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How CRISPR-Cas System Could Be Used to Combat Antimicrobial Resistance

机译:CRISPR-CAS系统如何用于打击抗微生物抗性

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摘要

Rapid emergence of antibiotic-resistant bacteria has made it harder for us to combat infectious diseases and to develop new antibiotics. The clustered regularly interspaced short palindromic repeats –?CRISPR-associated (CRISPR-Cas) system, as a bacterial adaptive immune system, is recognized as one of the new strategies for controlling antibiotic-resistant strains. The programmable Cas nuclease of this system used against bacterial genomic sequences could be lethal or could help reduce resistance of bacteria to antibiotics. Therefore, this study aims to review using the CRISPR-Cas system to promote sensitizing bacteria to antibiotics. We envision that CRISPR-Cas approaches may open novel ways for the development of smart antibiotics, which could eliminate multidrug-resistant (MDR) pathogens and differentiate between beneficial and pathogenic microorganisms. These systems can be exploited to quantitatively and selectively eliminate individual bacterial strains based on a sequence-specific manner, creating opportunities in the treatment of MDR infections, the study of microbial consortia, and the control of industrial fermentation.
机译:抗生素抗性细菌的快速出现使我们对抗传染病并开发新的抗生素难以使用。聚类定期间隙的短语重复重复 - ?CRISPR相关(CRISPR-CAS)系统作为细菌适应性免疫系统被认为是控制抗生素抗性菌株的新策略之一。针对细菌基因组序列的该系统的可编程CAS核酸酶可能是致命的,或者有助于降低抗生素的细菌的抗性。因此,本研究旨在审查使用CRISPR-CAS系统来促进抗生素的敏感细菌。我们设想CRISPR-CAS方法可以开辟智能抗生素的发展的新方法,这可以消除多药(MDR)病原体并区分有益和致病微生物。这些系统可以被利用,以定量和选择性地基于序列特异性方式消除个体细菌菌株,从而产生治疗MDR感染的机会,微生物联原的研究以及工业发酵的控制。

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