Epidemiological characteristics of generalized meningococcal infection caused by Neisseria meningitidis serogroup W in the world and in the Russian Federation


Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Рұқсат ақылы немесе тек жазылушылар үшін

Аннотация

Results. There was an annual rise in the number of MenW cases, a prevalence of older age patients over young pediatric ones, and a high mortality rate. Conclusion. With the continued increase in the number of MenW cases and in the availability of a safe and effective vaccine, a decision must be made to increase vaccination against meningococcal infection to prevent further increases in its incidence rates. Results. There was an annual rise in the number of MenW cases, a prevalence of older age patients over young pediatric ones, and a high mortality rate. Conclusion. With the continued increase in the number of MenW cases and in the availability of a safe and effective vaccine, a decision must be made to increase vaccination against meningococcal infection to prevent further increases in its incidence rates.

Толық мәтін

Рұқсат жабық

Авторлар туралы

M. Koroleva

Central Research Institute of Epidemiology, Russian Federal Service for Supervision of Consumer Rights Protection and Human Well-Being

Email: korolevamaria389@gmail.com
Cand. Med. Sci., Senior Researcher, Laboratory for Epidemiology of Meningococcal Infection and Purulent Bacterial Meningitis 3a, Novogireevskaya St., Moscow 111123, Russia

K. Mironov

Central Research Institute of Epidemiology, Russian Federal Service for Supervision of Consumer Rights Protection and Human Well-Being

Email: mironov@pcr.ru
Moscow, Russia

I. Koroleva

Central Research Institute of Epidemiology, Russian Federal Service for Supervision of Consumer Rights Protection and Human Well-Being

Email: irina-korol@yandex.ru
MD, Head, Laboratory for Epidemiology of Meningococcal Infection and Purulent Bacterial Meningitis Moscow, Russia

Әдебиет тізімі

  1. Halperin S.A., Bettinger J.A., Greenwood B. et al. The changing and dynamic epidemiology of meningococcal disease. Vaccine 2012; 30(2): B26-36. DOI: 10.1016/j. vaccine.2011.12.032.
  2. Multi-Disease Surveillance Centre Ouagadougou RMS, 2002-2015. Weekly feedback bulletin on cerebrospinal meningitis. Meningiris Weekly Bulletin World Health Organisation. URL: http://www.who.int/csr/disease/ meningococcal/pidemiological/en/index.html; http:// www.meningvax.org/ epidemic-updates.php.
  3. Stephens D.S. Biology and pathogenesis of the evolutionarily successful, obligate human bacterium Neisseria meningitidis. Vaccine 2009; 27(2): B71-7.
  4. Tanabe M., Nimigean C.M., Iverson T.M. Structural basis for solute transport, nucleotide regulation, and immunological recognition of Neisseria meningitidis. Proc. Natl. Acad. Sci. USA 2010; 107(15): 6811-6.
  5. Thompson E.A., Fevers I.M., Maiden M.C. Antigenic diversity of meningococcal enterobacterin receptor FetA, a vaccine component. Microbiology 2003; 149 (Pt 7): 1849-58.
  6. Sieb K.L., Scarselli M., Comanducci M. et al. Neisseria meningitidis factor H-binding protein fHbp: a key virulence factor and vaccine antigen. Expert Rev. Vaccines 2015; 14(6): 841-59.
  7. Capecchi B., Adu-Bobie J., Di Marcello F. et al. Neisseria meningitidis NadA is a new invasin which promotes bacterial adhesion to and penetration into human epithelial cells. Mol. Microbiol. 2005; 55(3): 687-98.
  8. Serruto D., Spadafina T., Ciucchi L. et al. Neisseria meningitidis GNA 2132, a heparin-binding protein that induces protective immunity in humans. Proc. Natl. Acad. Sci. USA 2010; 107(8): 3770-5.
  9. Maiden M.C., Bygraves J.A., Feil E. et al. Multilocus sequence typing: aportable approach to the identification of clones within populations of patogenic microorganisms. Proc. Natl. Acad. Sci. USA 1998; 95(6): 3140-5.
  10. Kong Y., Ma J.H., Warren K. et al. Homologous recombination drives both sequence diversity and gene content variation in Neisseria meningitidis. Genome Biol. 2013; 5(9): 1611-27.
  11. Koumare B., Ouedraogo-Traore R., Sanou I. et al. The first large epidemic of meningococcal disease caused by serogroup W135, Burkina Faso. Vaccine 2002; 25 (Suppl. 1): A37-A41.
  12. Harrison L.H., Jolley K.A., Shutt K.A. et al. Antigenic shift and increased incidence of meningococcal disease. J. Infect. Dis. 2006; 193(9): 1266-74.
  13. Evans J.R., Artenstein M.S., Hunter D.H. Prevalence of meningococcal serogroups and description of three new groups. Am. J. Epidemiol. 1968; 87: 643-6.
  14. Mustapha M.M., Marsh W.J., Krauland G.M. et al. Genomic epidemiology of hypervirulent serogroup W, ST-11 Neisseria meningitidis. EBioMedicine 2015; 2: 1447-55.
  15. Taha M.K., Achtman M., Alonso J.M. et al. Serogroup W135 meningococcal disease in Hajj pilgrims. Lancet 2000; 356(9248): 2159.
  16. Mustapha M.M., Marsh W.J., Harrison L.H. Global epidemiology of capsular group W meningococcal disease (1970-2015): Multifocal emergence and persistence of hypervirulent sequence type (ST)-11 clonal complex. Vaccine 2016; 34: 1447-55.
  17. Lucidarme J., Scott K.J., Ure R. at al. An international invasise meningococcal disease outbreak due to a novel and rapidly July to August. Euro Surveill. 2016; 21(45): 30395. doi: 10.2807/1560-7917.ES.2016.21.45.30395
  18. Ladhani S.N., Beebeejaun K., Lucidarme L. et al. Increase in endemic Neisseria meningitidis capsular group W sequence type 11 complex associated with severe invasive disease in England and Wales. Clin. Infect. Dis. 2015; 60(4): 578-85.
  19. Gaschignard J., Levy C., Deghmane A.E. et al. Invasive serougroup W meningococcal disease in children: a national survey from 2001 to 2008 in France. Pediatr. Infect. Dis. J. 2013; 32: 798-800.
  20. Vienne P., Ducos-Galand M., Guiyoule A. et al. The role of particular strains of Neisseria meningitidis in meningococcal arthritis, pericarditis, and pneumonia. Clin. Infect. Dis. 2003; 37: 1639-42.
  21. Knol M., Hahne S.M., Lucidarme J. et al. Temporal associations between national outbreaks of meningococcal serougroup W and C disease in the Netherlands and England: an observational cohort study. Lancet Public Health. Published Online. August 24, 2017. DOI: https://doi.org/10.1016/S2468-2667(17)30157-3
  22. Heinsbroek E., Ladhani S., Gray S. et al. Added value of PCR-testing for confirmation of invasive meningococcal disease in England. J. Infect. 2013; 67: 385-90.
  23. Russcher A., Fanoy E., Van Olden G.D.J. et al. Necrotising fasciitis as atypical presentation of infection with emerging Neisseria meningitidis serogroup W clonal complex 11, the Netherlands. Euro Surveill. 2017; 22: 30549.
  24. Moreno G., Lopez D., Vergara N., et al. Clinical characterization of cases with meningococcal disease by W135 group in Chile. Rev. Chilena Infectol. 2013; 30: 350-60.
  25. Efron A.M., Sorhouet C., Salcedo C. et al. W135 invasive meningococcal strains spreading in South America: significant increase in incidence in incidence rate in Argentina. J. Clin. Microbiol. 2009; 47: 1979-80.
  26. Valenzuela M.T., Moreno G., Vaquero A. et al. Emergence of W135 meningococcal serogroup in Chile during 2012. Rev. Med. Chil. 2013; 141: 959-67.
  27. Public Health England. Guidance for public health management of meningococcal disease in the UK. URL: https://www.gov.uk/government/ uploads/system/ uploads/attachment_data/file/322008/Guidance_for_ management_of_ meningococcal_disease_pdf
  28. Joint Committee on Vaccination and Immunisation. Minutes of the meeting on 4 February 2015. VII: meningococcal epidemiology. Feb 4, 2015. URL: https:// app.box.com/s/iddfb4ppwkmtjusir2tc/file/27417264008
  29. Campbell H., Edelstein M., Andrews N. et al. Emergency meningococcal ACWY vaccination program for teenagers to control group W meningococcal disease, England, 2015-2016. Emerg. Infect. Dis. 2017; 23: 1184-7.
  30. Public Health England. Preliminary vaccine coverage for the school based meningococcal ACWY (MenACWY) adolescent vaccination programme in England, 1 September 2015 to 31 August 2016. Health Prot. Rep. 2016; 10: 1-3.
  31. Королева И.С., Королева М.А., Мельникова А.А. Эпидемиология гнойных бактериальных менингитов в период вакцинопрофилактики пневмококковой и гемофильной инфекций в Российской Федерации. Эпидемиол. инфекц. болезни. Актуал. вопр. 2017; (6): 63-8.
  32. Королева И.С., Королева М.А., Белошицкий Г.В. Современная эпидемическая ситуация по менингококковой инфекции в Российской Федерации и возможности профилактики. Медицинский алфавит. Эпидемиология и гигиена 2016; (1): 15-7.
  33. Матосова С.В., Миронов К.О., Платонов А.Е., Шипулина О.Ю., Нагибина М.В., Венгеров Ю.Я., Ченцов В.Б., Смирнова Т.Ю., Солдатова И.А., Шипулин Г.А. Молекулярно-биологический мониторинг Neisseria meningitidis на территории Москвы в период с 2011 по 2015 г. Эпидемиол. инфекц. болезни. Актуал. вопр. 2016; (2): 4-9.
  34. Миронов К.О., Животова В.А., Матосова С.В., Кулешов К.В., Шипулина О.Ю., Гоптарь И.А., Валдохина А.В., Пимкина Е.В., Королева М.А., Королева И.С., Платонов А.Е., Шиплин Г.А. Характеристика Neisseria meningitidis серогруппы W, циркулирующие на территории Москвы, с помощью массового параллельного секвенирования. Эпидемиология и вакцинопрофилактика 2017; 4(95): 33-8.

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