Implementation of point-of-care molecular testing for respiratory viruses in congregate living settings
作者:Charlie Tan, Christina K. Chan, Marianna Ofner, Jaclyn O’Brien, Neethu Thomas, James Callahan, Brigitte Pascual, Shawn J. Palmer, Victoria Serapion, Hannah Fabro, Robert Kozak, Heather Candon, Adrienne K. Chan, Jeff Powis, Jerome A. Leis · 发表于:Infection Control and Hospital Epidemiology · 年份:2024 · DOI:10.1017/ice.2024.72 · 被引用次数:9 · 研究领域:Respiratory viral infections research、SARS-CoV-2 detection and testing、Infection Control and Ventilation
OBJECTIVE: To implement and evaluate a point-of-care (POC) molecular testing platform for respiratory viruses in congregate living settings (CLS). DESIGN: Prospective quality improvement study. SETTING: Seven CLS, including three nursing homes and four independent-living facilities. PARTICIPANTS: Residents of CLS. METHODS: A POC platform for COVID-19, influenza A and B, and respiratory syncytial virus was implemented at participating CLS from December 1, 2022 to April 15, 2023. Residents with respiratory symptoms underwent paired testing, with respiratory specimens tested first with the POC platform and then delivered to an off-site laboratory for multiplex respiratory virus panel (MRVP) polymerase chain reaction (PCR) as per standard protocol. Turn-around time and diagnostic accuracy of the POC platform were compared against MRVP PCR. In an exploratory analysis, time to outbreak declaration among participating CLS was compared against a convenience sample of 19 CLS that did not use the POC platform. RESULTS: A total of 290 specimens that underwent paired testing were included. Turn-around time to result was significantly shorter with the POC platform compared to MRVP PCR, with median difference of 36.2 hours (interquartile range 21.8-46.4 hours). The POC platform had excellent diagnostic accuracy compared to MRVP PCR, with area under the curve statistic of .96. Time to outbreak declaration was shorter in CLS that used the POC platform compared to CLS that did not. CONCLUSION...