Efflux-mediated Multidrug Resistance in Critical Gram-negative Bacteria and Natural Efflux Pump Inhibitors.

Praveena Nanjan, Vanitha Bose
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Abstract

Multidrug Resistance mechanisms in microorganisms confer the slackness of the existing drugs, leading to added difficulty in treating infections. As a consequence, efficient novel drugs and innovative therapies to treat MDR infections are necessarily required. One of the primary contributors to the emergence of multidrug resistance in gram-negative bacteria has been identified as the efflux pumps. These transporter efflux pumps reduce the intracellular concentration of antibiotics and aid bacterial survival in suboptimal low antibiotic concentration environments that may cause treatment failure. The reversal of this resistance via inhibition of the efflux mechanism is a promising method for increasing the effectiveness of antibiotics against multidrug-resistant pathogens. Such EPI, in combination with antibiotics, can make it easier to reintroduce traditional antibiotics into clinical practice. This review mostly examines efflux-mediated multidrug resistance in critical gram-negative bacterial pathogens and EPI of plant origin that have been reported over previous decades.

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重要革兰氏阴性菌中外排介导的多药耐药性与天然外排泵抑制剂。
微生物的多重耐药机制使现有药物难以发挥作用,从而增加了治疗感染的难度。因此,治疗耐多药感染的高效新药和创新疗法势在必行。革兰氏阴性细菌出现多重耐药性的主要原因之一已被确认为外排泵。这些转运体外排泵可降低抗生素的细胞内浓度,帮助细菌在低抗生素浓度的次优环境中生存,从而导致治疗失败。通过抑制外排机制来逆转这种耐药性,是提高抗生素对耐多药病原体疗效的一种可行方法。这种 EPI 与抗生素结合使用,可以更容易地将传统抗生素重新引入临床实践。本综述主要研究了过去几十年中报道的重要革兰氏阴性细菌病原体的外排介导的多药耐药性和植物源 EPI。
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来源期刊
Current Drug Research Reviews
Current Drug Research Reviews Medicine-Psychiatry and Mental Health
CiteScore
3.70
自引率
0.00%
发文量
38
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