a Rouleaux formation sink to the bottom. (Image Credit: Pak Kin Wong)

New Diagnostic Workflow Identifies Bloodstream Pathogens and Antibiotic Response in Hours

Sepsis is a life-threatening complication of infection that affects more than 1.5 million patients annually in the United States and contributes to roughly one in three in-hospital deaths.... Read more

Pathology

view channel
Image: Researchers evaluated AI models that quantify tumor-infiltrating lymphocytes (TIL) on routine breast tissue slides, where higher TIL levels reflect stronger antitumor response and improved breast cancer outcomes (Image Credit: Shutterstock)

AI Matches Pathologists in Predicting Breast Cancer Prognosis from Immune Cells

Breast cancer is the most common cancer in Australian women, with more than 20,000 cases each year. Prognosis can be informed by counting tumor-infiltrating lymphocytes (TILs) on routine pathology slides,... Read more