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1.
Artigo em Russo | MEDLINE | ID: mdl-30695485

RESUMO

AIM: An attempt to use MALDI-TOF mass-spectrometry method for identification of lep- tospiral isolates on the serovar level. MATERIALS AND METHODS: 8 reference Leptospira spp. and 11 leptospira strains isolated from leptospiral patients and infected animals in the North-Western region of Russia were included into the study. Mass-spectra of all the studied strains were obtained by direct profiling of cell extracts. The created main spectral profiles (MSP) of reference strains were used for identification of isolates. Evaluation of identification was carried out by calculating coefficients of matching rate of separate spectra of each isolate with MSP of all the reference strains. RESULTS: Results of identification have shown the similarity of spectra of isolates belonging to Pomona, Icterohaemorrhagiae and Canicola serogroups, with MSP of saprophyte strain L. biflexa Patoc I. It is assumed that spectra of the studied strains contained peaks of polysaccha- ride Ο-antigens. Wherein maximum mean values of matching rate coefficients between spectra of isolates and MSP of pathogenic reference strains of leptospira correctly matched serovar type of the isolate. CONCLUSION: Further extended studies may form the base of development of a simple and rapid method oftyping of leptospirosis causative agents on the level of serovars using MALDITOF mass-spectrometry.


Assuntos
Leptospira/classificação , Leptospira/metabolismo , Sorogrupo , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz
2.
Artigo em Russo | MEDLINE | ID: mdl-26950986

RESUMO

AIM: Creation of a classification model of Leptospira spp. serovar model using ClinProTools 3.0 software and evaluation of use of MALDI-TOF MS as a method of quality control of reference strains of leptospira. MATERIALS AND METHODS: 10 reference strains of Leptospira spp. were used in the study according to microscopic agglutination reaction from the collection of Pasteur RIEM. All the strains were cultivated for 10 days in Terskikh medium at 28 degrees C. Cell extracts were obtained by ethanol/formic acid method. α-cyano-4-hydroxycinnamic acid solution was used as a matrix. Mass-spectra were obtained in Microflex mass-spectrometer (Bruker Daltonics, Germany). External validation of the test-model was carried out using novel spectra of every reference strain during their repeated reseeding. RESULTS: Values of cross-validation and confirmatory ability of the optimal model, built on a genetic algorithm, was 99.14 and 100%, respectively. This model contained 11 biomarker peaks (m/z 2959, 3447, 3548, 3764, 3895, 5221, 5917, 6173, 6701, 7013, 8364) for serovar classification. Results of the external validation have shown a 100% correct classification in serovar classesin Sejroe, Ballum, Tarassovi; Copenhageni, Mozdoc, Grippotyphosa and Patoc, that indicates a high prognostic ability of the model in these classes. However, data from verification matrix have shown, that 50%.of the spectra from Canicola and Pomona serovars were classified as Patoc class, that could be associated with cross serological activity of Patoc serovar L. biflexa with pathogenic leptospirae. CONCLUSION: MALDI-TOF mass-spectrometry method combined with building and using the classification model could be a useful instrument for intra-laboratory control of leptospira reseeding.


Assuntos
Ácidos Cumáricos/química , Leptospira/classificação , Filogenia , Sorotipagem/métodos , Software , Meios de Cultura/química , Humanos , Leptospira/química , Leptospira/crescimento & desenvolvimento , Leptospira/metabolismo , Análise de Componente Principal , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz
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