Department of Biochemistry, Faculty of Veterinary Medicine, Ataturk University, 25240 Erzurum, Turkey.
Department of Clinical Laboratory Science, College of Pharmacy, Tikrit University, Tikrit 34001, Iraq.
Molecules. 2021 Mar 4;26(5):1375. doi: 10.3390/molecules26051375.
This paper aimed to investigate the potential antifungal influences of new alkaloids from L. var. Boiss. New Diterpenoid alkaloids Delcarpum (), Hydrodavisine () and known alkaloids Peregrine (), Delphitisine () were isolated by different chromatographic methods from the aerial parts of Boiss, which grows in Syria. The structures of alkaloids were proposed based on 1D NMR spectroscopy H-NMR, C-NMR, DEPT-135, DEPT-90, 2D NMR spectroscopy DQF-COSY, HMQC, EI-Ms mass spectrum, and IR spectroscopic measurements. The antifungal activity of the isolated alkaloids was evaluated against different dermatophyte fungal isolates compared with fluconazole. In the case of Peregrine () the minimum inhibitory concentrations(MICs) recorded 128-256, 32-64, and 32 for , and , respectively, compared to 32-64, 16, and 32 μg/mL in the case of fluconazole, respectively. The MICs recorded on application of the four alkaloids mixture were 64, 32, and 16 in the case of , , and , respectively, which were significantly lower than that measured for each of the individual alkaloid and were compatible for fluconazole. In conclusion, MICs of the tested alkaloids showed a variable potential effect on the investigated fungal isolates. Peregrine () was the most effective alkaloid, however, the application of the mixture of alkaloids induced significant synergistic activity that was more pronounced than the application of individual ones.
本文旨在研究来自 Boiss 的新生物碱的潜在抗真菌影响。从生长在叙利亚的 Boiss 地上部分,采用不同的色谱方法分离出新的二萜生物碱 Delcarpum ()、Hydrodavisine () 和已知的生物碱 Peregrine ()、Delphitisine ()。基于 1D NMR 光谱 H-NMR、C-NMR、DEPT-135、DEPT-90、2D NMR 光谱 DQF-COSY、HMQC、EI-MS 质谱和 IR 光谱测量,提出了生物碱的结构。将分离得到的生物碱的抗真菌活性与氟康唑进行了比较,评估了它们对不同皮肤真菌分离株的活性。对于 Peregrine (),记录的最小抑菌浓度 (MICs) 分别为 128-256、32-64 和 32 ,而氟康唑的 MICs 分别为 32-64、16 和 32 μg/mL。应用四种生物碱混合物的 MICs 分别为 64、32 和 16 ,对于 、 和 ,分别显著低于每种生物碱的单独应用的 MICs,并且与氟康唑兼容。总之,测试生物碱的 MICs 显示出对所研究的真菌分离株的可变潜在影响。Peregrine ()是最有效的生物碱,但生物碱混合物的应用诱导了显著的协同活性,比单独应用更为明显。