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
Sign In
Advertise with Us
PURITAN MEDICAL

Download Mobile App





Low-Cost, Easy-to-Use Lab-on-Paper SARS-CoV-2 Diagnostic Test Provides Accurate Results within an Hour

By LabMedica International staff writers
Posted on 21 Jun 2021
Print article
Image: Low-Cost, Easy-To-Use Lab-on-Paper SARS-CoV-2 Diagnostic Test Provides Accurate Results within an Hour (Photo courtesy of University of Connecticut)
Image: Low-Cost, Easy-To-Use Lab-on-Paper SARS-CoV-2 Diagnostic Test Provides Accurate Results within an Hour (Photo courtesy of University of Connecticut)
Researchers have invented an easy-to-use, affordable lab-on-paper diagnostic technology for SARS-CoV-2, the virus that causes COVID-19 infection, that provides accurate results within an hour.

The device developed by researchers at University of Connecticut (Mansfield, CT, USA) uses a specialized kind of paper material to detect for two SARS-CoV-2 genes - the spike (S) and nucleoprotein (N) genes. The clinical samples validated these genes as good candidates for diagnostic tests because they are highly conserved. This means they are so essential to the virus they are likely found in all variants. By testing two genes rather than one, the test is more accurate.

This point-of-care test can be performed by any health care professional, making it ideal for settings like community health centers. The simple, low-cost device provides a reliable result within an hour. Patients provide a sample from a nasal swap. Then the practitioner uses a commercially available kit to purify the nucleic acid in the sample. This removes any impurities that could interfere with the accuracy of the test. After about 15 minutes, the sample can be transferred to a device that uses CRISPR technology to detect the SARS-CoV-2 genes. CRISPR is a gene-editing technology that can alter an organism’s genome by targeting and cutting specific DNA or RNA segments.

As a diagnostic tool, CRISPR locates the genes of interest, in this case the S and N genes, and cut them. This cut produces an observable signal, which on the device is fluorescence filling in on the paper to indicate a positive result. In addition to the two SARS-CoV-2 genes, the device also tests for a “housekeeping” gene known as the RNase P (RP) gene. The presence of this gene lets the practitioner know they got a high-quality sample that will generate a reliable result. The device is on a cellulose-based paper membrane which is hydrophilic, meaning it can transport the liquid solution that contains the nucleic acid. This is a great advantage to practitioners as the test runs automatically after they load the sample. The paper is also formulated so that it does not interfere with the biochemical reactions that need to happen to select for the genes of interest. If there is interference, the test could produce a false signal. This technology can be applied for diagnosing other pathogens such as HIV, influenza viruses or high-risk HPV by modifying which genes it selects for.

“We took advantage of the high sensitivity and specificity of CRISPR technology,” said Changchun Liu, associate professor in the Department of Biomedical Engineering, who invented the diagnostic technology. “We want to continue to explore this technology and expand it for the detection of other pathogens.”

Related Links:
University of Connecticut

Platinum Member
COVID-19 Rapid Test
OSOM COVID-19 Antigen Rapid Test
Magnetic Bead Separation Modules
MAG and HEATMAG
Anti-Cyclic Citrullinated Peptide Test
GPP-100 Anti-CCP Kit
New
Gold Member
SARS-CoV-2 Reactive & Non-Reactive Controls
Qnostics SARS-CoV-2 Typing

Print article

Channels

Clinical Chemistry

view channel
Image: The 3D printed miniature ionizer is a key component of a mass spectrometer (Photo courtesy of MIT)

3D Printed Point-Of-Care Mass Spectrometer Outperforms State-Of-The-Art Models

Mass spectrometry is a precise technique for identifying the chemical components of a sample and has significant potential for monitoring chronic illness health states, such as measuring hormone levels... Read more

Molecular Diagnostics

view channel
Image: A blood test could predict lung cancer risk more accurately and reduce the number of required scans (Photo courtesy of 123RF)

Blood Test Accurately Predicts Lung Cancer Risk and Reduces Need for Scans

Lung cancer is extremely hard to detect early due to the limitations of current screening technologies, which are costly, sometimes inaccurate, and less commonly endorsed by healthcare professionals compared... Read more

Hematology

view channel
Image: The CAPILLARYS 3 DBS devices have received U.S. FDA 510(k) clearance (Photo courtesy of Sebia)

Next Generation Instrument Screens for Hemoglobin Disorders in Newborns

Hemoglobinopathies, the most widespread inherited conditions globally, affect about 7% of the population as carriers, with 2.7% of newborns being born with these conditions. The spectrum of clinical manifestations... Read more

Immunology

view channel
Image: Exosomes can be a promising biomarker for cellular rejection after organ transplant (Photo courtesy of Nicolas Primola/Shutterstock)

Diagnostic Blood Test for Cellular Rejection after Organ Transplant Could Replace Surgical Biopsies

Transplanted organs constantly face the risk of being rejected by the recipient's immune system which differentiates self from non-self using T cells and B cells. T cells are commonly associated with acute... Read more

Pathology

view channel
Image: Comparison of traditional histopathology imaging vs. PARS raw data (Photo courtesy of University of Waterloo)

AI-Powered Digital Imaging System to Revolutionize Cancer Diagnosis

The process of biopsy is important for confirming the presence of cancer. In the conventional histopathology technique, tissue is excised, sliced, stained, mounted on slides, and examined under a microscope... Read more
Copyright © 2000-2024 Globetech Media. All rights reserved.