Browsing by Author "I-Ching Sam"
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- PublicationInfluenza antiviral resistance in the Asia-Pacific region during 2011(2013)
;Sook-Kwan Leang ;Yi-Mo Deng ;Robert Shaw ;Natalie Caldwell ;Pina Iannello ;Naomi Komadina ;Philippe Buchy ;Malinee Chittaganpitch ;Dominic E. Dwyer ;Peter Fagan ;Ann-Claire Gourinat ;Frances Hammill ;Paul F. Horwood ;Q.S. Huang ;Peng Kei Ip ;Lance Jennings ;Alison Kesson ;Tuckweng Kok ;Jacob L. Kool ;Avram Levy ;Cui Lin ;Katie Lindsay ;Osmali Osman ;Gina Papadakis ;Fahimeh Rahnamal ;William Rawlinson ;Craig Redden ;Jennifer Ridgway ;I-Ching Sam ;Suzanne Svobodova ;Amado Tandoc ;Geethani Wickramasinghe ;Jan Williamson ;Noelene Wilson ;Mohd Apandi Yusof ;Anne Kelso ;Ian G. BarrAeron C. HurtDespite greater than 99% of influenza A viruses circulating in the Asia-Pacific region being resistant to the adamantane antiviral drugs in 2011, the large majority of influenza A (>97%) and B strains (∼99%) remained susceptible to the neuraminidase inhibitors oseltamivir and zanamivir. However, compared to the first year of the 2009 pandemic, cases of oseltamivir-resistant A(H1N1)pdm09 viruses with the H275Y neuraminidase mutation increased in 2011, primarily due to an outbreak of oseltamivir-resistant viruses that occurred in Newcastle, as reported in Hurt et al., 2011a, Hurt et al., 2011b, where the majority of the resistant viruses were from community patients not being treated with oseltamivir. A small number of influenza B viruses with reduced oseltamivir or zanamivir susceptibility were also detected. The increased detection of neuraminidase inhibitor resistant strains circulating in the community and the detection of novel variants with reduced susceptibility are reminders that monitoring of influenza viruses is important to ensure that antiviral treatment guidelines remain appropriate. - PublicationReal-time reverse transcription loop-mediated isothermal amplification for rapid detection of SARS-CoV-2(PEERJ INC, 2020)
;Yee Ling Lau ;Ilyiana Ismail ;Nur Izati Mustapa ;Meng Yee Lai ;Tuan Suhaila Tuan Soh ;Afifah Hassan ;Kalaiarasu M. Peariasamy ;Yee Leng Lee ;Yoong Min Chong ;I-Ching SamPik Pin GohBackground: Highly sensitive real-time reverse transcription polymerase chain reaction (RT-qPCR) methods have been developed for the detection of SARS-CoV-2. However, they are costly. Loop-mediated isothermal amplification (LAMP) assay has emerged as a novel alternative isothermal amplification method for the detection of nucleic acid. Methods: A rapid, sensitive and specific real-time reverse transcription LAMP (RT-LAMP) assay was developed for SARS-CoV-2 detection. Results: This assay detected one copy/reaction of SARS-CoV-2 RNA in 30 min. Both the clinical sensitivity and specificity of this assay were 100%. The RT-LAMP showed comparable performance with RT-qPCR. Combining simplicity and cost-effectiveness, this assay is therefore recommended for use in resource resource-limited settings.