Metagenomics as a Transformative Tool for Antibiotic Resistance Surveillance: Highlighting the Impact of Mobile Genetic Elements with a Focus on the Complex Role of Phages.

IF 4.6 2区 医学 Q1 INFECTIOUS DISEASES Antibiotics-Basel Pub Date : 2025-03-12 DOI:10.3390/antibiotics14030296
Nikoline S Olsen, Leise Riber
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Abstract

Extensive use of antibiotics in human healthcare as well as in agricultural and environmental settings has led to the emergence and spread of antibiotic-resistant bacteria, rendering many infections increasingly difficult to treat. Coupled with the limited development of new antibiotics, the rise of antimicrobial resistance (AMR) has caused a major health crisis worldwide, which calls for immediate action. Strengthening AMR surveillance systems is, therefore, crucial to global and national efforts in combating this escalating threat. This review explores the potential of metagenomics, a sequenced-based approach to analyze entire microbial communities without the need for cultivation, as a transformative and rapid tool for improving AMR surveillance strategies as compared to traditional cultivation-based methods. We emphasize the importance of monitoring mobile genetic elements (MGEs), such as integrons, transposons, plasmids, and bacteriophages (phages), in relation to their critical role in facilitating the dissemination of genetic resistance determinants via horizontal gene transfer (HGT) across diverse environments and clinical settings. In this context, the strengths and limitations of current bioinformatic tools designed to detect AMR-associated MGEs in metagenomic datasets, including the emerging potential of predictive machine learning models, are evaluated. Moreover, the controversial role of phages in AMR transmission is discussed alongside the potential of phage therapy as a promising alternative to conventional antibiotic treatment.

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元基因组学是抗生素耐药性监测的变革性工具:以噬菌体的复杂作用为重点,突出移动遗传因子的影响。
在人类卫生保健以及农业和环境环境中广泛使用抗生素导致耐抗生素细菌的出现和传播,使许多感染越来越难以治疗。再加上新抗生素的开发有限,抗菌素耐药性(AMR)的上升在世界范围内造成了重大健康危机,需要立即采取行动。因此,加强抗微生物药物耐药性监测系统对于全球和国家努力应对这一不断升级的威胁至关重要。这篇综述探讨了宏基因组学的潜力,与传统的基于培养的方法相比,宏基因组学是一种基于序列的方法,可以分析整个微生物群落,而不需要培养,作为改进抗菌素耐药性监测策略的变革性和快速工具。我们强调监测移动遗传元件(MGEs)的重要性,如整合子、转座子、质粒和噬菌体(噬菌体),它们通过水平基因转移(HGT)在不同环境和临床环境中促进遗传抗性决定因素传播的关键作用。在此背景下,评估了目前用于检测宏基因组数据集中与抗菌素耐药性相关的MGEs的生物信息学工具的优势和局限性,包括预测机器学习模型的新兴潜力。此外,本文还讨论了噬菌体在抗菌素耐药性传播中有争议的作用,以及噬菌体治疗作为传统抗生素治疗的一种有希望的替代方法的潜力。
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来源期刊
Antibiotics-Basel
Antibiotics-Basel Pharmacology, Toxicology and Pharmaceutics-General Pharmacology, Toxicology and Pharmaceutics
CiteScore
7.30
自引率
14.60%
发文量
1547
审稿时长
11 weeks
期刊介绍: Antibiotics (ISSN 2079-6382) is an open access, peer reviewed journal on all aspects of antibiotics. Antibiotics is a multi-disciplinary journal encompassing the general fields of biochemistry, chemistry, genetics, microbiology and pharmacology. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of papers.
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