Characterization of KPC-type drug resistance in bacteria

Q3 Medicine Postepy biochemii Pub Date : 2024-09-17 Print Date: 2024-09-30 DOI:10.18388/pb.2021_555
Michalina Gniewosz, Sylwia Andrzejczak-Grządko
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引用次数: 0

Abstract

One of the main problems of modern medicine is the phenomenon of drug resistance. Inappropriate use of antibiotics is considered to be the most important reason for the emergence of new resistance mechanisms in microorganisms. Carbapenems, which belong to the β-lactams, are considered the most effective group of antimicrobial agents. Unfortunately, as a result of prolonged exposure to the aforementioned drugs, bacteria have developed several mechanisms for survival. The most important of these is the production of hydrolytic enzymes (carbapenemases), which cleave the β-lactam ring and inactivate the antibiotics. The mentioned enzymes are encoded by blaKPC genes, which are located in so-called mobile genetic elements (i.e. plasmids and transposons). Such localization is associated with their ease of transfer between different bacterial species in the process of horizontal gene transfer.

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细菌的 KPC 型耐药性特征
现代医学的主要问题之一是抗药性现象。抗生素的不当使用被认为是微生物产生新的抗药性机制的最重要原因。碳青霉烯类属于β-内酰胺类,被认为是最有效的抗菌剂。不幸的是,由于长期接触上述药物,细菌已发展出多种生存机制。其中最重要的是产生水解酶(碳青霉烯酶),它能裂解 β-内酰胺环,使抗生素失活。上述酶由 blaKPC 基因编码,这些基因位于所谓的移动遗传因子(即质粒和转座子)中。这种定位与它们在水平基因转移过程中易于在不同细菌物种之间转移有关。
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来源期刊
Postepy biochemii
Postepy biochemii Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
36
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