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首页> 外文期刊>BMC Infectious Diseases >A complex scenario of tuberculosis transmission is revealed through genetic and epidemiological surveys in Porto
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A complex scenario of tuberculosis transmission is revealed through genetic and epidemiological surveys in Porto

机译:波尔图的遗传和流行病学调查揭示了结核病传播的复杂情况

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Tuberculosis (TB) incidence is decreasing worldwide and eradication is becoming plausible. In low-incidence countries, intervention on migrant populations is considered one of the most important strategies for elimination. However, such measures are inappropriate in European areas where TB is largely endemic, such as Porto in Portugal. We aim to understand transmission chains in Porto through a genetic characterization of Mycobacterium tuberculosis strains and through a detailed epidemiological evaluation of cases. We genotyped the M. tuberculosis strains using the MIRU-VNTR system. We performed an evolutionary reconstruction of the genotypes with median networks, used in this context for the first time. TB cases from a period of two years were evaluated combining genetic, epidemiological and georeferencing information. The data reveal a unique complex scenario in Porto where the autochthonous population acts as a genetic reservoir of M. tuberculosis diversity with discreet episodes of transmission, mostly undetected using classical epidemiology alone. Although control policies have been successful in decreasing incidence in Porto, the discerned complexity suggests that, for elimination to be a realistic goal, strategies need to be adjusted and coupled with a continuous genetic characterization of strains and detailed epidemiological evaluation, in order to successfully identify and interrupt transmission chains.
机译:在世界范围内,结核病(TB)的发病率正在下降,而且根除的可能性越来越大。在低发病率国家,对移民人口的干预被认为是最重要的消除战略之一。但是,这种措施在结核病流行的欧洲地区(如葡萄牙的波尔图)是不合适的。我们旨在通过结核分枝杆菌菌株的遗传特征和病例的详细流行病学评估来了解波尔图的传播链。我们使用MIRU-VNTR系统对结核分枝杆菌菌株进行了基因分型。我们首次在这种情况下使用中位网络对基因型进行了进化重建。结合遗传,流行病学和地理参考信息,对两年来的结核病病例进行了评估。数据揭示了波尔图独特的复杂情况,当地人口充当结核分枝杆菌多样性的遗传库,传播途径不明显,多数仅通过经典流行病学就无法发现。尽管控制政策已成功地降低了波尔图的发病率,但已认识到的复杂性表明,要消除成为现实的目标,就必须调整策略,并结合菌株的连续遗传特征和详细的流行病学评估,以成功识别并中断传输链。

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