5 CONCLUSIONS 
In this position paper, we demonstrate the early 
development of an integrated EQCM device for 
dengue biosensing. Our working hypothesis is that 
using dual-function sensors could not only increase 
the sensitivity to very low limits of detection and 
increase dynamic range of disease quantification, but 
also provide higher diagnostic accuracy through 
cross-validation of parallel measurement techniques. 
This presents potential capability for new clinical 
insights, including early detection of dengue 
infection, and identification of asymptomatic carriers. 
Furthermore, to the best of our knowledge, this is the 
first time a multichannel IEQCM array has been 
described. To a larger context, we propose that it is a 
worthwhile endeavour to explore more parallel dual-
measurement techniques and their integration 
strategies to enhance sensitivity and accuracy of 
diagnostic tests. 
When completed, this technology could 
potentially improve dengue patient care significantly, 
as dengue could be detected at an earlier stage, and 
enables a faster and higher accuracy of diagnosis at 
the point-of-care. As this technology utilizes a 
generic immune-affinity sensing scheme, this 
technique could also be expanded into other diseases. 
ACKNOWLEDGEMENTS 
This is a collaborative research between Linkoping 
University (Sweden), XLIM Research Institute, 
University of Limoges (France) and International 
Islamic University Malaysia. It is funded by the 
Swedish Research Council (2014-4254) and the 
Malaysian Ministry of Higher Education under 
FRGS15-217-0458. 
REFERENCES 
Ahmad, R., Suzilah, I., Wan Najdah, W. M. A., Topek, O., 
Mustafakamal, I., Lee, H. L., 2018. Factors determining 
dengue outbreak in Malaysia. PLOS ONE 13, e0193326. 
https://doi.org/10.1371/journal.pone.0193 326 
Ashshi, A. M., 2017. The prevalence of dengue virus 
serotypes in asymptomatic blood donors reveals the 
emergence of serotype 4 in Saudi Arabia. Virology 
Journal 14. https://doi.org/10.1186/s12985-017-0768-7 
Casenghi, M., Kosack, C., Li, R., Bastard, M., Ford, N., 
2014. NS1 antigen detecting assays for diagnosing 
acute dengue infection in people living in or returning 
from endemic countries. Cochrane Database of 
Systematic Reviews. 
Cecchetto, J., Carvalho, F. C., Santos, A., Fernandes, F. C., 
Bueno, P.R., 2015. An impedimetric biosensor to test 
neat serum for dengue diagnosis. Sensors and Actuators 
B: Chemical 213, 150–154. 
Darwish, N. T., Alias, Y. B., Khor, S. M., 2015. An 
introduction to dengue-disease diagnostics. TrAC 
Trends in Analytical Chemistry 67, 45–55. 
Dias, A. C. M. S., Gomes-Filho, S. L. R., Silva, M. M. S., 
Dutra, R. F., 2013. A sensor tip based on carbon 
nanotube-ink printed electrode for the dengue virus 
NS1 protein. Biosensors and Bioelectronics 44, 216–
221. https://doi.org/10.1016/j.bios.2012.12.033 
Kankare, J., 2002. Sauerbrey equation of quartz crystal 
microbalance in liquid medium. Langmuir 18, 7092–
7094. 
Kassim, F. M., Izati, M. N., TgRogayah, T. A., Apandi, Y. 
M., Saat, Z., 2011. Use of dengue NS1 antigen for early 
diagnosis of dengue virus infection. Southeast Asian J 
Trop Med Public Health 42, 562–9. 
Koyun, A., Ahlatcolu, E., Koca, Y., Kara, S., 2012. 
Biosensors and their principles. A Roadmap of 
Biomedical Engineers and Milestones. 
Liu, F., Li, F., Nordin, A. N., Voiculescu, I., 2013a. A novel 
cell-based hybrid acoustic wave biosensor with 
impedimetric sensing capabilities. Sensors 13, 3039–
3055. 
Liu, F., Li, F., Nordin, A.N., Voiculescu, I., 2013b. A novel 
cell-based hybrid acoustic wave biosensor with 
impedimetric sensing capabilities. Sensors 13, 3039–
3055. 
Ma, F., Rehman, A., Sims, M., Zeng, X., 2015. 
Antimicrobial Susceptibility Assays Based on the 
Quantification of Bacterial Lipopolysaccharides via a 
Label Free Lectin Biosensor. Anal. Chem. 87, 4385–
4393. https://doi.org/10.1021/acs.analchem.5b00165 
Mansor, A.F.M., Ibrahim, S.N., 2016. Simulation of ring 
interdigitated electrode for dielectrophoretic trapping, 
in:  Semiconductor Electronics (ICSE), 2016 IEEE 
International Conference On. IEEE, pp. 169–172. 
Masrinoul, P., Diata, M.O., Pambudi, S., Limkittikul, K., 
Ikuta, K., Kurosu, T., 2011. Highly conserved region 
141–168 of the NS1 protein is a new common epitope 
region of dengue virus. Jpn J Infect Dis 64, 109–15. 
Mohammed, M., Abakar, A.D., Bakri, Y.M., Dafalla, O.M., 
2018. Molecular surveillance of dengue infections in 
Sabya governate of Jazan region, Southwestern Saudi 
Arabia. 
Nevill, J. T., Malleo, D., 2012. Nanogap Biosensors, in: 
Encyclopedia of Nanotechnology. Springer, pp. 1544–
1552. 
Omar, N. A. S., Fen, Y. W., 2018. Recent development of 
SPR spectroscopy as potential method for diagnosis of 
dengue virus E-protein. Sensor Review 38, 106–116. 
Pal, S., Dauner, A. L., Valks, A., Forshey, B. M., Long, K. 
C., Thaisomboonsuk, B., Sierra, G., Picos, V., Talmage, 
S., Morrison, A. C., others, 2015. Multi-country 
prospective clinical evaluation of two ELISAs and two