Antibiotics and Bacterial Resistance—A Short Story of an Endless Arms Race

抗生素 抗生素耐药性 流出 抗菌剂 抗药性 多重耐药 军备竞赛 生物 微生物学 医学 遗传学 经济史 历史
作者
Aleksandra Baran,Aleksandra Kwiatkowska,Leszek Potocki
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:24 (6): 5777-5777 被引量:75
标识
DOI:10.3390/ijms24065777
摘要

Despite the undisputed development of medicine, antibiotics still serve as first-choice drugs for patients with infectious disorders. The widespread use of antibiotics results from a wide spectrum of their actions encompassing mechanisms responsible for: the inhibition of bacterial cell wall biosynthesis, the disruption of cell membrane integrity, the suppression of nucleic acids and/or proteins synthesis, as well as disturbances of metabolic processes. However, the widespread availability of antibiotics, accompanied by their overprescription, acts as a double-edged sword, since the overuse and/or misuse of antibiotics leads to a growing number of multidrug-resistant microbes. This, in turn, has recently emerged as a global public health challenge facing both clinicians and their patients. In addition to intrinsic resistance, bacteria can acquire resistance to particular antimicrobial agents through the transfer of genetic material conferring resistance. Amongst the most common bacterial resistance strategies are: drug target site changes, increased cell wall permeability to antibiotics, antibiotic inactivation, and efflux pumps. A better understanding of the interplay between the mechanisms of antibiotic actions and bacterial defense strategies against particular antimicrobial agents is crucial for developing new drugs or drug combinations. Herein, we provide a brief overview of the current nanomedicine-based strategies that aim to improve the efficacy of antibiotics.
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