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◆ Journal of microbiological methods2026-09-06

Validation of a standardized quantitative RT-qPCR workflow for detection and quantification of airborne respiratory viruses using gelatin membranes as sampling matrix.

Irene Tellini Rusticano, Fabiola Berti, Carmela Calonico, Sara Boccalini, Angela Bechini

原始摘要(英文原文)· Original abstract
Airborne microbiological monitoring is increasingly relevant for identifying and quantifying viral pathogens; however, standardized analytical workflows for respiratory viruses recovered from environmental matrices remain limited. This study reports the full analytical validation of a quantitative RT-qPCR workflow for the simultaneous detection and quantification of SARS-CoV-2, influenza A, influenza B, and RSV A/B from air samples collected on gelatin membrane filters. The protocol optimizes RNA extraction and amplification from this challenging matrix and provides a standardized procedure suitable for reproducible laboratory implementation. All validation parameters-amplification efficiency, linearity, recovery, matrix interference, limit of detection (LOD), limit of quantification (LOQ), repeatability, and reproducibility-were assessed in compliance with ISO 20395 and MIQE guidelines and met all predefined acceptance criteria. The workflow showed excellent linearity (R2 ≥ 0.99 for all targets), high amplification efficiency (92-103%), robust recovery (81.98-92.28%), and no significant matrix interference (±10%). LODs ranged from 5 to 9 copies/reaction, and LOQs from 8 to 10.5 copies/reaction. Precision assessments demonstrated acceptable intra- and inter-test variability (CV% ≤ 35%, SD < 0.19). Overall, this validated and standards-compliant RT-qPCR workflow provides a reliable, sensitive, and reproducible analytical tool for laboratory quantification of airborne respiratory viruses collected on gelatin membrane filters, supporting standardized virological analysis of aerosol samples.
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Validation of a standardized quantitative RT-qPCR workflow for detection and quantification of airborne respiratory viruses using gelatin membranes as sampling matrix. — 科研速览 Science Skim