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Tackling Antimicrobial Resistance in the Shadow of COVID-19

机译:在Covid-19的阴影下解决抗微生物抗性

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ABSTRACT The coronavirus disease 2019 (COVID-19) pandemic is a challenge for ongoing efforts to combat antimicrobial-resistant (AMR) bacterial infections. As we learn more about COVID-19 disease and drug stewardship evolves, there is likely to be a lasting impact of increased use of antimicrobial agents and antibiotics, as well as a lack of consistent access to health care across many populations. Sexually transmitted infections have been underreported during the pandemic and are often caused by some of the most drug-resistant pathogens. In their recent article in mBio , Parzych et al. (E. M. Parzych, S. Gulati, B. Zheng, M. A. Bah, et al., mBio 12:e00242-21, 2021, https://doi.org/10.1128/mBio.00242-21 ) focus on protection against Neisseria gonorrhoeae infection via in vivo delivery of an antigonococcal DNA-encoded antibody that has been modified for increased complement activation. Nucleic acid approaches are highly adaptable and could be tremendously beneficial for personalized strategies to combat AMR pathogens.
机译:摘要2019年冠状病毒疾病(Covid-19)大流行是持续努力打击抗菌药物感染的挑战。随着我们了解有关Covid-19疾病和药物管制的更多信息,可能会增加抗菌药物和抗生素的使用的持久影响,以及缺乏对许多人群的缺乏对医疗保健的影响。在大流行期间,性传播的感染已经被宣传,并且通常由一些最耐药病原体引起。在他们最近的MBIO,Parzych等人的文章中。 (EM Parzych,S. Gulati,B. Zheng,Ma Bah,等,MBio 12:E00242-21,2021,HTTPS://Doi.org/10.1128/MBIO.00242-21)专注于对Neisseria Gonorrhoeae的保护通过体内递送递送的抗助催化剂DNA编码抗体,其被修饰以增加补体激活。核酸方法是高度适应性的,可能对打击AMR病原体的个性化策略产生极大的利益。

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