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细菌抗生素耐药性:最关键的病原体。

Bacterial Antibiotic Resistance: The Most Critical Pathogens.

作者信息

Mancuso Giuseppe, Midiri Angelina, Gerace Elisabetta, Biondo Carmelo

机构信息

Department of Human Pathology, University of Messina, 98125 Messina, Italy.

IRCCS Centro Neurolesi "Bonino-Pulejo", 98100 Messina, Italy.

出版信息

Pathogens. 2021 Oct 12;10(10):1310. doi: 10.3390/pathogens10101310.

Abstract

Antibiotics have made it possible to treat bacterial infections such as meningitis and bacteraemia that, prior to their introduction, were untreatable and consequently fatal. Unfortunately, in recent decades overuse and misuse of antibiotics as well as social and economic factors have accelerated the spread of antibiotic-resistant bacteria, making drug treatment ineffective. Currently, at least 700,000 people worldwide die each year due to antimicrobial resistance (AMR). Without new and better treatments, the World Health Organization (WHO) predicts that this number could rise to 10 million by 2050, highlighting a health concern not of secondary importance. In February 2017, in light of increasing antibiotic resistance, the WHO published a list of pathogens that includes the pathogens designated by the acronym ESKAPE ( and ) to which were given the highest "priority status" since they represent the great threat to humans. Understanding the resistance mechanisms of these bacteria is a key step in the development of new antimicrobial drugs to tackle drug-resistant bacteria. In this review, both the mode of action and the mechanisms of resistance of commonly used antimicrobials will be examined. It also discusses the current state of AMR in the most critical resistant bacteria as determined by the WHO's global priority pathogens list.

摘要

抗生素使治疗诸如脑膜炎和菌血症等细菌感染成为可能,在抗生素问世之前,这些感染是无法治疗的,因而会导致死亡。不幸的是,近几十年来,抗生素的过度使用和滥用以及社会和经济因素加速了抗生素耐药菌的传播,使药物治疗失效。目前,全球每年至少有70万人死于抗菌药物耐药性(AMR)。世界卫生组织(WHO)预测,如果没有新的更好的治疗方法,到2050年,这一数字可能会升至1000万,凸显了这一不容忽视的健康问题。2017年2月,鉴于抗生素耐药性不断增加,世卫组织公布了一份病原体名单,其中包括以首字母缩写ESKAPE命名的病原体,这些病原体被赋予了最高的“优先地位”,因为它们对人类构成了巨大威胁。了解这些细菌的耐药机制是开发新型抗菌药物以应对耐药菌的关键一步。在这篇综述中,将研究常用抗菌药物的作用方式和耐药机制。它还讨论了根据世卫组织全球重点病原体名单确定的最关键耐药菌中的抗菌药物耐药性现状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34f6/8541462/269bfdcfe0f8/pathogens-10-01310-g001.jpg

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