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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Optimization of 3-(phenylthio)quinolinium compounds against opportunistic fungal pathogens.
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Optimization of 3-(phenylthio)quinolinium compounds against opportunistic fungal pathogens.

机译:3-(苯硫基)喹啉鎓化合物针对机会性真菌病原体的优化。

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Ring-opened benzothieno[3,2-b]quinolinium salts (3) were designed and synthesized with substitution on the thiophene moiety. In vitro screenings were carried out against fungal pathogens including Cryptococcus neoformans, Candida albicans, Candida glabrata, Candida krusei and Aspergillus fumigatus. In all, by replacing the N-methyl group (2) with N-omega-phenylpentyl or omega-cyclohexylpentyl group to form substituted 3-(phenylthio)quinolinium compounds produced remarkable potencies, as high as 300-fold (cf, cryptolepine (1)=250 mug/mL vs 11p=0.8 mug/mL for C. albicans) over the starting tetracyclic parent. In addition, all the N-omega-cyclohexylpentyl analogs produced superior activity against all the microorganisms tested than the N-omega-phenylpentyl substituted compounds. The potential of these compounds to induce toxicity in Vero cells was also investigated and the majority of them showed lower or no cytotoxicity at 10 mug/mL than amphotericin B, the gold standard in antifungal drug development. For instance, the trifluoromethyl substituted analogs (11n-p) have selectivity indices over 2-fold better than those of amphotericin B in C. neoformans. Overall, this ring-opened scafford of benzothienoquinolines, with substitution on the thiophenyl moiety, serves as a new lead for further development.
机译:设计并合成了在噻吩部分具有取代基的开环苯并噻吩并[3,2-b]喹啉鎓盐(3)。进行了针对真菌病原体的体外筛选,其中包括新型隐球菌,白色念珠菌,光滑念珠菌,克鲁斯念珠菌和烟曲霉。总体而言,通过用N-ω-苯基戊基或ω-环己基戊基取代N-甲基(2)形成取代的3-(苯硫基)喹啉鎓化合物,产生了显着的效力,高达300倍(cf,cryptolepine(1 )= 250杯/毫升,而白色四角念珠菌的11p = 0.8杯/毫升)。另外,与N-ω-苯基戊基取代的化合物相比,所有N-ω-环己基戊基类似物对所有测试的微生物均产生优异的活性。还研究了这些化合物在Vero细胞中诱导毒性的潜力,并且在10杯/毫升时,大多数化合物显示出比抗真菌药物开发的金标准B两性霉素B低或无细胞毒性。例如,三氟甲基取代的类似物(11n-p)在新孢梭菌中的选择性指数比两性霉素B高2倍以上。总的来说,这种苯并噻吩并喹啉的开环sc草,在硫代苯基部分被取代,可作为进一步开发的新途径。

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