Publikasi Scopus 2010 s/d 2022

Rahmasari R., Raekiansyah M., Azallea S.N., Nethania M., Bilqisthy N., Rozaliyani A., Bowolaksono A., Sauriasari R.
56288345800;11140998900;58039359300;58039432000;58039213700;57203065912;57205093224;16246507200;
Low-cost SYBR Green-based RT-qPCR assay for detecting SARS-CoV-2 in an Indonesian setting using WHO-recommended primers
2022
Heliyon
8
11
e11130
Microbiology and Biotechnology Laboratory, Faculty of Pharmacy, Universitas Indonesia, West Java, Depok, 16424, Indonesia; Helix Laboratory & Clinic, Indonesia; Department of Parasitology, Faculty of Medicine, Universitas Indonesia, West Java, Jakarta, 10430, Indonesia; Department of Biology, Faculty of Mathematics and Natural Sciences, Universitas Indonesia, West Java, Depok, 16424, Indonesia; Clinical Pharmacy Laboratory, Faculty of Pharmacy, Universitas Indonesia, West Java, Depok, 16424, Indonesia
Rahmasari, R., Microbiology and Biotechnology Laboratory, Faculty of Pharmacy, Universitas Indonesia, West Java, Depok, 16424, Indonesia; Raekiansyah, M., Helix Laboratory & Clinic, Indonesia; Azallea, S.N., Microbiology and Biotechnology Laboratory, Faculty of Pharmacy, Universitas Indonesia, West Java, Depok, 16424, Indonesia; Nethania, M., Microbiology and Biotechnology Laboratory, Faculty of Pharmacy, Universitas Indonesia, West Java, Depok, 16424, Indonesia; Bilqisthy, N., Microbiology and Biotechnology Laboratory, Faculty of Pharmacy, Universitas Indonesia, West Java, Depok, 16424, Indonesia; Rozaliyani, A., Department of Parasitology, Faculty of Medicine, Universitas Indonesia, West Java, Jakarta, 10430, Indonesia; Bowolaksono, A., Department of Biology, Faculty of Mathematics and Natural Sciences, Universitas Indonesia, West Java, Depok, 16424, Indonesia; Sauriasari, R., Clinical Pharmacy Laboratory, Faculty of Pharmacy, Universitas Indonesia, West Java, Depok, 16424, Indonesia
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the causative agent for the ongoing coronavirus disease 2019 (COVID-19) pandemic. For laboratory diagnosis, low-cost detection of SARS-CoV-2 is urgently needed, particularly in developing countries with limited resources. Probe- or TaqMan-based real-time reverse transcription polymerase chain reaction (RT-qPCR) is currently the gold standard for diagnosing infected individuals, as recommended by the World Health Organization (WHO). However, this assay is expensive, making it difficult to use for diagnosis on a large scale. Therefore, in this study, we develop and validate an alternative approach for RT-qPCR diagnosis by employing the DNA intercalating dye SYBR Green. We evaluate and use two WHO-recommended primers, namely CCDC-N and HKU-ORF1b-nsp14. The compatibility of the two primers was tested in silico with Indonesian SARS-CoV-2 genome sequences retrieved from the GISAID database and using bioinformatic tools. Using in vitro-transcribed RNA, optimization, sensitivity, and linearity of the two assays targeting the N and Nsp-14 genes were carried out. For further evaluation, we used clinical samples from patients and performed the SYBR Green-based RT-qPCR assay protocol in parallel with TaqMan-based commercial assay. Our results show that our methodology performs similarly to the broadly used TaqMan-based detection method in terms of specificity and sensitivity and thus offers an alternative assay for the detection of SARS-CoV-2 RNA for diagnostic purposes. © 2022 The Authors
Intercalating dye SYBR Green; One-step RT-qPCR; SARS-CoV-2
Badan Riset dan Inovasi Nasional
Rani Sauriasari was supported by BRIN Indonesia [ 32/FI/P-KCOVID-19.2B3/IX/2020 ].
Elsevier Ltd
24058440
Article
Q1
550
9106