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Antimicrobial resistance mechanisms and potential synthetic treatments

机译:抗菌素耐药机制和潜在的合成疗法

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Since the discovery of antibiotics by Sir Alexander Fleming they have been used throughout medicine and play a vital role in combating microorganisms. However, with their vast use, development of resistance has become more prevalent and their use is currently under threat. Antibiotic resistance poses a global threat to human and animal health, with many bacterial species having developed some form of resistance and in some cases within a year of first exposure to antimicrobial agents. This review aims to examine some of the mechanisms behind resistance. Additionally, re-engineering organisms, re-sensitizing bacteria to antibiotics and gene-editing techniques such as the clustered regularly interspaced short palindromic repeats-Cas9 system are providing novel approaches to combat bacterial resistance. To that extent, we have reviewed some of these novel and innovative technologies.
机译:自亚历山大·弗莱明爵士发现抗生素以来,它们已在整个医学领域得到广泛使用,并在抵抗微生物方面发挥着至关重要的作用。然而,由于其广泛使用,抗药性的发展变得更加普遍,目前其使用受到威胁。抗生素抗药性对人类和动物健康构成全球威胁,许多细菌已形成某种形式的抗药性,在某些情况下,在首次接触抗微生物剂的一年内。这篇综述旨在研究抵抗力背后的一些机制。此外,生物的再造,细菌对抗生素的重新敏感性以及基因编辑技术(例如簇状规则间隔的短回文重复序列Cas9系统)提供了对抗细菌耐药性的新方法。在此程度上,我们已经回顾了其中一些新颖和创新的技术。

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