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生物转化吉他霉素产生的新卡烯内酯:特征和细胞毒性活性。

New Cardenolides from Biotransformation of Gitoxigenin by the Endophytic Fungus 1E1BL1: Characterization and Cytotoxic Activities.

机构信息

Department of Bioengineering, Faculty of Engineering, İzmir Institute of Technology, 35430 Urla-İzmir, Turkey.

Department of Pharmacognosy, Faculty of Pharmacy, Ege University, 35100 Bornova-İzmir, Turkey.

出版信息

Molecules. 2021 May 19;26(10):3030. doi: 10.3390/molecules26103030.

Abstract

Microbial biotransformation is an important tool in drug discovery and for metabolism studies. To expand our bioactive natural product library via modification and to identify possible mammalian metabolites, a cytotoxic cardenolide (gitoxigenin) was biotransformed using the endophytic fungus 1E1BL1. Initially, oleandrin was isolated from the dried leaves of L. and subjected to an acid-catalysed hydrolysis to obtain the substrate gitoxigenin (yield; ~25%). After 21 days of incubation, five new cardenolides , , , , and and three previously- identified compounds , and were isolated using chromatographic methods. Structural elucidations were accomplished through 1D/2D NMR, HR-ESI-MS and FT-IR analysis. catalyzed oxygenation, oxidation, epimerization and dimethyl acetal formation reactions on the substrate. Cytotoxicity of the metabolites were evaluated using MTT cell viability method, whereas doxorubicin and oleandrin were used as positive controls. Biotransformation products displayed less cytotoxicity than the substrate. The new metabolite exhibited the highest activity with IC values of 8.25, 1.95 and 3.4 µM against A549, PANC-1 and MIA PaCa-2 cells, respectively, without causing toxicity on healthy cell lines (MRC-5 and HEK-293) up to concentration of 10 µM. Our results suggest that is an effective biocatalyst for modifying cardenolide-type secondary metabolites.

摘要

微生物生物转化是药物发现和代谢研究的重要工具。为了通过修饰来扩展我们的生物活性天然产物库,并鉴定可能的哺乳动物代谢物,我们使用内生真菌 1E1BL1 对细胞毒性的甾体糖苷(戈迪辛)进行了生物转化。最初,从 干燥的叶子中分离出欧夹竹桃苷,并进行酸催化水解以获得底物戈迪辛(产率;~25%)。经过 21 天的孵育,使用色谱方法分离出五种新的甾体糖苷 、 、 、 和 以及三种先前鉴定的化合物 、 和 。通过 1D/2D NMR、HR-ESI-MS 和 FT-IR 分析完成了结构阐明。 在底物上催化了加氧、氧化、差向异构化和二甲缩醛形成反应。使用 MTT 细胞活力法评估代谢物的细胞毒性,而阿霉素和欧夹竹桃苷则用作阳性对照。与底物相比,生物转化产物的细胞毒性较低。新代谢产物 对 A549、PANC-1 和 MIA PaCa-2 细胞的 IC 值分别为 8.25、1.95 和 3.4 µM,显示出最高的活性,而在 10 µM 浓度下对健康细胞系(MRC-5 和 HEK-293)没有毒性。我们的结果表明, 是修饰甾体糖苷类次生代谢物的有效生物催化剂。

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