GENETIC (RAPD-PCR) VARIABILITY OF STAPHYLOCOCCUS AUREUS STRAINS EXTRACTED FROM LOCUS MORBI AND INTAKT SKIN OF PATIENTS WITH ALLERGODERMATOSIS

  • Sergiy Pokhil SE «I. Mechnikov Institute of Microbiology and Immunology of the National Academy of Medical Sciences of Ukraine»
  • Svetlana Dzhoraeva SE «Institute of Dermatology and Venerology of the National Academy of Medical Sciences of Ukraine» http://orcid.org/0000-0003-2486-5474

Аннотация

The article presents data on the study of genetic relatedness of S. aureus strains growing on the skin and nasal passages of patients with allergodermatoses. A study of the possible correlation between the genotype of the pathogen and the burden of allergodermatoses using the RAPD-PCR method was done.

The aim of the research: determination by RAPD-PCR analysis (Random Amplified Polymorphic DNA) of genetic variability and affinity of S. aureus strains extracted from locus morbi, intact areas of skin and nasal mucosa of patients with allergodermatoses (AD and IE).

Materials and methods. RAPD-PCR was used to genotype 111 strains of Staphylococcus aureus extracted from the skin and nasal passages of patients with allergodermatoses (AD and IE), as well as 11 strains isolated from the skin of almost healthy individuals to identify genetic links between these strains. These strains were removed from patients with AD and IE who sought medical help in the dermatological department of the State Institution "Institute of Dermatology and Venereology of the National Academy of Medical Sciences of Ukraine" during 2016-2019.

Results. When comparing the RAPD spectra of strains extracted from the affected and intact areas of the skin of patients with mild and severe AD, the degree of genetic relatedness of the strains was 75.1±4.4 % and 98.8±0.8 %, (P˂0,001), respectively, indicating a high level of affinity of the strains. Strains of S. aureus removed from the nasal passages of patients with AD had a high level of genetic affinity with strains removed from the affected areas of the skin – 79.5±1.6 %, which indicates the auto-origin of strains growing on the skin of patients. The affinity of strains isolated from patients with IE with the reference culture of S. aureus ATCC 25923 was 27.4±1.8 % and 52.0±5.2 % for strains isolated from patients with AD, indicating their low genetic relatedness.

Conclusions. In the study of RAPD spectra of S. aureus strains isolated from patients with both AD and IE, no genotype was identified that would be associated with the disease or its severity. A high level of genetic affinity of strains extracted from locus morbi with strains extracted from the nasal passages of patients with AD, indicating the auto-origin of strains that grow on the skin of patients. It is shown that with increasing severity of AD, the genetic monotype of isolated pathogens increased: in patients with mild AD, 3 genetic clusters of the microorganism were identified, with moderate – 2, and with severe only one.

Скачивания

Данные скачивания пока недоступны.

Биографии авторов

Sergiy Pokhil, SE «I. Mechnikov Institute of Microbiology and Immunology of the National Academy of Medical Sciences of Ukraine»

Laboratory of New and Little-Explored Infections Disease

Svetlana Dzhoraeva, SE «Institute of Dermatology and Venerology of the National Academy of Medical Sciences of Ukraine»

Laboratory and Experimental Department

Литература

Denysenko, O. I., Stepan, N. A. (2017). Klinichni rezultaty riznykh metodiv likuvannia khvorykh na ekzemu. Zhurnal dermatovenerolohii ta kosmetolohii imeni M. O. Torsuieva, 2 (38), 36–40.

Grice, E. A., Kong, H. H., Renaud, G., Young, A. C., Bouffard, G. G. et. al. (2008). A diversity profile of the human skin microbiota. Genome Research, 18 (7), 1043–1050. doi: http://doi.org/10.1101/gr.075549.107

Kutasevich, IA. F., Dzhoraeva, S. K., Mangusheva, V. IU. (2018). Issledovanie sostava mikrobioty kozhi i analiz ee antibiotikorezistentnosti u bolnykh allergodermatozami. Eksperimentalna і klіnіchna medicina, 1 (78), 101–107.

Blicharz, L., Rudnicka, L., Samochocki, Z. (2019). Staphylococcus aureus: an underestimated factor in the pathogenesis of atopic dermatitis? Advances in Dermatology and Allergology, 36 (1), 11–17. doi: http://doi.org/10.5114/ada.2019.82821

Dzhoraeva, S., Sobol, N., Ivantsova, H. (2020). Phenotypical characteristics of the biological properties of staphylococci withdrawn from patients with allergic dermatitis. EUREKA: Health Sciences, 1, 15–21. doi: http://doi.org/10.21303/2504-5679.2020.001125

Kutasevych, Y., Dzhoraeva, S., Goncharenko, V., Shcherbakova, Y., Mangusheva, V., Sobol, N., Shchegoleva, H. (2018). Research of certain pathogenic characteristics of clinical isolates of staphylococci of skin biome. EUREKA: Health Sciences, 2, 23–30. doi: http://doi.org/10.21303/2504-5679.2018.00585

Tsyhanenko, A. Ya., Tymchenko, O. M., Pokhyl, S. I. (2002). Zavdannia i shliakhy podalshoho udoskonalennia henotypuvannia zbudnykiv infektsiinykh zakhvoriuvan za dopomohoiu analizu polimorfizmu dovzhyny frahmentiv endonukleaznoi restryktsii khromosomnoi DNK. Eksperymentalna i klinichna medytsyna, 3, 79–83.

Ob unifikatsii mikrobiologicheskih (bakteriologicheskih) metod ovissledovaniya, primenyaemih v kliniko-diagnosticheskih laboratoriyah lechebno-profilakticheskih uchrezhdeniy (1985). MZ SSSR, No. 535. Available at: http://www.alppp.ru/law/zdravoohranenie--fizicheskaja-kultura-i-sport--turizm/zdravoohranenie/64/prikaz-minzdrava-sssr-ot-22-04-1985--535.html

Baron, E. J., Miller, J. M., Weinstein, M. P., Richter, S. S., Gilligan, P. H., Thomson, R. B. et. al. (2013). A Guide to Utilization of the Microbiology Laboratory for Diagnosis of Infectious Diseases: 2013 Recommendations by the Infectious Diseases Society of America (IDSA) and the American Society for Microbiology (ASM)a. Clinical Infectious Diseases, 57 (4), e22–e121. doi: http://doi.org/10.1093/cid/cit278

Singh, G. K., Bopanna, B. D., Rindhe, G. (2013). Molecular characterization of Staphylococcus aureus – human pathogen from clinical samples by RAPD markers. Journal of Medical Science and Clinical Research, 1 (2), 45–49.

Pereira, M. S. V., Leal, N. C., Leal, T. C. A., Sobreira, M., de Almeida, A. M. P., Siqueira-Junior, J. P., Campos-Takaki, G. M. (2002). Typing of human and bovine Staphylococcus aureus by RAPD-PCR and ribotyping-PCR. Letters in Applied Microbiology, 35 (1), 32–36. doi: http://doi.org/10.1046/j.1472-765x.2002.01127.x

Debnath, A., Chikkaswamy, B. K. (2015). Randomly Amplified Polymorphic DNA Assay of Methicillin Resistant Staphylococcus aureus Isolated from Clinical Samples from Bengaluru, India. International Journal of Current Microbiology and Applied Sciences, 4 (11), 342–355.

Zare, S., Derakhshandeh, A., Haghkhah, M., Naziri, Z., Broujeni, A. M. (2019). Molecular typing of Staphylococcus aureus from different sources by RAPD-PCR analysis. Heliyon, 5 (8), e02231. doi: http://doi.org/10.1016/j.heliyon.2019.e02231

Doan, S. Y., Savchuk, A. Y., Hladkaia, E. A. et. al. (2011). RAPD-analyz v yzuchenyy henetycheskoi heterohennosty Sorynebacterium diphtheria. Profilaktychna medytsyna, 2 (14), 39–44.

Tsyhanenko, A. Ya., Tymchenko, O. M., Pokhyl, S. I. (2002). Zavdannia i shliakhy podalshoho udoskonalennia henotypuvannia zbudnykiv infektsiinykh zakhvoriuvan za dopomohoiu analizu polimorfizmu dovzhyny frahmentiv endonukleaznoi restryktsii khromosomnoi DNK. Eksperymentalna i klinichna medytsyna, 3, 79–83.

Tymchenko, O. M. (2008). Molekuliarno-henetychni metody vnutrishnovydovoho epidemiolohichnoho typuvannia zbudnykiv infektsiinykh zakhvoriuvan (ohliad). Annali Mechnykovskoho ynstytuta, 3, 5–7.

Shaginian, I. A. (2000). Identifikaciia i tipirovanie patogennykh bakterii: sovremennye podkhody. Vestnik RAMN, 1, 22–28.

Singh, G. K., Bopanna, B. D., Rindhe, G. (2013). Molecular characterization of Staphylococcus aureus – human pathogen from clinical samples by RAPD markers. Journal of Medical Science And clinical Research, 1 (2), 45–49.

Veh, K. A., Klein, R. C., Ster, C., Keefe, G., Lacasse, P., Scholl, D. et. al. (2015). Genotypic and phenotypic characterization of Staphylococcus aureus causing persistent and nonpersistent subclinical bovine intramammary infections during lactation or the dry period. Journal of Dairy Science, 98 (1), 155–168. doi: http://doi.org/10.3168/jds.2014-8044

Mobasherizadeh, S., Shojaei, H., Havaei, S. A., Mostafavizadeh, K., Davoodabadi, F., Khorvash, F. et. al. (2015). Application of the Random Amplified Polymorphic DNA (RAPD) Fingerprinting to Analyze Genetic Variation in Community Associated-Methicillin Resistant Staphylococcus Aureus (CA-MRSA) Isolates in Iran. Global Journal of Health Science, 8 (8), 185–191. doi: http://doi.org/10.5539/gjhs.v8n8p185


Просмотров аннотации: 49
Загрузок PDF: 31
Опубликован
2020-05-25
Как цитировать
Pokhil, S., & Dzhoraeva, S. (2020). GENETIC (RAPD-PCR) VARIABILITY OF STAPHYLOCOCCUS AUREUS STRAINS EXTRACTED FROM LOCUS MORBI AND INTAKT SKIN OF PATIENTS WITH ALLERGODERMATOSIS. EUREKA: Health Sciences, (3), 41-53. https://doi.org/10.21303/2504-5679.2020.001312
Выпуск
Раздел
Medicine and Dentistry