Literature DB >> 34003878

Pool testing on random and natural clusters of individuals: Optimisation of SARS-CoV-2 surveillance in the presence of low viral load samples.

Michela Baccini1,2, Emilia Rocco1,2, Irene Paganini3, Alessandra Mattei1,2, Cristina Sani3, Giulia Vannucci1,2, Simonetta Bisanzi3, Elena Burroni3, Marco Peluso3, Armelle Munnia3, Filippo Cellai3, Giampaolo Pompeo3, Laura Micio3, Jessica Viti3, Fabrizia Mealli1,2, Francesca Maria Carozzi3.   

Abstract

Facing the SARS-CoV-2 epidemic requires intensive testing on the population to early identify and isolate infected subjects. During the first emergency phase of the epidemic, RT-qPCR on nasopharyngeal (NP) swabs, which is the most reliable technique to detect ongoing infections, exhibited limitations due to availability of reagents and budget constraints. This stressed the need to develop screening procedures that require fewer resources and are suitable to be extended to larger portions of the population. RT-qPCR on pooled samples from individual NP swabs seems to be a promising technique to improve surveillance. We performed preliminary experimental analyses aimed to investigate the performance of pool testing on samples with low viral load and we evaluated through Monte Carlo (MC) simulations alternative screening protocols based on sample pooling, tailored to contexts characterized by different infection prevalence. We focused on the role of pool size and the opportunity to develop strategies that take advantage of natural clustering structures in the population, e.g. families, school classes, hospital rooms. Despite the use of a limited number of specimens, our results suggest that, while high viral load samples seem to be detectable even in a pool with 29 negative samples, positive specimens with low viral load may be masked by the negative samples, unless smaller pools are used. The results of MC simulations confirm that pool testing is useful in contexts where the infection prevalence is low. The gain of pool testing in saving resources can be very high, and can be optimized by selecting appropriate group sizes. Exploiting natural groups makes the definition of larger pools convenient and potentially overcomes the issue of low viral load samples by increasing the probability of identifying more than one positive in the same pool.

Entities:  

Year:  2021        PMID: 34003878     DOI: 10.1371/journal.pone.0251589

Source DB:  PubMed          Journal:  PLoS One        ISSN: 1932-6203            Impact factor:   3.240


  2 in total

1.  Implementing the Lolli-Method and pooled RT-qPCR testing for SARS-CoV-2 surveillance in schools: a pilot project.

Authors:  Alina Chloé Kretschmer; Lena Junker; Felix Dewald; Viktoria Linne; Lea Hennen; Gibran Horemheb-Rubio; Rolf Kaiser; Gertrud Steger; Alexander Joachim; Jana Schönenkorb; Zülfü Cem Cosgun; Neslihan Mühlhans; Eva Heger; Elena Knops; Charlotte Leisse; Barbora Kessel; Torben Heinsohn; Isti Rodiah; Berit Lange; Anne Lena Ritter; Mira Fries; Annelene Kossow; Johannes Nießen; Jörg Dötsch; Florian Klein; Jan Rybniker; Gerd Fätkenheuer; Isabelle Suárez
Journal:  Infection       Date:  2022-06-27       Impact factor: 7.455

2.  SARS-CoV-2 surveillance by RT-qPCR-based pool testing of saliva swabs (lollipop method) at primary and special schools-A pilot study on feasibility and acceptability.

Authors:  Anika Kästner; Petra Lücker; Martina Sombetzki; Manja Ehmke; Nicole Koslowski; Swantje Mittmann; Arne Hannich; Antje Schwarz; Kristian Meinck; Lena Schmeyers; Katrin Schmidt; Emil C Reisinger; Wolfgang Hoffmann
Journal:  PLoS One       Date:  2022-09-13       Impact factor: 3.752

  2 in total

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