Salivary Detection of Zika Virus Infection Using ATR-FTIR Spectroscopy Coupled with Machine Learning Algorithms and Univariate Analysis: A Proof-of-Concept Animal Study

Author:

Oliveira Stephanie Wutke1,Cardoso-Sousa Leia1,Georjutti Renata Pereira12ORCID,Shimizu Jacqueline Farinha34,Silva Suely34,Caixeta Douglas Carvalho1ORCID,Guevara-Vega Marco1,Cunha Thúlio Marquez5,Carneiro Murillo Guimarães6ORCID,Goulart Luiz Ricardo7ORCID,Jardim Ana Carolina Gomes34ORCID,Sabino-Silva Robinson1ORCID

Affiliation:

1. Innovation Center in Salivary Diagnostic and Nanobiotechnology, Department of Physiology, Institute of Biomedical Sciences, Federal University of Uberlandia, Uberlandia 38408-100, Brazil

2. College of Dentistry, University Center of Triangle (UNITRI), Uberlandia 38411-869, Brazil

3. Laboratory of Antiviral Research, Institute of Biomedical Science, Federal University of Uberlandia, Uberlandia 38408-100, Brazil

4. Institute of Biosciences, Humanities and Exact Sciences, São Paulo State University, São José do Rio Preto 15054-000, Brazil

5. School of Medicine, Federal University of Uberlandia (UFU), Uberlandia 38408-100, Brazil

6. Faculty of Computing, Federal University of Uberlandia (UFU), Uberlandia 38400-902, Brazil

7. Institute of Biotechnology, Federal University of Uberlandia, Uberlandia 38408-100, Brazil

Abstract

Zika virus (ZIKV) diagnosis is currently performed through an invasive, painful, and costly procedure using molecular biology. Consequently, the search for a non-invasive, more cost-effective, reagent-free, and sustainable method for ZIKV diagnosis is of great relevance. It is critical to prepare a global strategy for the next ZIKV outbreak given its devastating consequences, particularly in pregnant women. Attenuated total reflection–Fourier transform infrared (ATR-FTIR) spectroscopy has been used to discriminate systemic diseases using saliva; however, the salivary diagnostic application in viral diseases is unknown. To test this hypothesis, we intradermally challenged interferon-gamma gene knockout C57/BL6 mice with ZIKV (50 µL,105 FFU, n = 7) or vehicle (50 µL, n = 8). Saliva samples were collected on day three (due to the peak of viremia) and the spleen was also harvested. Changes in the salivary spectral profile were analyzed by Student’s t test (p < 0.05), multivariate analysis, and the diagnostic capacity by ROC curve. ZIKV infection was confirmed by real-time PCR of the spleen sample. The infrared spectroscopy coupled with univariate analysis suggested the vibrational mode at 1547 cm−1 as a potential candidate to discriminate ZIKV and control salivary samples. Three PCs explained 93.2% of the cumulative variance in PCA analysis and the spectrochemical analysis with LDA achieved an accuracy of 93.3%, with a specificity of 87.5% and sensitivity of 100%. The LDA-SVM analysis showed 100% discrimination between both classes. Our results suggest that ATR-FTIR applied to saliva might have high accuracy in ZIKV diagnosis with potential as a non-invasive and cost-effective diagnostic tool.

Funder

CTIC/FNDCT-CNPq/MEC-CAPES/MS-Decit/Preventing and Combating Zika Virus

CAPES—Prevention and Combat of Outbreaks, Endemics, Epidemics, and Pandemics

FAPEMIG

CNPq

Federal University of Uberlandia and National Institute of Science and Technology in Theranostics and Nanobiotechnology

FAU-ImunoScan-UFU

Publisher

MDPI AG

Subject

Clinical Biochemistry

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