Institute of Chemistry and Biotechnology, Center for Organic and Medicinal Chemistry, Zurich University of Applied Sciences (ZHAW), Einsiedlerstrasse 31, 8820, Wädenswil, Switzerland.
Angew Chem Int Ed Engl. 2016 Jun 1;55(23):6600-26. doi: 10.1002/anie.201506818. Epub 2016 Mar 22.
Finding strategies against the development of antibiotic resistance is a major global challenge for the life sciences community and for public health. The past decades have seen a dramatic worldwide increase in human-pathogenic bacteria that are resistant to one or multiple antibiotics. More and more infections caused by resistant microorganisms fail to respond to conventional treatment, and in some cases, even last-resort antibiotics have lost their power. In addition, industry pipelines for the development of novel antibiotics have run dry over the past decades. A recent world health day by the World Health Organization titled "Combat drug resistance: no action today means no cure tomorrow" triggered an increase in research activity, and several promising strategies have been developed to restore treatment options against infections by resistant bacterial pathogens.
寻找对抗抗生素耐药性发展的策略是生命科学界和公共卫生领域面临的重大全球性挑战。过去几十年,人类致病菌对一种或多种抗生素的耐药性急剧增加。越来越多的耐药微生物感染对常规治疗无效,在某些情况下,甚至最后一线抗生素也失去了作用。此外,过去几十年,新型抗生素的研发管道已经枯竭。世界卫生组织最近将世界卫生日的主题定为“抗击耐药性:今天不采取行动,明天就无药可救”,这引发了研究活动的增加,并且已经开发出了几种有前途的策略来恢复对抗耐药性细菌病原体感染的治疗选择。