Clinical evaluation of fully automated molecular diagnostic system “Simprova” for influenza virus, respiratory syncytial virus, and human metapneumovirus

Influenza virus, respiratory syncytial virus, and human metapneumovirus commonly cause acute upper and lower respiratory tract infections, especially in children and the elderly. Although rapid antigen detection tests for detecting these infections have been introduced recently, these are less sensi...

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Published inScientific reports Vol. 10; no. 1; p. 13496
Main Authors Takayama, Ikuyo, Semba, Shohei, Yokono, Kota, Saito, Shinji, Nakauchi, Mina, Kubo, Hideyuki, Kaida, Atsushi, Shiomi, Masashi, Terada, Akihiro, Murakami, Kiyotaka, Kaji, Katsushi, Kiya, Keiichi, Sawada, Yoshitaka, Oba, Kunihiro, Asai, Sadasaburo, Yonekawa, Toshihiro, Watanabe, Hidetoshi, Segawa, Yuji, Notomi, Tsugunori, Kageyama, Tsutomu
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 11.08.2020
Nature Publishing Group
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Abstract Influenza virus, respiratory syncytial virus, and human metapneumovirus commonly cause acute upper and lower respiratory tract infections, especially in children and the elderly. Although rapid antigen detection tests for detecting these infections have been introduced recently, these are less sensitive than nucleic acid amplification tests. More recently, highly sensitive point-of-care testings (POCTs) have been developed based on nucleic acid amplification tests, which are easy to use in clinical settings. In this study, loop-mediated isothermal amplification (LAMP)-based POCT “Simprova” to detect influenza A and B viruses, respiratory syncytial virus, and human metapneumovirus was developed. Simprova system is fully automated and does not require skilled personnel. In addition, positive results can be achieved faster than with PCR. In this study, the accuracy of the POCT was retrospectively analyzed using 241 frozen stocked specimens. Additionally, the usability of the Simprova at clinical sites was assessed in a prospective clinical study using 380 clinical specimens and compared to those of real-time PCR and rapid antigen detection test. The novel LAMP-based POCT demonstrated high sensitivity and specificity in characterizing clinical specimens from patients with influenza-like illnesses. The Simprova is a powerful tool for early diagnosis of respiratory viral infections in point-of-care settings.
AbstractList Influenza virus, respiratory syncytial virus, and human metapneumovirus commonly cause acute upper and lower respiratory tract infections, especially in children and the elderly. Although rapid antigen detection tests for detecting these infections have been introduced recently, these are less sensitive than nucleic acid amplification tests. More recently, highly sensitive point-of-care testings (POCTs) have been developed based on nucleic acid amplification tests, which are easy to use in clinical settings. In this study, loop-mediated isothermal amplification (LAMP)-based POCT “Simprova” to detect influenza A and B viruses, respiratory syncytial virus, and human metapneumovirus was developed. Simprova system is fully automated and does not require skilled personnel. In addition, positive results can be achieved faster than with PCR. In this study, the accuracy of the POCT was retrospectively analyzed using 241 frozen stocked specimens. Additionally, the usability of the Simprova at clinical sites was assessed in a prospective clinical study using 380 clinical specimens and compared to those of real-time PCR and rapid antigen detection test. The novel LAMP-based POCT demonstrated high sensitivity and specificity in characterizing clinical specimens from patients with influenza-like illnesses. The Simprova is a powerful tool for early diagnosis of respiratory viral infections in point-of-care settings.
Influenza virus, respiratory syncytial virus, and human metapneumovirus commonly cause acute upper and lower respiratory tract infections, especially in children and the elderly. Although rapid antigen detection tests for detecting these infections have been introduced recently, these are less sensitive than nucleic acid amplification tests. More recently, highly sensitive point-of-care testings (POCTs) have been developed based on nucleic acid amplification tests, which are easy to use in clinical settings. In this study, loop-mediated isothermal amplification (LAMP)-based POCT "Simprova" to detect influenza A and B viruses, respiratory syncytial virus, and human metapneumovirus was developed. Simprova system is fully automated and does not require skilled personnel. In addition, positive results can be achieved faster than with PCR. In this study, the accuracy of the POCT was retrospectively analyzed using 241 frozen stocked specimens. Additionally, the usability of the Simprova at clinical sites was assessed in a prospective clinical study using 380 clinical specimens and compared to those of real-time PCR and rapid antigen detection test. The novel LAMP-based POCT demonstrated high sensitivity and specificity in characterizing clinical specimens from patients with influenza-like illnesses. The Simprova is a powerful tool for early diagnosis of respiratory viral infections in point-of-care settings.Influenza virus, respiratory syncytial virus, and human metapneumovirus commonly cause acute upper and lower respiratory tract infections, especially in children and the elderly. Although rapid antigen detection tests for detecting these infections have been introduced recently, these are less sensitive than nucleic acid amplification tests. More recently, highly sensitive point-of-care testings (POCTs) have been developed based on nucleic acid amplification tests, which are easy to use in clinical settings. In this study, loop-mediated isothermal amplification (LAMP)-based POCT "Simprova" to detect influenza A and B viruses, respiratory syncytial virus, and human metapneumovirus was developed. Simprova system is fully automated and does not require skilled personnel. In addition, positive results can be achieved faster than with PCR. In this study, the accuracy of the POCT was retrospectively analyzed using 241 frozen stocked specimens. Additionally, the usability of the Simprova at clinical sites was assessed in a prospective clinical study using 380 clinical specimens and compared to those of real-time PCR and rapid antigen detection test. The novel LAMP-based POCT demonstrated high sensitivity and specificity in characterizing clinical specimens from patients with influenza-like illnesses. The Simprova is a powerful tool for early diagnosis of respiratory viral infections in point-of-care settings.
ArticleNumber 13496
Author Oba, Kunihiro
Kubo, Hideyuki
Watanabe, Hidetoshi
Asai, Sadasaburo
Semba, Shohei
Kaji, Katsushi
Notomi, Tsugunori
Kiya, Keiichi
Kageyama, Tsutomu
Saito, Shinji
Murakami, Kiyotaka
Terada, Akihiro
Sawada, Yoshitaka
Shiomi, Masashi
Nakauchi, Mina
Takayama, Ikuyo
Yonekawa, Toshihiro
Kaida, Atsushi
Yokono, Kota
Segawa, Yuji
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CitedBy_id crossref_primary_10_1007_s42247_021_00169_7
crossref_primary_10_1016_j_snb_2021_130708
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Adolescent
Antigens
Automation
Child
Child, Preschool
Female
Gene amplification
Humanities and Social Sciences
Humans
Infant
Infant, Newborn
Infections
Influenza
Influenza A
Male
Metapneumovirus - genetics
Metapneumovirus - isolation & purification
Molecular Diagnostic Techniques - methods
multidisciplinary
Nucleic Acid Amplification Techniques - methods
Nucleic acids
Orthomyxoviridae - genetics
Orthomyxoviridae - isolation & purification
Respiratory diseases
Respiratory syncytial virus
Respiratory Syncytial Viruses - genetics
Respiratory Syncytial Viruses - isolation & purification
Respiratory tract
Respiratory tract diseases
Science
Science (multidisciplinary)
Viral infections
Viruses
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Title Clinical evaluation of fully automated molecular diagnostic system “Simprova” for influenza virus, respiratory syncytial virus, and human metapneumovirus
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