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Antimicrobial Resistance and the Alternative Resources with Special Emphasis on Plant-Based Antimicrobials—A Review

机译:抗菌素耐药性和以植物为基础的抗菌素特别强调的替代资源-综述

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摘要

Indiscriminate and irrational use of antibiotics has created an unprecedented challenge for human civilization due to microbe’s development of antimicrobial resistance. It is difficult to treat bacterial infection due to bacteria’s ability to develop resistance against antimicrobial agents. Antimicrobial agents are categorized according to their mechanism of action, i.e., interference with cell wall synthesis, DNA and RNA synthesis, lysis of the bacterial membrane, inhibition of protein synthesis, inhibition of metabolic pathways, etc. Bacteria may become resistant by antibiotic inactivation, target modification, efflux pump and plasmidic efflux. Currently, the clinically available treatment is not effective against the antibiotic resistance developed by some bacterial species. However, plant-based antimicrobials have immense potential to combat bacterial, fungal, protozoal and viral diseases without any known side effects. Such plant metabolites include quinines, alkaloids, lectins, polypeptides, flavones, flavonoids, flavonols, coumarin, terpenoids, essential oils and tannins. The present review focuses on antibiotic resistance, the resistance mechanism in bacteria against antibiotics and the role of plant-active secondary metabolites against microorganisms, which might be useful as an alternative and effective strategy to break the resistance among microbes.
机译:由于微生物对抗菌素耐药性的发展,滥用抗生素和不合理使用抗生素给人类文明带来了前所未有的挑战。由于细菌具有对抗菌剂产生耐药性的能力,因此很难治疗细菌感染。抗菌剂根据其作用机理进行分类,即干扰细胞壁合成,DNA和RNA合成,细菌膜裂解,抑制蛋白质合成,抑制代谢途径等。细菌可能因抗生素失活而变得耐药,目标修饰,外排泵和质粒外排。目前,临床上可用的治疗方法对某些细菌产生的抗生素耐药性无效。然而,基于植物的抗微生物剂具有巨大的潜力来抵抗细菌,真菌,原生动物和病毒性疾病,而没有任何已知的副作用。这样的植物代谢物包括奎宁,生物碱,凝集素,多肽,黄酮,类黄酮,黄酮醇,香豆素,萜类,精油和单宁。本综述着重于抗生素抗性,细菌对抗生素的抗性机制以及植物活性次生代谢产物对微生物的作用,这可能是打破微生物抗性的另一种有效途径。

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