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Modeling the effects of strain diversity and mechanisms of strain competition on the potential performance of new tuberculosis vaccines

机译:模拟菌株多样性和菌株竞争机制对新型结核病疫苗潜在性能的影响

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摘要

While bacillus Calmette–Guérin vaccination plays an important role in reducing the morbidity of tuberculosis (TB) infection during childhood, new tuberculosis vaccines are necessary to disrupt the transmission of disease and improve global control of this pathogen. Growing evidence of the presence of meaningful Mycobacterium tuberculosis strain diversity, coupled with the possibility that new vaccines may differentially protect against infection or disease with circulating M. tuberculosis strains, suggest that these vaccines may have complicated effects on disease dynamics. We use a mathematical model to explore the potential effects of strain diversity on the performance of vaccines and find that vaccines offer great promise for improving tuberculosis control, but the expected benefits of mass vaccination will be eroded if strain replacement with M. tuberculosis variants that are not effectively targeted by vaccines occurs. Determining the likelihood of strain replacement will require additional knowledge of the strain specificities of current vaccine candidates, and an improved understanding of the mechanisms of strain interaction, which are responsible for maintaining the diversity of M. tuberculosis within communities.
机译:虽然Calmette-Guérin芽孢杆菌疫苗在降低儿童期结核病(TB)发病率方面起着重要作用,但新的结核病疫苗对于破坏疾病的传播和改善对这种病原体的整体控制至关重要。越来越多的证据表明存在有意义的结核分枝杆菌菌株多样性,以及新疫苗可能具有差异性,以预防结核分枝杆菌循环感染或感染的可能性,这表明这些疫苗可能对疾病动力学产生复杂影响。我们使用数学模型探索了菌株多样性对疫苗性能的潜在影响,并发现疫苗为改善结核病控制提供了广阔前景,但是如果用M.疫苗无法有效靶向。确定菌株替代的可能性将需要对当前候选疫苗的菌株特异性有更多的了解,并需要对菌株相互作用的机制有更深入的了解,这有助于维持社区内结核分枝杆菌的多样性。

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