Preview

Problems of Particularly Dangerous Infections

Advanced search

Extensive Studies of Legionella Strains Isolated from the Environmental Objects during Preparation and Holding of Mass Events in the Russian Federation in 2013-2014

https://doi.org/10.21055/0370-1069-2019-4-85-91

Abstract

Objective of the work was to conduct an extended study of Legionella strains isolated from epidemiologically significant environmental objects during the preparation and conduct of mass events in the territory of the Russian Federation in 2013-2014 . Materials and methods. Studied were 53 strains of Legionella pneumophila, isolated from epidemiologically significant objects during the preparation and conduct of a number of mass events (ME): XXVII World Summer Universiade, XXII Olympic Winter Games and XI Paralympic Winter Games, Sochi; Summer Health Promotion Campaign in 2014, Republic of Crimea; IV Caspian Summit, Astrakhan, 2014. Strains were analyzed using multilocus sequencing, time-of-flight mass spectrometry (MALDI-ToF-MS) and atomic force microscopy. Legionella strains were typed by multilocus sequencing in accordance with the algorithm of the European Legionellosis Research Group “Sequence-Based Typing protocol for epidemiological typing of L. pneumophila". Results and discussion. Strains of L. pneumophila, legionellosis agent, were isolated in the territory of the Republic of Crimea, Moscow, Kazan, Sochi, Astrakhan and characterized. According to the results of slide agglutination, 17 L. pneumophila strains were assigned to 1 serogroup , 37 - to 2-14 serogroups. Based on the data obtained by multilocus sequencing, in accordance with the algorithm of the European Working Group on Legionellosis Surveillance, allelic profiles of all the studied L. pneumophila strains were identified; their belonging to 7 sequence types was established. Using the method of time-of-flight mass spectrometry, legionella strains were characterized, their protein profiles were studied, and a database was formed. Using the method of scanning probe microscopy, information was obtained on the morphology of the cells of 18 legionella strains and the features of their surface structures. Using the methods of multilocus sequencing, time-of-flight mass spectrometry, and atomic force microscopy, molecular-genetic, proteomic, and morphometric features of Legionellosis pathogen strains that circulate in epidemiologically significant sites in the Russian Federation were determined.

About the Authors

S. A. Portenko
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

Svetlana A. Portenko.

46, Universitetskaya St., Saratov, 410005.



A. S. Abdrashitova
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



N. E. Shcherbakova
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



P. S. Erokhin
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



Ya. M. Krasnov
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



N. P. Guseva
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



N. A. Sharapova
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



S. A. Shcherbakova
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



V. V. Kutyrev
Russian Research Anti-Plague Institute "Microbe"
Russian Federation

46, Universitetskaya St., Saratov, 410005.



References

1. van Heijnsbergen E., de Roda Husman A.M., Lodder W.J., Bouwknegt M., Docters van Leeuwen A.E., Bruin J.P., Euser S.M., den Boer J.W., Schalk J.A.C. Viable Legionella pneumophila bacteria in natural soil and rainwater puddles. J. Appl. Microbiol. 2014; 117(3):882-90. DOI: 10.1111/jam.12559.

2. Karpova T.I., Tartakovsky I.S. [Peculiarities of epidemiology and laboratory diagnosis of legionellosis]. Infektsionney Bolezni. Novosti, Mneniya, Obuchenie [Infectious Diseases. News, Opinions, Training]. 2015; 4:51-8.

3. Onishеhcnko G.G., Lazikova G.F., Chistyakova G.G., Demina Yu.V., Nikonov B.I., Romanеnko V.V., Smirnova S.S., Tеrentyeva L.N., Malozеmova T.Yu., Irizhеpova O.V., Gavrilova N.A., Avvakumova N.P., Shitoeva E.V [Epidemiologic characteris¬tic of Legionnaire’s disease outbreak in town Verkhnyaya Pyshma]. Zhurnal Mikrobiologii, Epidemiologii i Immunobiologii [Journal of Microbiology, Epidemiology and Immunobiology]. 2008; 2:82-5.

4. Legionnaires’ disease Annual Epidemiological Report for 2017. European Centre for Disease Prevention and Control. Legionnaires’ disease. In: ECDC. Annual epidemiological report for 2017. Stockholm: ECDC; 2019. Р. 2.

5. Dronina Yu.E., Tartakovsky I.S., Sadretdinova O.V., Karpova T.I., Novokshonova I.V., Gruzdeva O.A., Karazhas N.V., Rybalkina T.N. [Serologic characteristic of Legionella pneumophila strains isolated from potentially dangerous water systems in russian federation in 2007-2011]. Zhurnal Mikrobiologii, Epidemiologii i Immunobiologii [Journal of Microbiology, Epidemiology and Immunobiology]. 2012; 2:23-8.

6. Tartakovsky I.S., Gruzdeva O.A., Galstyan G.M., Karpova T.I. [Prophylaxis, Diagnostics, and Treatment of Legionellosis]. Moscow; 2013. 344 p.

7. Dilger Т., Melzl H., Gessner A. Legionella contamination in warm water systems: a species-level survey. Int. J. Hyg. Environ. Health. 2018; 221(21:199-210. DOI: 10.1016/j.ijheh.2017.10.011._

8. Dilger T., Melzl H., Gessner A.J. Rapid and reliable identification of waterborne Legionella species by MALDI-TOF mass spectrometry. Microbiol. Methods. 2016; 127:154-9. DOI: 10.1016/j.mimet.2016.05.028.

9. Zhan X.-Y, Zhu Q.-Y Molecular typing of Legionella pneumophila isolates from environmental water samples and clinical samples using a five-gene sequence typing and standard Sequence-Based Typing. PLoS ONE. 2018; 13(2):e0190986. DOI: 10.1371/journal.pone.0190986.

10. Ezhlova E.B., Demina Yu.V, Kulichenko A.N., Portenko S.A., Gus’kov A.S., Pochtareva E.S., Savel’eva I.V., Volynkina A.S., Savel’ev V.N., Mikhailova M.E., Kuznetsova I.V., Bobenko O.A., Efremenko D.V., Kazakova E.S., Krasovskaya T.Yu., Kuklev V.E., Kas’yan I.A., Bil’ko E.A., Mitsevich E.V., Mitsevich I.P, Platonov M.E., Teimurazov M.G., Polosenko O.V, Eldinova V.E., Boiko E.A., Malay VI., Klindukhov V.P., Grechanaya T.V., Nikolaevich P.N., Biryukov V.A., Bozhko I.I., Shcherbina L.I., Pogudina O.A. [Management of the investigation and detection of legionellosis agent in the environmental samples during the preparation and holding of the XXII Winter Olympics and XI Paralympics in Sochi]. Problemy Osobo Opasnykh Infektsii[Problems of Particularly Dangerous Infections]. 2015; 2:50-3. DOI: 10.21055/0370-1069-2015-2-50-53.

11. Popova A.Yu., Ezhlova E.B., Demina Yu.V, Kulichenko A.N., Ryazanova A.G., Efremenko D.V., Kuznetsova I.V., Dikova S.P., Volynkina A.S., Lisitskaya Ya.V, Kazakova E.S., Portenko S.A., Krasovskaya T.Yu., Sharova I.N., Kuklev V.E., Safronov V.A., Razdorsky A.S., Karnaukhov I.G. [Results of work of the Rospotrebnadzor SAET on the provision of sanitary epidemiologi¬cal welfare of the population during the summer health-promotion campaign, 2014 in the Crimean Federal District]. Problemy Osobo Opasnykh Infektsii [Problems of Particularly Dangerous Infections]. 2015; 4:45-8. DOI: 10.21055/0370-1069-2015-4-45-48.

12. Gaia V., Fry N.K., Afshar B., Luck PC., Meugnier H., Etienne J., Peduzzi R., Harrison T.G. Consensus sequence-based scheme for epidemiological typing of clinical and environmental isolates of Legionella pneumophila. J. Clin. Microbiol. 2005; 43(5):2047-52. DOI: 10.1128/JCM.43.5.2047-2052.2005.

13. Luck C., Fry N.K., Helbig J.H., Jarraud S., Harrison T.G. Typing methods for Legionella. In: Buchrieser C., Hilbi H., editors. Legionella. Methods in Molecular Biology (Methods and Protocols). NJ, Totowa: Humana Press; 2013. Vol. 954. P. 119-48. DOI: 10.1007/978-1-62703-161-5_6.


Review

For citations:


Portenko S.A., Abdrashitova A.S., Shcherbakova N.E., Erokhin P.S., Krasnov Ya.M., Guseva N.P., Sharapova N.A., Shcherbakova S.A., Kutyrev V.V. Extensive Studies of Legionella Strains Isolated from the Environmental Objects during Preparation and Holding of Mass Events in the Russian Federation in 2013-2014. Problems of Particularly Dangerous Infections. 2019;(4):85-91. (In Russ.) https://doi.org/10.21055/0370-1069-2019-4-85-91

Views: 700


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0370-1069 (Print)
ISSN 2658-719X (Online)