COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIAL

Recently there has been a significant increase in the incidence of mycobacteriosis, which is due to an increase in the proportion of immunosuppressed patients, the presence of these various comorbid conditions, as well as the improvement of diagnostic methods. Selecting the most accurate method of i...

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Main Authors: A. V. Lyamin, D. D. Ismatullin, A. V. Zhestkov, A. M. Kovalyov, L. A. Baryshnikova, S. S. Nenjajkin
Format: Article
Language:Russian
Published: Sankt-Peterburg : NIIÈM imeni Pastera 2017-09-01
Series:Infekciâ i Immunitet
Subjects:
Online Access:https://www.iimmun.ru/iimm/article/view/561
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spelling doaj-0e68d6fa92d445f7b31a6794137516d52021-09-21T14:01:27ZrusSankt-Peterburg : NIIÈM imeni PasteraInfekciâ i Immunitet2220-76192313-73982017-09-017328529110.15789/2220-7619-2017-3-285-291348COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIALA. V. Lyamin0D. D. Ismatullin1A. V. Zhestkov2A. M. Kovalyov3L. A. Baryshnikova4S. S. Nenjajkin5Samara State Medical UniversitySamara State Medical UniversitySamara State Medical UniversitySamara Regional Clinical Tuberculosis Dispensary named N.V. PostnikovSamara Regional Clinical Tuberculosis Dispensary named N.V. PostnikovSamara State Medical UniversityRecently there has been a significant increase in the incidence of mycobacteriosis, which is due to an increase in the proportion of immunosuppressed patients, the presence of these various comorbid conditions, as well as the improvement of diagnostic methods. Selecting the most accurate method of identification is extremely important in determining treatment strategy of patients. The aim of the study was to conduct a comparative analysis of modern methods of identification NTMB isolated from clinical specimens in 2015 in the Samara region. The work was carried out identification of 78 strains of microorganisms. Laboratory diagnosis was carried out using the DNA hybridization method and MALDI-ToF mass spectrometry. When microbial identification using MALDI-ToF mass spectrometry was isolated 16 strains (20.5%) M. kansasii; 11 strains (14.1%) M. avium and M. fortuitum; 9 strains (11.5%) M. gordonae; strain 3 (3.8%) M. peregrinum, M. szulgai, M. chimera intracellulare group, strain 2 (2.6%) M. abscessus, M. septicum, M. paragordonae, M. senegalence, 1 strain (1.3%) M. chelonae, M. frederiksbergense, M. monacense, M. lentiflavum. By using mass spectrometry, it was identified 15 types NTMB compared with 9 types — by DNA hybridization. Full match identification results was observed only in 45 (57.7%) strains of divergent strains were found in 16 (20.5%). Most often when using the DNA hybridization method, discrepancy was detected in slow-growing cultures (9 strains) with a predominance of microorganisms identified as M. gordonae. Among the representatives of fast-growing NTMB, seven investigations were identified in the identification, more often among representatives of the M. fortuitum and M. peregrinum groups. Particular attention should be paid to the identification of the M. kansasii strain by a molecular genetic method, which mass spectrometry was defined as M. bovis. Both cultures of M. tuberculosis complex, which were identified by MALDI-ToF spectrometry, DNA hybridization were not determined to species. 17 (21.8%) of microbial strains which have been identified using the method of DNA hybridization, identified by spectrometry, including slow-growing microorganisms, non-mycobacteria strains seven (9.0%): Gordonia rubriperticta, Nocardia forcinica, Tsukumurella spp., Rhodotorula mucilaginosa. Accurate species identification NTMB is fundamental to determine the tactics of treatment of patients with mycobacteriosis. Due to this rather limited possibility of identification of non-tuberculous mycobacteria, using a DNA-hybridization method is inadequate to date. The introduction of new techniques, such as MALDI-ToF spectrometry, can identify a greater number of species of nontuberculous mycobacteria, as well as other types of slow-growing microorganisms having similarities with mycobacteria on cultural and morphological properties, which significantly increases the diagnostic capabilities of laboratories.https://www.iimmun.ru/iimm/article/view/561mycobacteriosisnontuberculous mycobacteriadna-hybridization methodmaldi-tof mass spectrometrymicroorganisms identification
collection DOAJ
language Russian
format Article
sources DOAJ
author A. V. Lyamin
D. D. Ismatullin
A. V. Zhestkov
A. M. Kovalyov
L. A. Baryshnikova
S. S. Nenjajkin
spellingShingle A. V. Lyamin
D. D. Ismatullin
A. V. Zhestkov
A. M. Kovalyov
L. A. Baryshnikova
S. S. Nenjajkin
COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIAL
Infekciâ i Immunitet
mycobacteriosis
nontuberculous mycobacteria
dna-hybridization method
maldi-tof mass spectrometry
microorganisms identification
author_facet A. V. Lyamin
D. D. Ismatullin
A. V. Zhestkov
A. M. Kovalyov
L. A. Baryshnikova
S. S. Nenjajkin
author_sort A. V. Lyamin
title COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIAL
title_short COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIAL
title_full COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIAL
title_fullStr COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIAL
title_full_unstemmed COMPARATIVE ANALYSIS OF METHODS FOR IDENTIFICATION OF NONTUBERCULOUS MYCOBACTERIA ISOLATED FROM CLINICAL MATERIAL
title_sort comparative analysis of methods for identification of nontuberculous mycobacteria isolated from clinical material
publisher Sankt-Peterburg : NIIÈM imeni Pastera
series Infekciâ i Immunitet
issn 2220-7619
2313-7398
publishDate 2017-09-01
description Recently there has been a significant increase in the incidence of mycobacteriosis, which is due to an increase in the proportion of immunosuppressed patients, the presence of these various comorbid conditions, as well as the improvement of diagnostic methods. Selecting the most accurate method of identification is extremely important in determining treatment strategy of patients. The aim of the study was to conduct a comparative analysis of modern methods of identification NTMB isolated from clinical specimens in 2015 in the Samara region. The work was carried out identification of 78 strains of microorganisms. Laboratory diagnosis was carried out using the DNA hybridization method and MALDI-ToF mass spectrometry. When microbial identification using MALDI-ToF mass spectrometry was isolated 16 strains (20.5%) M. kansasii; 11 strains (14.1%) M. avium and M. fortuitum; 9 strains (11.5%) M. gordonae; strain 3 (3.8%) M. peregrinum, M. szulgai, M. chimera intracellulare group, strain 2 (2.6%) M. abscessus, M. septicum, M. paragordonae, M. senegalence, 1 strain (1.3%) M. chelonae, M. frederiksbergense, M. monacense, M. lentiflavum. By using mass spectrometry, it was identified 15 types NTMB compared with 9 types — by DNA hybridization. Full match identification results was observed only in 45 (57.7%) strains of divergent strains were found in 16 (20.5%). Most often when using the DNA hybridization method, discrepancy was detected in slow-growing cultures (9 strains) with a predominance of microorganisms identified as M. gordonae. Among the representatives of fast-growing NTMB, seven investigations were identified in the identification, more often among representatives of the M. fortuitum and M. peregrinum groups. Particular attention should be paid to the identification of the M. kansasii strain by a molecular genetic method, which mass spectrometry was defined as M. bovis. Both cultures of M. tuberculosis complex, which were identified by MALDI-ToF spectrometry, DNA hybridization were not determined to species. 17 (21.8%) of microbial strains which have been identified using the method of DNA hybridization, identified by spectrometry, including slow-growing microorganisms, non-mycobacteria strains seven (9.0%): Gordonia rubriperticta, Nocardia forcinica, Tsukumurella spp., Rhodotorula mucilaginosa. Accurate species identification NTMB is fundamental to determine the tactics of treatment of patients with mycobacteriosis. Due to this rather limited possibility of identification of non-tuberculous mycobacteria, using a DNA-hybridization method is inadequate to date. The introduction of new techniques, such as MALDI-ToF spectrometry, can identify a greater number of species of nontuberculous mycobacteria, as well as other types of slow-growing microorganisms having similarities with mycobacteria on cultural and morphological properties, which significantly increases the diagnostic capabilities of laboratories.
topic mycobacteriosis
nontuberculous mycobacteria
dna-hybridization method
maldi-tof mass spectrometry
microorganisms identification
url https://www.iimmun.ru/iimm/article/view/561
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