Sains Malaysiana 50(10)(2021):
3035-3043
http://doi.org/10.17576/jsm-2021-5010-16
Dengue Virus Non-structural (NS) 1 Gene as A Molecular Marker for Early Detection of in vitro Dengue Virus Infection
(Gen Virus Denggi Bukan Struktur (NS) 1 sebagai Penanda Molekul
untuk Pengesanan Awal Jangkitan Virus Denggi secara in vitro)
NUR AZIZAH A RAHMAN1,2, FADHILAH MOH
DJAMIL1,4, VINOD RMT BALASUBRAMANIAM3, SHARIFAH SYED
HASSAN3 & WEI BOON YAP1,2*
1Biomedical Science Programme, Faculty
of Health Sciences, Universiti Kebangsaan Malaysia, Jalan Raja Muda Abdul Aziz, 50300 Kuala Lumpur, Federal Territory, Malaysia
2Center of Toxicology and Health Risk Studies, Faculty of
Health Sciences, Universiti Kebangsaan Malaysia, Jalan Raja Muda Abdul Aziz, 50300 Kuala Lumpur,
Federal Territory, Malaysia
3Jeffrey Cheah School of Medicine & Health Sciences, Monash
University Malaysia, Jalan Lagoon Selatan, 46150 Bandar Sunway, Selangor Darul Ehsan, Malaysia
4Microbiology Unit, Department of Pathology, Tuanku Ja’afar Hospital, Jalan Rasah, Bukit Rasah, 70300
Seremban, Negeri Sembilan Darul Khusus, Malaysia
Diserahkan: 26
Oktober 2020/Diterima: 19 Februari 2021
ABSTRACT
Serology-based dengue assays at times produce
inaccurate results especially in the early phase of disease onset. A more
precise diagnostic approach detecting dengue infections in the early phase
enables better management of the disease. This helps reduce dengue-associated
morbidity and mortality. Besides, an early diagnosis of dengue is also very beneficial
in a dengue outbreak and in endemic regions. In this light, this study aimed to
determine the potential of the dengue virus (DENV) non-structural 1 (NS1) gene as an early
detection biomarker. The cytopathic effects (CPE) were monitored and the cell
death of DENV serotype-2 (DENV2)-infected Vero cells was evaluated for fourteen
consecutive days. Only Lemos and in-house
NS1-specific primer pairs showed positive amplifications in the preliminary
primer validation. Thus, both of the primer pairs were then used to amplify the NS1 gene from the infected
cells. The NS1 gene was
detected as early as day-2 post-infection using the in-house primers. There was
no amplicon produced using the Lemos primers. This is
speculated to be attributable to the relatively lower complementarity of the
primer sequences with that of the template and low amount of viral mRNA in the
DENV2-infected cells. Conclusively, the DENV NS1 gene is a potential early detection marker, however, the
NS1-specific primers should be pre-validated to ensure a reliable dengue
diagnosis.
Keywords: Dengue; dengue virus (DENV); early diagnosis; non-structural (NS)1; polymerase chain reaction (PCR)
ABSTRAK
Ujian denggi
berdasarkan serologi kadang-kadang memberikan hasil yang tidak tepat terutama
pada fasa awal permulaan penyakit. Pendekatan diagnostik yang lebih tepat untuk
mengesan jangkitan denggi pada fasa awal membolehkan pengurusan penyakit ini
dengan lebih baik. Ini membantu mengurangkan morbiditi dan kematian yang
berkaitan dengan denggi. Selain itu, diagnosis denggi awal juga sangat
bermanfaat dalam wabak denggi dan di daerah endemik. Kajian ini bertujuan untuk
menentukan potensi gen bukan struktur 1 (NS1) virus denggi sebagai biopenanda pengesanan
awal. Kesan sitopatik (CPE) dipantau dan kematian sel Vero yang dijangkiti
serotip-2 (DENV2) dinilai selama empat belas hari berturut-turut. Hanya
pasangan primer khusus Lemos dan NS1 dalaman yang menunjukkan peningkatan
positif dalam pengesahan primer awal. Oleh itu, kedua-dua pasangan primer
kemudian digunakan untuk memperkuat gen NS1 daripada sel yang
dijangkiti. Gen NS1 dikesan pada awal hari ke-2 selepas jangkitan
menggunakan primer dalaman. Tidak ada amplikon yang dihasilkan menggunakan
primer Lemos. Ini diduga disebabkan oleh pelengkap urutan primer yang lebih
rendah dengan templat dan jumlah mRNA virus yang rendah pada sel yang
dijangkiti DENV2. Kesimpulannya, gen DENV NS1 adalah penanda pengesanan
awal yang berpotensi, namun, primer khusus NS1 harus disahkan terlebih
dahulu untuk memastikan diagnosis denggi yang boleh dipercayai.
Kata kunci: Bukan struktur
(NS)1; diagnosis awal; denggi; tindak balas rantai polimerase (PCR); virus
denggi (DENV)
RUJUKAN
Ahmad, R., Suzilah,
I., Wan, W.N., Topek, O., Mustafakamal, I. & Lee,
H.L. 2018. Factors determining dengue outbreak in Malaysia. PLoS ONE 13(2): e0193326.
Alm, E., Lesko, B., Lindegren,
G., Ahlm, C., Söderholm,
S., Falk, K.I. & Lagerqvist, N. 2014. Universal
single-probe RT-PCR assay for diagnosis of dengue virus infections. PLoS Neglected Tropical Diseases 8(12):
e3416.
Ballow, M. 2002. Primary immunodeficiency disorders:
Antibody deficiency. Journal
of Allergy and Clinical Immunology 109(4): 581-591.
Bessoff, K., Delorey, M., Sun, W.
& Hunsperger, E. 2008. Comparison of two
commercially available dengue virus (DENV) NS1 capture enzyme-linked
immunosorbent assays using a single clinical sample for diagnosis of acute DENV
infection. Clinical and Vaccine
Immunology 15(10): 1513-1518.
Bhatt, S., Gething,
P.W., Brady, O.J., Messina, J.P., Farlow, A.W., Moyes, C.L., Drake, J.M.,
Brownstein, J.S., Hoen, A.G., Sankoh,
O., Myers, M.F., George, D.B., Jaenisch, T., Wint, G.R.W., Simmons, C.P., Scott, T.W., Farrar, J.J.
& Hay, S.I. 2013. The global distribution and burden of dengue. Nature 496(7446): 504-507.
Chambers, T.J., Hahn, C.S., Galler, R. & Rice, C.M. 1990. Flavivirus genome
organization, expression, and replication. Annual
Review of Microbiology 44(1): 649-688.
Chan, M. & Johansson, M.A.
2012. The incubation periods of dengue viruses. PLoS ONE 7(11): e50972.
Darwish, N.T., Alias, Y.B.
& Khor, S.M. 2015. An introduction to dengue-disease diagnostics. Trends in Analytical Chemistry 67:
45-55.
Guy, B., Briand, O., Lang, J.,
Saville, M. & Jackson, N. 2015. Development of the Sanofi Pasteur
tetravalent dengue vaccine: One more step forward. Vaccine 33(50): 7100-7111.
Guzman, M.G., Halstead, S.B., Artsob, H., Buchy, P., Farrar,
J., Gubler, D.J., Hunsperger,
E., Kroeger, A., Margolis, H.S., Martínez, E., Nathan, M.B., Pelegrino,
J.L., Simmons, C., Yoksan, S. & Peeling, R.W.
2010. Dengue: A continuing global
threat. Nature Reviews Microbiology 8(12): S7-S16.
Hii, Y.L., Zaki, R.A., Aghamohammadi, N. & Rocklöv,
J. 2016. Research on climate and dengue in Malaysia: A systematic review. Current
Environmental Health Reports 3(1): 81-90.
Jasamai, M., Yap, W.B., Sakulpanich, A. &
Jaleel, A. 2019. Current prevention and potential treatment options for dengue
infection. Journal of Pharmacy and
Pharmaceutical Sciences 22(1): 440-456.
Lee, J., Kim, H.Y., Chong,
C.K. & Song, H.O. 2015. Development and clinical evaluation of a highly
accurate dengue NS1 rapid test: From the preparation of a soluble NS1 antigen
to the construction of an RDT. Diagnostic
Microbiology and Infectious Disease 82(2): 128-134.
Lemos, G., Guillén, I.,
Fernández, J.R., Díaz, T., Colarte, A.B. &
Fernández, C.M.E. 2013. Expression and purification of a full-length
recombinant NS1 protein from a dengue 2 serotype viral isolate. Biotecnología Aplicada 30(3): 187-193.
Libraty, D.H., Young, P.R., Pickering, D., Endy, T.P., Kalayanarooj, S.,
Green, S., Vaughn, D.W., Nisalak, A., Ennis, F.A.
& Rothman, A.L. 2002. High circulating levels of the dengue virus
nonstructural protein NS1 early in dengue illness correlate with the
development of dengue hemorrhagic fever. The
Journal of Infectious Diseases 186(8): 1165-1168.
McBride, W.J. 2009. Evaluation
of dengue NS1 test kits for the diagnosis of dengue fever. Diagnostic Microbiology and Infectious Disease 64(1): 31-36.
Mfuh, K.O., Achonduh-Atijegbe,
O.A, Bekindaka, O.N., Esemu,
L.F., Mbakop, C.D., Gandhi, K., Leke,
R.G.F., Taylor, D.W. & Nreurkar, V.R. 2019. A
comparison of thick-fim microscopy, rapid diagnostic
test, and polymerase chain reaction for accurate diagnosis of Plasmodium falciparium malaria. Malaria Journal 18: 73.
Muller, D.A. & Young, P.R.
2013. The flavivirus NS1 protein: Molecular and structural biology, immunology,
role in pathogenesis and application as a diagnostic biomarker. Antiviral Research 98(2): 192-208.
Osorio, L., Ramirez, M., Bonelo, A., Villar, L.A. &
Parra, B. 2010. Comparison of the diagnostic accuracy of commercial NS1-based
diagnostic tests for early dengue infection. Virology Journal 7: 361.
Packierisamy, P.R., Ng, C.W., Dahlui,
M., Inbaraj, J., Balan, V.K., Halasa,
Y.A. & Shepard, D.S. 2015. Cost of dengue vector control activities in
Malaysia. American Journal of Tropical
Medicine and Hygiene 93(5): 1020-1027.
Pilay, K.P., Jasamai, M., Thayan, R., Santhanam, J., Hassan, S.S. & Yap, W.B.
2017. Nucleoside analogs as potential antiviral agents for dengue virus
infections. Medicinal Chemistry Research 26(7): 1382-1387.
Puspasari, F., Putri, R.D., Aisyah,
Damayanti, R.R., Yuwita, A., Alisjahbana,
B., Handali, S., Ihsanawati & Natalia, D. 2017. Construction and expression of a synthetic gene
encoding nonstructural glycoprotein NS1 of dengue 2 virus in Pichia pastoris. Asian Pacific Journal of Tropical Biomedicine 7(8): 689-693.
Rio, D.C., Ares, M., Hannon,
G.J. & Nilsen, T.W. 2010. Preparation of cytoplasmic and nuclear RNA from
tissue culture cells. Cold Spring Harbor
Protocols 2010(6): pdb-rot5441.
Rivetz, B., Siman-Tov, D., Ambal, E., Jaramillo, A.C., Ben-Zvi,
A., Tartakovsky, B. & Fish, F. 2009. New dengue antibody assay with unique
differential detection of IgG and IgM antibodies. Clinical Biochemistry 42(3): 180-184.
Shu, P.Y., Chen, L.K., Chang,
S.F., Yueh, Y.Y., Chow, L., Chien, L.J., Chin, C.,
Lin, T.H. & Huang, J.H. 2000. Dengue NS1‐specific antibody responses:
Isotype distribution and serotyping in patients with dengue fever and dengue
hemorrhagic fever. Journal of Medical
Virology 62(2): 224-232.
Stadhouders, R., Pas, S.D., Anber, J., Voermans, J., Mes, T.H.M. & Schutten, M. 2010. The effect of primer-template mismatches
on the detection and quantification of nucleic acids using the 5’ nuclease
assay. Journal of Molecular Diagnostics 12(1): 103-117.
Suleman, M., Faryal, R., Alam, M.M., Sharif,
S., Shaukat, S., Aamir, U.B., Khurshid, A., Angez,
M., Umair, M., Sufian, M.M., Arshad, Y., Mujtaba, G.
& Zahoor Zaidai, S.S. 2016. NS1 antigen: A new
beam of light in the early diagnosis of dengue infection. Asian Pacific Journal of Tropical Medicine 9(12): 1212-1214.
Tan, T.S., Hassan, S.S. &
Yap, W.B. 2016. Significant replication time-points of avian influenza A virus
strain H5N1 in Madin-Darby Canine Kidney cells. Malaysian Journal Health Sciences 14(1):
17-21.
Tang, Y., Rodpradit,
P., Chinnawirotpisan, P., Mammen Jr., M.P., Li, T., Lynch, J.A., Putnak, R. &
Zhang, C. 2010. Comparative analysis of full-Length genomic sequences of 10
dengue serotype 1 viruses associated with different genotypes, epidemics, and
disease severity isolated in Thailand over 22 years. American Journal of
Tropical Medicine and Hygiene 83(5): 1156-1165.
Tomlinson, S.M., Malmstrom,
R.D. & Watowich, S.J. 2009. New approaches to
structure-based discovery of dengue protease inhibitors. Infectious Disorders-Drug Targets 9(3): 327-343.
Tuiskunen Bäck, A. & Lundkvist, Å. 2013. Dengue viruses - An overview. Infection Ecology and Epidemiology 3(1):
19839.
Yap, W.B., Goh, K.C., Syed
Hassan, S. & Balasubramaniam V.RMT. 2020.
Regulation of pro-apoptotic bax and trail gene
expressions by H5N1 in Madin-Darby Canine Kidney (Mdck) cell line. Pakistan Veterinary Journal 40(4):
509-513.
Yohan, B., Wardhani,
P., Trimarsanto, H. & Sasmono,
R.T. 2017. Production of recombinant dengue non-structural 1 (NS1) proteins
from clinical virus isolates. Protein Expression
and Purification 129: 53-59.
*Pengarang untuk surat-menyurat; email:
yapweiboon@ukm.edu.my
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