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Article

From Triplex to Quadruplex: Enhancing CDC’s Respiratory qPCR Assay with RSV Detection on Panther Fusion® Open Access™

by
Andy Caballero Méndez
*,
Mayeline N. Sosa Ortiz
,
Roberto A. Reynoso de la Rosa
,
Miguel E. Abreu Bencosme
and
Karla V. Montero Lebrón
Molecular Biology Department, Referencia Laboratorio Clínico, Santo Domingo Oeste, Santo Domingo 11005, Dominican Republic
*
Author to whom correspondence should be addressed.
Microorganisms 2026, 14(1), 167; https://doi.org/10.3390/microorganisms14010167
Submission received: 11 December 2025 / Revised: 8 January 2026 / Accepted: 9 January 2026 / Published: 12 January 2026

Abstract

The overlapping circulation of influenza (Flu), severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2; SC2), and respiratory syncytial virus (RSV) continues to challenge clinical laboratories, particularly in settings with limited automation and fragmented healthcare coverage. This study expanded the CDC Flu-SC2 assay by incorporating a laboratory-developed test (LDT) for RSV A/B detection into a fully automated quadruplex RT-qPCR (LDRA) on the Panther Fusion® Open Access™ system. The design, based on more than 8000 RSV genomic sequences targeting the conserved M gene, achieved optimal amplification efficiencies (97–105%) and full multiplex compatibility. Analytical assessment established limits of detection between 9.6 and 37.8 copies per reaction, absence of cross-reactivity with 30 respiratory pathogens, and inclusivity for 32 viral variants. Commutability and diagnostic performance among the LDRA, CE IVD-marked Allplex™ SARS-CoV-2/FluA/FluB/RSV, and US IVD-marked Panther Fusion® SARS-CoV-2/Flu A/B/RSV Assays were evaluated using 405 nasopharyngeal UTM-preserved swabs. The LDRA demonstrated excellent concordance (overall agreement ≥ 98%, κ > 0.95), strong diagnostic accuracy, and reliable detection of mixed infections. This quadruplex provides a fully automated, rapid, and accurate solution for the simultaneous detection of influenza A, influenza B, SARS-CoV-2, and RSV viruses, enhancing molecular diagnostic capacity and supporting equitable, timely clinical decision-making in middle-income healthcare systems such as that of the Dominican Republic.
Keywords: RT-qPCR; multiplex assay; respiratory viruses; SARS-CoV-2; influenza A/B; respiratory syncytial virus; Panther Fusion® Open Access™; laboratory-developed test (LDT); performance evaluation; molecular diagnostics RT-qPCR; multiplex assay; respiratory viruses; SARS-CoV-2; influenza A/B; respiratory syncytial virus; Panther Fusion® Open Access™; laboratory-developed test (LDT); performance evaluation; molecular diagnostics

Share and Cite

MDPI and ACS Style

Caballero Méndez, A.; Sosa Ortiz, M.N.; Reynoso de la Rosa, R.A.; Abreu Bencosme, M.E.; Montero Lebrón, K.V. From Triplex to Quadruplex: Enhancing CDC’s Respiratory qPCR Assay with RSV Detection on Panther Fusion® Open Access™. Microorganisms 2026, 14, 167. https://doi.org/10.3390/microorganisms14010167

AMA Style

Caballero Méndez A, Sosa Ortiz MN, Reynoso de la Rosa RA, Abreu Bencosme ME, Montero Lebrón KV. From Triplex to Quadruplex: Enhancing CDC’s Respiratory qPCR Assay with RSV Detection on Panther Fusion® Open Access™. Microorganisms. 2026; 14(1):167. https://doi.org/10.3390/microorganisms14010167

Chicago/Turabian Style

Caballero Méndez, Andy, Mayeline N. Sosa Ortiz, Roberto A. Reynoso de la Rosa, Miguel E. Abreu Bencosme, and Karla V. Montero Lebrón. 2026. "From Triplex to Quadruplex: Enhancing CDC’s Respiratory qPCR Assay with RSV Detection on Panther Fusion® Open Access™" Microorganisms 14, no. 1: 167. https://doi.org/10.3390/microorganisms14010167

APA Style

Caballero Méndez, A., Sosa Ortiz, M. N., Reynoso de la Rosa, R. A., Abreu Bencosme, M. E., & Montero Lebrón, K. V. (2026). From Triplex to Quadruplex: Enhancing CDC’s Respiratory qPCR Assay with RSV Detection on Panther Fusion® Open Access™. Microorganisms, 14(1), 167. https://doi.org/10.3390/microorganisms14010167

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