Immunology

Rapid, at-home blood test could confirm COVID-19 vaccination in minutes

An image taken from a YouTube video shows results of a rapid blood test developed by Johns Hopkins researchers that can confirm in minutes if a person has been vaccinated for SARS-CoV-2, the virus that causes COVID-19. Credit: Robert Kruse

One challenge as society reopens is identifying who has been vaccinated for SARS-CoV-2, the virus that causes COVID-19. A team of Johns Hopkins researchers has developed a rapid blood test that could confirm a person has been vaccinated while they wait to board a plane or enter a sporting event.

Their COVID-19 antibody test is similar to one used at home to determine blood type, where the user pricks a finger and places a drop of blood on a card. A fusion protein developed by the research team is housed on the card and detects COVID-19 antibodies, tiny proteins in the blood the immune system produces to “remember” viral encounters and provide immunity to future infections. Results come back in less than five minutes, faster than current lateral flow tests to detect antibodies at point of care, while also potentially providing a clearer result.

Robert Kruse, M.D., Ph.D., who created the blood test, says it could be used to confirm a person’s vaccination instead of having to show a vaccine card.

“If a business is using the honor system for vaccinations, now they could test people on-site,” he says.

Kruse is lead author of a paper posted online earlier this month that reported results of the test on 400 blood samples, half of which were from prior COVID-19 patients. The test correctly identified antibodies in previously infected patients 87.5% of the time, a slightly higher rate than ELISA tests performed in hospitals that require hours to perform. The paper is being peer-reviewed.

Demonstration of the test. Credit: Robert Kruse

The test uses hemagglutination, in which the degree of clumping together of red blood cells reveals the concentration of antibodies. Kruse, a pathology resident at the Johns Hopkins University School of Medicine, said the hemagglutination results could let people know if they still have protection months after they received the vaccine or if they need a booster shot. The degree of hemagglutination also correlated with levels of neutralizing antibodies in patients, which protect against viral infection.

Immunocompromised patients, who studies have shown don’t always respond to the COVID-19 vaccine, could test their antibody level and see if the vaccine is working for them, says Yuting Huang, M.D., Ph.D., Kruse’s co-author and a research fellow at Johns Hopkins as well as chief resident of internal medicine at the University of Maryland Medical Center Midtown Campus.

Kruse and Huang developed the test in the lab of Zack Z. Wang, Ph.D., an associate professor at Johns Hopkins in the Division of Hematology. Kruse says the research is an example of the “Hopkins network coming through”: Colleagues in pathology connected Kruse and Huang with researchers from the Johns Hopkins Bloomberg School of Public Health who already had patient samples and test results they were using for their own COVID-19 studies, allowing for collaboration and data-sharing.

“If those collaborating labs didn’t have those samples, we wouldn’t really have known how well it worked,” says Kruse.

Johns Hopkins Technology Ventures is seeking patent protection for the technology, which is available for licensing. The test‘s creators are seeking an industry collaborator to manufacture the cards and have applied for funding through TEDCO’s Maryland Innovation Initiative to assist in commercializing its research.


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More information:
Robert L. Kruse et al, A hemagglutination-based, semi-quantitative test for point-of-care determination of SARS-CoV-2 antibody levels, medRxiv (2021). DOI: 10.1101/2021.05.01.21256452

Citation:
Rapid, at-home blood test could confirm COVID-19 vaccination in minutes (2021, June 4)
retrieved 4 June 2021
from https://medicalxpress.com/news/2021-06-rapid-at-home-blood-covid-vaccination.html

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