Zaki Ahmed A, Kaddah Mohamed M Y, Abulkhair Hamada S, Ashour Ahmed
Department of Pharmacognosy, Faculty of Pharmacy, Mansoura University Mansoura 35516 Egypt
Department of Pharmacognosy, Faculty of Pharmacy, Horus University-Egypt International Coastal Road New Damietta 34518 Egypt.
RSC Adv. 2022 Jan 21;12(5):2980-2991. doi: 10.1039/d1ra08532h. eCollection 2022 Jan 18.
Bioassay-guided investigation of extract resulted in the identification of seven steroidal saponins (Turgidosterones 1-7). They were evaluated for their antifungal, antileishmanial, and antitrypanosomal activities. Turgidosterone 6 was the most active antifungal against and (IC values of 2.84 and 1.08 μg mL, respectively). Turgidosterones 4-7 displayed antileishmanial activity against promastigotes with IC values ranging from 4.95 to 8.03 μg mL and against amastigote/THP with IC values range of 4.50-9.29 μg mL. Activity against was also observed for Turgidosterones 4-7 with an IC values range of 1.26-3.77 μg mL. Turgidosterones 1-3 did not display any activity against the tested pathogens. The study of structure-activity relationships of the isolated saponins indicated that the antifungal, antileishmanial, and antitrypanosomal activities are markedly affected by the presence of spirostane-type saponins and the elongation of the sugar residue at C-3. To quantitatively determine the most abundant active ingredient in extract, a single run, sensitive, and highly selective liquid chromatography-tandem mass spectrometry (LC-MS/MS) method has been applied under positive and negative modes. The obtained results showed that compound 5 was the most abundant (95.93 ± 1.10 mg per gram of dry ), followed by 6 (52.51 ± 1.05 mg gm), 4 (32.71 ± 0.48 mg gm), and 7 (13.19 ± 0.50 mg gm). Docking of these saponins against the oxidoreductases and trypanothione reductase active sites revealed their potential to effectively bind with a number of key residues in both receptor targets.
对提取物进行生物测定指导的研究,鉴定出了7种甾体皂苷(土庄绣线菊皂苷1 - 7)。对它们的抗真菌、抗利什曼原虫和抗锥虫活性进行了评估。土庄绣线菊皂苷6对[具体真菌名称1]和[具体真菌名称2]是最具活性的抗真菌剂(IC值分别为2.84和1.08 μg/mL)。土庄绣线菊皂苷4 - 7对[利什曼原虫名称]前鞭毛体显示出抗利什曼原虫活性,IC值范围为4.95至8.03 μg/mL,对[利什曼原虫名称]无鞭毛体/THP的IC值范围为4.50 - 9.29 μg/mL。土庄绣线菊皂苷4 - 7对[锥虫名称]也有活性,IC值范围为1.26 - 3.77 μg/mL。土庄绣线菊皂苷1 - 3对测试病原体未显示任何活性。对分离出的皂苷进行构效关系研究表明,抗真菌、抗利什曼原虫和抗锥虫活性受到螺甾烷型皂苷的存在以及C - 3位糖残基延长的显著影响。为了定量测定[植物名称]提取物中最丰富的活性成分,已在正离子和负离子模式下应用了一种单次运行、灵敏且高度选择性的液相色谱 - 串联质谱(LC - MS/MS)方法。所得结果表明,化合物5含量最高(每克干[植物名称]中为95.93 ± 1.10 mg),其次是6(52.51 ± 1.05 mg/g)、4(32.71 ± 0.48 mg/g)和7(13.19 ± 0.50 mg/g)。这些皂苷与[氧化还原酶名称]氧化还原酶和[锥虫硫醇还原酶名称]锥虫硫醇还原酶活性位点的对接显示,它们有可能与两个受体靶点中的一些关键残基有效结合。