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Large-Scale SARS-CoV-2 Testing Utilizing Saliva and Transposition Sample Pooling
Published on: June 23, 2022
Results of WICOVIR Gargle Pool PCR Testing in German Schools Based on the First 100,000 Tests
Parastoo Kheiroddin1, Patricia Schöberl1,2, Michael Althammer1
1Department of Pediatric Pneumology and Allergy, University Children's Hospital Regensburg (KUNO) at the Hospital St. Hedwig of the Order of St. John and the University of Regensburg, Regensburg, Germany.
Insights
The WICOVIR gargle pool testing system effectively screens schools for SARS-CoV-2, proving superior to antigen tests in sensitivity and cost. This method aids in safely reopening schools and protecting children during the COVID-19 pandemic.
Area of Science:
- Public Health
- Infectious Disease Epidemiology
- Molecular Diagnostics
Background:
- The COVID-19 pandemic necessitates safe school operations to mitigate adverse effects on children.
- Standard hygiene measures require a supplementary, efficient, and cost-effective SARS-CoV-2 testing system for educational settings.
- The WICOVIR concept was developed to address the need for reliable school-based SARS-CoV-2 screening.
Purpose of the Study:
- To implement and evaluate the WICOVIR gargle pool testing concept in German schools.
- To assess the system's effectiveness, sensitivity, acceptance, and cost-efficiency compared to antigen testing.
- To demonstrate the feasibility of rapid, large-scale SARS-CoV-2 screening in educational environments.
Main Methods:
- Implementation of the WICOVIR concept involving at-home gargling, sample pooling in schools, and decentralized pool real-time reverse transcription polymerase chain reaction (rRT-PCR) analysis.
- Utilized specialized software for rapid result transmission and depooling of positive samples.
- Conducted a pilot phase followed by a main phase, analyzing over 100,000 samples from more than 100 schools.
Main Results:
- The WICOVIR system successfully screened nearly 17,000 participants in a 7-week pilot and over 100,000 individuals in 6 weeks of the main phase.
- Identified 19 SARS-CoV-2 cases across participating schools, with positive samples reliably detected by participating laboratories.
- Demonstrated significantly higher sensitivity than antigen testing and a notable decrease in detection rates with twice-weekly testing, indicating effective containment.
Conclusions:
- Repeated gargle pool rRT-PCR testing is a rapidly implementable, effective, and well-received SARS-CoV-2 screening strategy for schools.
- The WICOVIR system offers superior sensitivity, acceptance, and cost-effectiveness compared to antigen testing for school-based surveillance.
- This approach supports the safe reopening and continued operation of schools during the COVID-19 pandemic.
Abstract:
Background: Opening schools and keeping children safe from SARS-CoV-2 infections at the same time is urgently needed to protect children from direct and indirect consequences of the COVID-19 pandemic. To achieve this goal, a safe, efficient, and cost-effective SARS-CoV-2 testing system for schools in addition to standard hygiene measures is necessary. Methods: We implemented the screening WICOVIR concept for schools in the southeast of Germany, which is based on gargling at home, pooling of samples in schools, and assessment of SARS-CoV-2 by pool rRT-PCR, performed decentralized in numerous participating laboratories. Depooling was performed if pools were positive, and results were transmitted with software specifically developed for the project within a day. Here, we report the results after the first 13 weeks in the project. Findings: We developed and implemented the proof-of-concept test system within a pilot phase of 7 weeks based on almost 17,000 participants. After 6 weeks in the main phase of the project, we performed >100,000 tests in total, analyzed in 7,896 pools, identifying 19 cases in >100 participating schools. On average, positive children showed an individual CT value of 31 when identified in the pools. Up to 30 samples were pooled (mean 13) in general, based on school classes and attached school staff. All three participating laboratories detected positive samples reliably with their previously established rRT-PCR standard protocols. When self-administered antigen tests were performed concomitantly in positive cases, only one of these eight tests was positive, and when antigen tests performed after positive pool rRT-PCR results were already known were included, 3 out of 11 truly positive tests were also identified by antigen testing. After 3 weeks of repetitive WICOVIR testing twice weekly, the detection rate of positive children in that cohort decreased significantly from 0.042 to 0.012 (p = 0.008). Interpretation: Repeated gargle pool rRT-PCR testing can be implemented quickly in schools. It is an effective, valid, and well-received test system for schools, superior to antigen tests in sensitivity, acceptance, and costs.
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