Lukačišinová Marta, Bollenbach Tobias
IST Austria, Am Campus 1, A-3400 Klosterneuburg, Austria.
IST Austria, Am Campus 1, A-3400 Klosterneuburg, Austria; University of Cologne, Zülpicher Str. 47a, D-50674 Cologne, Germany.
Curr Opin Biotechnol. 2017 Aug;46:90-97. doi: 10.1016/j.copbio.2017.02.013. Epub 2017 Mar 11.
The rising prevalence of antibiotic resistant bacteria is an increasingly serious public health challenge. To address this problem, recent work ranging from clinical studies to theoretical modeling has provided valuable insights into the mechanisms of resistance, its emergence and spread, and ways to counteract it. A deeper understanding of the underlying dynamics of resistance evolution will require a combination of experimental and theoretical expertise from different disciplines and new technology for studying evolution in the laboratory. Here, we review recent advances in the quantitative understanding of the mechanisms and evolution of antibiotic resistance. We focus on key theoretical concepts and new technology that enables well-controlled experiments. We further highlight key challenges that can be met in the near future to ultimately develop effective strategies for combating resistance.
抗生素耐药细菌的日益流行是一个日益严峻的公共卫生挑战。为解决这一问题,从临床研究到理论建模的近期工作为耐药机制、其出现与传播以及应对方法提供了宝贵见解。要更深入地理解耐药性演变的潜在动态,需要不同学科的实验和理论专业知识相结合,以及用于在实验室研究进化的新技术。在此,我们综述了对抗生素耐药机制和进化进行定量理解的近期进展。我们关注关键的理论概念和能够实现良好控制实验的新技术。我们还强调了在不久的将来可以应对的关键挑战,以最终制定有效的抗耐药策略。