» Articles » PMID: 28930175

Sensitive Genotyping of Foodborne-Associated Human Noroviruses and Hepatitis A Virus Using an Array-Based Platform

Overview
Journal Sensors (Basel)
Publisher MDPI
Specialty Biotechnology
Date 2017 Sep 21
PMID 28930175
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

Human noroviruses (NoV) are the leading cause of human gastroenteritis in populations of all ages and are linked to most of the foodborne outbreaks worldwide. Hepatitis A virus (HAV) is another important foodborne enteric virus and is considered the most common agent causing acute liver disease worldwide. In the present study, a focused, low-density DNA microarray was developed and validated for the simultaneous identification of foodborne-associated genotypes of NoV and HAV. By employing a novel algorithm, capture probes were designed to target variable genomic regions commonly used for typing these foodborne viruses. Validation results showed that probe signals, specific for the tested NoV or HAV genotypes, were on average 200-times or 38-times higher than those detected for non-targeted genotypes, respectively. To improve the analytical sensitivity of this method, a 12-mer oligonucleotide spacer sequence was added to the capture probes and resulted in a detection threshold of less than 10 cRNA transcripts. These findings have indicated that this array-based typing sensor has the accuracy and sensitivity for identifying NoV and HAV genotypic profiles predominantly linked to food poisoning. The implementation of this typing sensor would thus provide highly relevant and valuable information for use in surveillance and outbreak attribution.

Citing Articles

Lithographic Processes for the Scalable Fabrication of Micro- and Nanostructures for Biochips and Biosensors.

Fruncillo S, Su X, Liu H, Wong L ACS Sens. 2021; 6(6):2002-2024.

PMID: 33829765 PMC: 8240091. DOI: 10.1021/acssensors.0c02704.


A Survey of Analytical Techniques for Noroviruses.

Liu L, Moore M Foods. 2020; 9(3).

PMID: 32164213 PMC: 7142446. DOI: 10.3390/foods9030318.


Molecular epidemiology of hepatitis A outbreaks in two districts in Indonesia in 2018: Same subtype, but different strains.

Setyowati D, Mubawadi T, Mirasa Y, Purwanto D, Amin M, Utsumi T Biomed Rep. 2020; 12(2):51-58.

PMID: 31929874 PMC: 6951258. DOI: 10.3892/br.2019.1261.


Advances in Diagnostic Approaches for Viral Etiologies of Diarrhea: From the Lab to the Field.

Singh Malik Y, Verma A, Kumar N, Touil N, Karthik K, Tiwari R Front Microbiol. 2019; 10:1957.

PMID: 31608017 PMC: 6758846. DOI: 10.3389/fmicb.2019.01957.

References
1.
Peplies J, Glockner F, Amann R . Optimization strategies for DNA microarray-based detection of bacteria with 16S rRNA-targeting oligonucleotide probes. Appl Environ Microbiol. 2003; 69(3):1397-407. PMC: 150098. DOI: 10.1128/AEM.69.3.1397-1407.2003. View

2.
Schena M, Shalon D, Davis R, Brown P . Quantitative monitoring of gene expression patterns with a complementary DNA microarray. Science. 1995; 270(5235):467-70. DOI: 10.1126/science.270.5235.467. View

3.
Law J, Mutalib N, Chan K, Lee L . Rapid methods for the detection of foodborne bacterial pathogens: principles, applications, advantages and limitations. Front Microbiol. 2015; 5:770. PMC: 4290631. DOI: 10.3389/fmicb.2014.00770. View

4.
Vinje J . Advances in laboratory methods for detection and typing of norovirus. J Clin Microbiol. 2014; 53(2):373-81. PMC: 4298492. DOI: 10.1128/JCM.01535-14. View

5.
Hall A, Eisenbart V, Etingue A, Gould L, Lopman B, Parashar U . Epidemiology of foodborne norovirus outbreaks, United States, 2001-2008. Emerg Infect Dis. 2012; 18(10):1566-73. PMC: 3471645. DOI: 10.3201/eid1810.120833. View