The fermentation of Camellia chrysantha leaves with Eurotium cristatum to yield biologically active compound

发酵 化学 生物活性 微型真菌 分馏 产量(工程) 生物化学 三萜 体外 光谱分析 细胞培养 色谱法 食品科学 异核单量子相干光谱 癌细胞系 生物测定 呋喃香豆素 活性化合物 体内 对抗 活性成分 癌细胞
作者
Hang TN Tran,Q. D. Nguyen,Van TH Nguyen,Thi-Hang Tran,Bach C Pham,Cuong H. Le,Nghi H Do,Ha T. H. Tran,Chi K Hoang
出处
期刊:Journal of chemical research [SAGE Publishing]
卷期号:50 (1)
标识
DOI:10.1177/17475198261421696
摘要

Microfungi have appeared as one of the most effective and eco-friendly catalysers for derivatizing bio-active molecules in green chemistry. The use of Eurotium cristatum has been established as a method of post-harvest handling and value addition for tea products, especially in enhancing their health-protective properties. From our study, a consortium of E. cristatum was selected and introduced as inoculum on Camellia chrysantha leaves substrate, yielding transformed products with chemo-preventive and antidiabetic potential. Biological activity-guided fractionation incorporated with chromatographic separation of the fermented products gave out compound THV-LM03 as the most active isolate exhibiting inhibitory effect against lipase, α-glucosidase, and cancerous cell growth. By means of 1 H-NMR, 13 C-NMR, HSQC and HMBC spectral analysis, THV-LM03 was elucidated as 22-O-tigloyloxycamelliagenin A – a triterpene which has not been isolated previously from Camellia materials. In vitro assays revealed THV-LM03 as a potent inhibitor against α-glucosidase (IC 50 value at 16.33 µg/mL) and against cancer cell lines LU-1 and MCF-7 (IC 50 values at 4.87 and 9.32 µg/mL, respectively). These findings brought out a new pharmacological aspect of microbial fermentation in C. chrysantha leaves, as well as contributed to highlight the potential of effective bio-transformation in a safer synthesis of target molecules.
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