Carballeira Néstor M, Sanabria David, Cruz Clarisa, Parang Keykavous, Wan Baojie, Franzblau Scott
Department of Chemistry, University of Puerto Rico, San Juan, Puerto Rico.
Lipids. 2006 May;41(5):507-11. doi: 10.1007/s11745-006-5124-4.
The hitherto unknown 2,6-hexadecadiynoic acid, 2,6-nonadecadiynoic acid, and 2,9-hexadecadiynoic acid were synthesized in two steps and in 11-18% overall yields starting from either 1,5-hexadiyne or 1,8-nonadiyne. Among all the compounds 2,6-hexadecadiynoic acid displayed the best overall antifungal activity against both the fluconazole-resistant Candida albicans strains ATCC 14053 and ATCC 60193, with a minimum inhibitory concentration (MIC of 11 microM), and against Cryptococcus neoformans ATCC 66031 (MIC < 5.7 microM). 2,9-Hexadecadiynoic acid did not display any significant cytotoxicity against the fluconazole-resistant C. albicans strains, but it showed fungitoxicity against C. neoformans ATCC 66031 with a MIC value of < 5.8 microM. Other FA, such as 2-hexadecynoic acid, 5-hexadecynoic acid, 9-hexadecynoic acid, and 6-nonadecynoic acid were also synthesized and their antifungal activities compared with those of the novel acetylenic FA. 2-Hexadecynoic acid, a known antifungal FA, exhibited the best antifungal activity (MIC = 9.4 microM) against the fluconazole-resistant C. albicans ATCC 14053 strain, but it showed a MIC value of only 100 microM against C. albicans ATCC 60193. 2,6-Hexadecadiynoic acid and 2-hexadecynoic acid also displayed a MIC of 140-145 microM toward Mycobacterium tuberculosis H37Rv in Middlebrook 7H12 medium. In conclusion, 2,6-hexadecadiynoic acid exhibited the best fungitoxicity profile compared with other analogues. This diynoic FA has the potential to be further evaluated for use in topical antifungal formulations.
以1,5 - 己二炔或1,8 - 壬二炔为起始原料,通过两步反应合成了此前未知的2,6 - 十六碳二炔酸、2,6 - 十九碳二炔酸和2,9 - 十六碳二炔酸,总产率为11% - 18%。在所有化合物中,2,6 - 十六碳二炔酸对氟康唑耐药的白色念珠菌菌株ATCC 14053和ATCC 60193表现出最佳的总体抗真菌活性,最小抑菌浓度(MIC)为11微摩尔,对新生隐球菌ATCC 66031的MIC < 5.7微摩尔。2,9 - 十六碳二炔酸对氟康唑耐药的白色念珠菌菌株没有表现出任何显著的细胞毒性,但对新生隐球菌ATCC 66031表现出杀真菌毒性,MIC值< 5.8微摩尔。还合成了其他脂肪酸,如2 - 十六碳炔酸、5 - 十六碳炔酸、9 - 十六碳炔酸和6 - 十九碳炔酸,并将它们的抗真菌活性与新型炔属脂肪酸的抗真菌活性进行了比较。已知的抗真菌脂肪酸2 - 十六碳炔酸对氟康唑耐药的白色念珠菌ATCC 14053菌株表现出最佳的抗真菌活性(MIC = 9.4微摩尔),但对白色念珠菌ATCC 60193的MIC值仅为100微摩尔。2,6 - 十六碳二炔酸和2 - 十六碳炔酸在Middlebrook 7H12培养基中对结核分枝杆菌H37Rv的MIC也为140 - 145微摩尔。总之,与其他类似物相比,2,6 - 十六碳二炔酸表现出最佳的杀真菌毒性特征。这种二炔属脂肪酸有潜力进一步评估用于局部抗真菌制剂。