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Role of Phenothiazines and Structurally Similar Compounds of Plant Origin in the Fight against Infections by Drug Resistant Bacteria

机译:吩噻嗪和植物结构相似的化合物在抗药性细菌感染中的作用

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摘要

Phenothiazines have their primary effects on the plasma membranes of prokaryotes and eukaryotes. Among the components of the prokaryotic plasma membrane affected are efflux pumps, their energy sources and energy providing enzymes, such as ATPase, and genes that regulate and code for the permeability aspect of a bacterium. The response of multidrug and extensively drug resistant tuberculosis to phenothiazines shows an alternative therapy for the treatment of these dreaded diseases, which are claiming more and more lives every year throughout the world. Many phenothiazines have shown synergistic activity with several antibiotics thereby lowering the doses of antibiotics administered to patients suffering from specific bacterial infections. Trimeprazine is synergistic with trimethoprim. Flupenthixol (Fp) has been found to be synergistic with penicillin and chlorpromazine (CPZ); in addition, some antibiotics are also synergistic. Along with the antibacterial action described in this review, many phenothiazines possess plasmid curing activities, which render the bacterial carrier of the plasmid sensitive to antibiotics. Thus, simultaneous applications of a phenothiazine like TZ would not only act as an additional antibacterial agent but also would help to eliminate drug resistant plasmid from the infectious bacterial cells.
机译:吩噻嗪对原核生物和真核生物的质膜有主要作用。受影响的原核质膜的成分包括外排泵,其能量源和提供能量的酶(例如ATPase)以及调节和编码细菌渗透性方面的基因。多种药物和广泛耐药的结核病对吩噻嗪的反应显示了治疗这些可怕疾病的替代疗法,这些疾病每年在世界范围内夺走越来越多的生命。许多吩噻嗪已显示出与几种抗生素的协同活性,从而降低了向患有特定细菌感染的患者施用的抗生素剂量。曲美拉嗪与甲氧苄啶具有协同作用。氟哌噻吨(Fp)与青霉素和氯丙嗪(CPZ)具有协同作用。此外,某些抗生素也具有协同作用。除本文所述的抗菌作用外,许多吩噻嗪还具有质粒固化活性,这使质粒的细菌载体对抗生素敏感。因此,吩噻嗪类TZ的同时施用不仅将充当另外的抗菌剂,而且还将有助于从感染性细菌细胞中消除抗药性质粒。

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