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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Design, synthesis, and biodistribution studies of new analogues of marine alkaloids: Potent in vitro and in vivo fungicidal agents against Candida spp.
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Design, synthesis, and biodistribution studies of new analogues of marine alkaloids: Potent in vitro and in vivo fungicidal agents against Candida spp.

机译:海洋生物碱新类似物的设计,合成和生物分布研究:对念珠菌SPP的体外效力和体内杀菌剂。

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Invasive candidiasis, such as intra-abdominal candidiasis (IAC), is a significant cause of morbidity and mortality worldwide. IAC is still poorly understood, and its treatment represents a challenge for public health. In this study, we showed the in vitro anti-Candida activity of four alkaloid synthetic derivatives and their antifungal potential in a murine model of IAC. The biological effects of alkaloids were evaluated against Candida spp. through the determination of the minimum inhibitory concentration (MIC). For the alkaloids that showed antifungal activity, the fungicidal concentration, time-kill curve, synergism with azoles and polyenes, phenotypic effects, and the effect against virulence factors were also determined. The most active alkaloids were selected for in vivo assays. The compounds 6a and 6b were active against C. albicans, C. glabrata, and C. tropicalis (MIC 7.8 mu g/mL) and showed promising antifungal activity against C. krusei (MIC 3.9 mu g/mL). The compound 6a presented a potent fungicidal effect in vitro, eliminating the yeast C. albicans after 8 h of incubation at MIC. An important in vitro synergistic effect with ketoconazole was observed for these two alkaloids. They also induced the lysis of fungal cells by binding to the ergosterol of the membrane. Besides that, 6a and 6b were able to reduce yeasteto-hyphal transition in C. albicans, as well as inhibit the biofilm formation of this pathogen. In the in vivo assay, the compound 6a did not show acute toxicity and was mainly absorbed by the liver, spleen, and lung after a parenteral administration. Also, this analogue significantly reduced the fungal load of C. albicans on the kidney and spleen of animals with IAC. Therefore, these results showed that the compound 6a is a potent anti-Candida agent in vitro and in vivo. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:侵袭性念珠菌病,如腹腔内念珠菌病(IAC),是全球发病率和死亡率的重要原因。人们对IAC仍知之甚少,其治疗对公共卫生来说是一个挑战。在本研究中,我们在小鼠IAC模型中展示了四种生物碱合成衍生物的体外抗念珠菌活性及其抗真菌潜力。通过测定最低抑菌浓度(MIC),评价生物碱对念珠菌的生物学效应。对于具有抗真菌活性的生物碱,还测定了杀菌浓度、杀时曲线、与唑类和多烯类的协同作用、表型效应以及对毒力因子的影响。选择最具活性的生物碱进行体内试验。化合物6a和6b对白色念珠菌、光滑念珠菌和热带念珠菌具有活性(MIC 7.8μg/mL),并且对克鲁西念珠菌具有良好的抗真菌活性(MIC 3.9μg/mL)。化合物6a在体外表现出强大的杀菌效果,在MIC下培养8小时后消除了白色念珠菌。这两种生物碱在体外与酮康唑有重要的协同作用。它们还通过结合膜上的麦角甾醇诱导真菌细胞裂解。除此之外,6a和6b还能够减少白念珠菌的酵母菌到菌丝的转化,并抑制该病原体的生物膜形成。在体内试验中,化合物6a没有显示出急性毒性,经肠外给药后主要被肝脏、脾脏和肺吸收。此外,这种类似物显著降低了IAC动物肾脏和脾脏上的白色念珠菌真菌负荷。因此,这些结果表明化合物6a在体外和体内都是一种有效的抗念珠菌药物。(C) 2020年爱思唯尔马森SAS。版权所有。

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