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Multiplex Microarrays in 96-Well Plates Photoactivated with 4-Azidotetrafluorobenzaldehyde for the Identification and Quantification of β-Lactamase Genes and Their RNA Transcripts

Тип публикацииJournal Article
Дата публикации2023-12-20
scimago Q2
wos Q3
БС3
SJR0.791
CiteScore3.7
Impact factor3
ISSN14673037, 14673045
Molecular Biology
General Medicine
Microbiology (medical)
Microbiology
Краткое описание

Antibiotic-resistant bacteria represent a global issue that calls for novel approaches to diagnosis and treatment. Given the variety of genetic factors that determine resistance, multiplex methods hold promise in this area. We developed a novel method to covalently attach oligonucleotide probes to the wells of polystyrene plates using photoactivation with 4-azidotetrafluorobenzaldehyde. Then, it was used to develop the technique of microarrays in the wells. It consists of the following steps: activating polystyrene, hybridizing the probes with biotinylated target DNA, and developing the result using a streptavidin–peroxidase conjugate with colorimetric detection. The first microarray was designed to identify 11 different gene types and 16 single-nucleotide polymorphisms (SNPs) of clinically relevant ESBLs and carbapenemases, which confer Gram-negative bacteria resistance to β-lactam antibiotics. The detection of bla genes in 65 clinical isolates of Enterobacteriaceae demonstrated the high sensitivity and reproducibility of the technique. The highly reproducible spot staining of colorimetric microarrays allowed us to design a second microarray that was intended to quantify four different types of bla mRNAs in order to ascertain their expressions. The combination of reliable performance, high throughput in standard 96-well plates, and inexpensive colorimetric detection makes the microarrays suitable for routine clinical application and for the study of multi-drug resistant bacteria.

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Veterinary Research Communications
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Russian Chemical Reviews
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Springer Nature
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Ulyashova M. M. et al. Multiplex Microarrays in 96-Well Plates Photoactivated with 4-Azidotetrafluorobenzaldehyde for the Identification and Quantification of β-Lactamase Genes and Their RNA Transcripts // Current Issues in Molecular Biology. 2023. Vol. 46. No. 1. pp. 53-66.
ГОСТ со всеми авторами (до 50) Скопировать
Ulyashova M. M., Presnova G. V., Filippova A. A., Grigorenko V., Egorov A. M., Rubtsova M. Multiplex Microarrays in 96-Well Plates Photoactivated with 4-Azidotetrafluorobenzaldehyde for the Identification and Quantification of β-Lactamase Genes and Their RNA Transcripts // Current Issues in Molecular Biology. 2023. Vol. 46. No. 1. pp. 53-66.
RIS |
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TY - JOUR
DO - 10.3390/cimb46010005
UR - https://doi.org/10.3390/cimb46010005
TI - Multiplex Microarrays in 96-Well Plates Photoactivated with 4-Azidotetrafluorobenzaldehyde for the Identification and Quantification of β-Lactamase Genes and Their RNA Transcripts
T2 - Current Issues in Molecular Biology
AU - Ulyashova, Mariya M
AU - Presnova, Galina V
AU - Filippova, Anna A
AU - Grigorenko, V.
AU - Egorov, Alexey M.
AU - Rubtsova, Maya
PY - 2023
DA - 2023/12/20
PB - MDPI
SP - 53-66
IS - 1
VL - 46
PMID - 38275665
SN - 1467-3037
SN - 1467-3045
ER -
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@article{2023_Ulyashova,
author = {Mariya M Ulyashova and Galina V Presnova and Anna A Filippova and V. Grigorenko and Alexey M. Egorov and Maya Rubtsova},
title = {Multiplex Microarrays in 96-Well Plates Photoactivated with 4-Azidotetrafluorobenzaldehyde for the Identification and Quantification of β-Lactamase Genes and Their RNA Transcripts},
journal = {Current Issues in Molecular Biology},
year = {2023},
volume = {46},
publisher = {MDPI},
month = {dec},
url = {https://doi.org/10.3390/cimb46010005},
number = {1},
pages = {53--66},
doi = {10.3390/cimb46010005}
}
MLA
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Ulyashova, Mariya M., et al. “Multiplex Microarrays in 96-Well Plates Photoactivated with 4-Azidotetrafluorobenzaldehyde for the Identification and Quantification of β-Lactamase Genes and Their RNA Transcripts.” Current Issues in Molecular Biology, vol. 46, no. 1, Dec. 2023, pp. 53-66. https://doi.org/10.3390/cimb46010005.