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Natural products from the termite Nasutitermes corniger lowers aminoglycoside minimum inhibitory concentrations

机译:白蚁Nasutitermes corniger的天然产物降低了氨基糖苷的最低抑菌浓度

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摘要

Bacterial infectious agents present a risk to populations, as they are responsible for high morbidity and mortality. For combating these pathogens, our main line of defense is the use of antibiotics. However, indiscriminate use of these drugs develops resistant strains to these same drugs. The present study has tested the antibacterial and modifying antibiotic activity of natural products from Nasutitermes corniger (Termitidae) (Motschulsky), a termite used in folk medicine in Northeast Brazil, by the microdilution and checkerboard methods, respectively. In this study, the aqueous extract from the nest of N. corniger (ANCE) was prepared and tested with chlorpromazine (CPZ) for its antimicrobial activity, using the microdilution method. CPZ and ANCE were used independently and also in combination with aminoglycosides, against a strain of Escherichia coli resistant to these antibiotics, to determine the participation of efflux systems in resistance mechanisms. The fractional inhibitory concentration (FIC) index was calculated and evaluated for the occurrence of synergism, using the checkerboard method. The minimum inhibitory concentrations (MIC) and minimum bactericidal concentrations (MBC) values were ≥ 2048 μg/mL for both strains of E. coli assayed, indicating low antibacterial activity. However, synergism was observed with kanamycin when the decoction was used, but when chlorpromazine was used, synergism was observed with kanamycin, amikacin, and neomycin. This synergism with CPZ indicated the involvement of an efflux system in the resistance to these aminoglycosides. Therefore, it was suggested that the natural products from N. corniger could be used as a source of zoo-derived natural products with kanamycin-modifying activity, resulting in a new approach against bacterial resistance to antibiotics.Keywords: Aminoglycosides, antibiotic modifying activity, ethnozoology, isopteran, N. Corniger, termite, zootherapy
机译:细菌感染因子对人群构成危险,因为它们导致高发病率和高死亡率。为了与这些病原体作斗争,我们的主要防线是使用抗生素。但是,不加选择地使用这些药物会产生对这些相同药物的抗药性。本研究分别通过微稀释法和棋盘法测试了巴西东北白蚁中的白蚁Nasutitermes corniger(Termitidae)(Motschulsky)天然产品的抗菌和修饰抗生素活性。在这项研究中,制备了来自N. Corniger(ANCE)巢的水提物,并使用微量稀释方法用氯丙嗪(CPZ)测试了其抗菌活性。 CPZ和ANCE分别与氨基糖苷类药物结合使用,针对对这些抗生素有抗药性的大肠杆菌菌株,以确定外排系统参与抗药性机制。使用棋盘法计算分数抑制浓度(FIC)指数,并评估协同作用的发生。两种测定的大肠杆菌的最低抑菌浓度(MIC)和最低杀菌浓度(MBC)值均≥2048μg/ mL,表明抗菌活性低。然而,当使用汤剂时,观察到与卡那霉素有协同作用,但是当使用氯丙嗪时,发现与卡那霉素,阿米卡星和新霉素有协同作用。与CPZ的这种协同作用表明外排系统参与了对这些氨基糖苷的抗性。因此,有人建议将角corn猪笼草的天然产物用作具有卡那霉素修饰活性的动物园来源的天然产物的来源,从而开发出一种新的抗细菌对抗生素耐药性的方法。人类学,等翅目,N. Corniger,白蚁,动物疗法

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