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Emerging multidrug resistant Mycobacterium tuberculosis strains of the Beijing genotype circulating in Russia express a pattern of biological properties associated with enhanced virulence
Authors:Elena Lasunskaia  Simone C.M. Ribeiro  Olga Manicheva  Lia Lima Gomes  Philip N. Suffys  Igor Mokrousov  Lucilaine Ferrazoli  Marcelle R.M. Andrade  Afranio Kritski  Tatiana Otten  Thereza L. Kipnis  Wilmar D. da Silva  Boris Vishnevsky  Martha M. Oliveira  Harrison M. Gomes  Ida F. Baptista  Olga Narvskaya
Affiliation:1. Laboratory of Biology of Recognition, Universidade Estadual do Norte Fluminense, Av. Alberto Lamego, 2000, Campos, Rio de Janeiro 28013-600, Brazil;2. Laboratory of Molecular Biology Applied to Mycobacteria, Instituto Oswaldo Cruz, Avenida Brasil 4365, Rio de Janeiro 21040-900, Brazil;3. Tuberculosis Academic Program, Universidade Federal do Rio de Janeiro, Av. Brigadeiro Trompowsky, Rio de Janeiro 21941-590, Brazil;4. Setor de Micobactérias, Instituto Adolfo Lutz, Av. Dr. Arnaldo, 351, Sao Paulo 01246-902, Brazil;5. Laboratory of Molecular Microbiology, St. Petersburg Pasteur Institute, Mira street, 14, St. Petersburg 197101, Russia Federation;6. Laboratory of Microbiology, Research Institute of Phthisiopulmonology, Lygovsky pr. 2-4, St. Petersburg, Russia Federation
Abstract:The epidemiologically important Mycobacterium tuberculosis Beijing genotype strains, highly endemic in East Asia, have become an emerging infection in certain geographic areas, including Russia, because of its increasing prevalence and association with multidrug resistance (MDR). The aim was to verify whether MDR Beijing strains circulating in the emerging regions present some biological particularities that could contribute to their success in causing disease in comparison with the sporadic strains from locations with low prevalence of the Beijing genotype. We evaluated virulence-associated characteristics of the MDR Beijing strains isolated in Russia and compared them with those of the drug-resistant and susceptible Beijing strains from Brazil and reference H37Rv strain. We found that Russian MDR strains demonstrated an increased bacterial fitness and growth in THP-1 macrophage-like cells, as well as a higher capacity to induce non-protective cytokine synthesis and necrotic macrophage death. By contrast, the biological properties of the strains isolated in Brazil largely resembled those of the H37Rv strain, with the exception of the drug-resistant isolates that presented significantly reduced fitness. The data demonstrate that the emerging MDR strains of the Beijing genotype circulating in Russia do express a pattern of properties associated with the enhanced virulence favouring its clonal dissemination in this region.
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