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COVID-19 Response at the University of Illinois

Collected by: The Board Trustees of the University of Illinois Urbana-Champaign

Archived since: Apr, 2020

Description:

COVID-19 Response at the University of Illinois includes archived web crawls concerning the COVID-19 pandemic response by the University of Illinois; COVID-19 PCR saliva testing; announcements by university administration; university safety policies; testing information; Personal Protective Equipment (PPE); stories related to COVID-19; and technological innovations such as the RapidVent emergency ventilator system.

Subject:   Science & Health Universities & Libraries Computers & Technology COVID-19(Disease) Science Health Respirators (Medical Equipment)

Page 1 of 1 (1 Total Results)

Title: Saliva-Based Molecular Testing for SARS-CoV-2 that Bypasses RNA Extraction

URL: https://www.biorxiv.org/content/10.1101/2020.06.18.159434v1.full.pdf/

Description: Preprint article. Abstract: Convenient, repeatable, large-scale molecular testing for SARS-CoV-2 would be a key weapon to help control the COVID-19 pandemic. Unfortunately, standard SARS-CoV-2 testing protocols are invasive and rely on numerous items that can be subject to supply chain bottlenecks, and as such are not suitable for frequent repeat testing. Specifically, personal protective equipment (PPE), nasopharyngeal (NP) swabs, the associated viral transport media (VTM), and kits for RNA isolation and purification have all been in short supply at various times during the COVID-19 pandemic. Moreover, SARS-CoV-2 is spread through droplets and aerosols transmitted through person-to-person contact, and thus saliva may be a relevant medium for diagnosing SARSCoV-2 infection status. Here we describe a saliva-based testing method that bypasses the need for RNA isolation/purification. In experiments with inactivated SARS-CoV-2 virus spiked into saliva, this method has a limit of detection of 500-1000 viral particles per mL, rivalling the standard NP swab method, and initial studies also show excellent performance with 100 clinical samples. This saliva-based process is operationally simple, utilizes readily available materials, and can be easily implemented by existing testing sites, thus allowing for high-throughput, rapid, and repeat testing of large populations.

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Subject:   Medical tests (diagnosis) Quantitative Research PCR (biochemistry) COVID-19 (Disease)

Page 1 of 1 (1 Total Results)