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How Can Vaccines Contribute to Solving the Antimicrobial Resistance Problem?

机译:疫苗如何有助于解决抗菌素耐药性问题?

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ABSTRACT There is a growing appreciation for the role of vaccines in confronting the problem of antimicrobial resistance (AMR). Vaccines can reduce the prevalence of resistance by reducing the need for antimicrobial use and can reduce its impact by reducing the total number of cases. By reducing the number of pathogens that may be responsible for a particular clinical syndrome, vaccines can permit the use of narrower-spectrum antibiotics for empirical therapy. These effects may be amplified by herd immunity, extending protection to unvaccinated persons in the population. Because much selection for resistance is due to selection on bystander members of the normal flora, vaccination can reduce pressure for resistance even in pathogens not included in the vaccine. Some vaccines have had disproportionate effects on drug-resistant lineages within the target species, a benefit that could be more deliberately exploited in vaccine design. We describe the effects of current vaccines in controlling AMR, survey some vaccines in development with the potential to do so further, and discuss strategies to amplify these benefits. We conclude with a discussion of research and policy priorities to more fully enlist vaccines in the battle against AMR.
机译:摘要疫苗在应对抗菌素耐药性(AMR)问题中的作用日益受到人们的赞赏。疫苗可以通过减少对抗菌药物的使用来降低耐药性的流行,并可以通过减少病例总数来减少其影响。通过减少可能导致特定临床综合症的病原体数量,疫苗可以允许使用窄谱抗生素进行经验治疗。牛群免疫可增强这些作用,将保护范围扩大到人群中未接种疫苗的人。由于对抗药性的很多选择是由于对正常菌群的旁观者的选择,因此即使在疫苗中未包含的病原体中,接种疫苗也可以降低抗药性的压力。一些疫苗对靶标物种内的耐药谱系产生了不成比例的影响,这种益处可以在疫苗设计中更刻意地加以利用。我们描述了当前疫苗在控制AMR中的作用,调查了有潜力进一步开发中的某些疫苗,并讨论了扩大这些益处的策略。最后,我们讨论了研究和政策重点,以更充分地招募抗AMR的疫苗。

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