Saline may solve one big COVID-19 testing problem
Phosphate buffered saline could carry COVID-19 testing samples safely. That could fix a testing bottleneck due to viral transport medium shortages.
An inexpensive saline solution can safely store and transport coronavirus samples, researchers report.
The finding could help resolve a nationwide shortage of the solution needed to complete COVID-19 testing.
Phosphate buffered saline, a simple salt solution commonly found in hospitals and clinical laboratories, works as a virus transport medium for up to 18 hours to reliably send coronavirus-contaminated specimens to the testing laboratory, the researchers report.
“Necessity is the mother of invention.”
Recognizing that viral RNA of SARS-CoV-2, the virus that causes COVID-19 , can remain stable on certain surfaces for up to three days, the researchers believe that the inexpensive and commonly available salt solution could be used instead of the complex and hard-to-obtain viral medium and increase testing and transport throughout the country at a lower cost.
“Necessity is the mother of invention,” says co-lead investigator Martin J. Blaser, a professor in the medicine department at Rutgers Robert Wood Johnson Medical School and director of the Center for Advanced Biotechnology and Medicine at Rutgers.
“We were facing a problem about specimens reaching the lab intact, due to the nationwide shortage of viral transport medium, so we endeavored to test a widely available solution to see if it could help us.”
The researchers performed three experimental procedures using discarded respiratory secretions from 16 confirmed COVID-19 patients. They dropped swabs into vials containing either the salt solution or virus transport medium and transported to the laboratory for analysis using real-time testing to detect the presence of three specific SARS-CoV-2 virus genes in the samples.
In the first procedure, researchers took eight samples from two subjects at the same time and transported them in each method. They then processed the samples either immediately or after two hours at room temperature.
The researchers detected SARS-CoV-2 in all samples at similar levels for each patient, demonstrating that results were consistent for samples obtained and stored in identical manners.
In a parallel experiment, the researchers tested samples after remaining at room temperature in either method for various lengths of time up to 18 hours. They found that storage at room temperature had little effect on the values detected for the three SARS-CoV genes in either medium, demonstrating that both could be useful for labs that test for several SARS-CoV genes that have different processing times.
In a third experiment, the researchers also found that the medium did not affect the detectability of the virus in samples from 12 patients.
“New Jersey has been hit hard by COVID-19,” says Jared Radbel, an instructor in the medicine department and a researcher at Rutgers Environmental and Occupational Health Sciences Institute. “Like other parts of the country, we have had delays in testing. Steps like using alternative materials to increase identification of infected individuals are needed to help clinicians respond to this pandemic illness.”
The study appears in the Journal of Molecular Diagnostics .
Source: Rutgers University
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