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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Derivatization of Soyasapogenol A through Microbial Transformation for Potential Anti-inflammatory Food Supplements
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Derivatization of Soyasapogenol A through Microbial Transformation for Potential Anti-inflammatory Food Supplements

机译:通过微生物转化进行潜在抗炎食品补充剂的微生物转化衍生化

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摘要

For the optimum use of soyasaponins isolated from soybean cake and to explore the potential anti-inflammatory agents from pentacyclic triterpenes as natural food supplements, microbial transformation of soyasapogenol A was carried out. Four strains of microbes, including Bacillus megaterium CGMCC 1.1741, Penicillium griseofulvum CICC 40293, Bacillus subtilis ATCC 6633, and Streptomyces griseus ATCC 13273, showed robust catalytic capacity to the substrate. Preparative biotransformation and column chromatographic purification led to the isolation of 10 novel and 1 reported metabolites. The structure elucidation was performed using 1D/2D NMR and HR-ESI-MS analytical method. Several novel tailoring reactions, such as allyl oxidation, C-C double bond rearrangement, hydroxylation, dehydrogenation, and glycosylation, were observed in the biotransformation. In the follow-up bioassay, most of the metabolites exhibited low cytotoxicity and potent inhibitory activity against the production of nitric oxide (NO) in RAW 264.7 cells stimulated by lipopolysaccharide. Especially compound 6 (3-oxo-11 alpha,21 beta,22 beta,24-tetrahydroxy-olean-12-ene) showed comparable activity to the positive control of quercetin with an IC50 value of 16.70 mu M. These findings provided an experimental approach to achieve the derivatization of natural aglycons in soybeans through microbial transformation for developing potent anti-inflammatory food supplements.
机译:为了更好地利用从豆饼中提取的大豆皂甙,并探索五环三萜类化合物作为天然食品添加剂的潜在抗炎剂,对大豆皂甙A进行了微生物转化。四株微生物,包括巨大芽孢杆菌CGMCC 1.1741、灰黄霉素青霉CICC 40293、枯草芽孢杆菌ATCC 6633和灰链霉菌ATCC 13273,对底物表现出强大的催化能力。制备性生物转化和柱色谱纯化分离出10种新的和1种已报道的代谢物。利用1D/2D NMR和HR-ESI-MS分析方法进行了结构鉴定。在生物转化过程中观察到了烯丙基氧化、C-C双键重排、羟基化、脱氢和糖基化等新的裁剪反应。在后续的生物测定中,大多数代谢物对脂多糖刺激的RAW 264.7细胞产生一氧化氮(NO)表现出低细胞毒性和有效抑制活性。尤其是化合物6(3-氧代-11-α、21-β、22-β、24-四羟基-油酸-12-烯)显示出与槲皮素阳性对照相当的活性,IC50值为16.70μM。这些发现为通过微生物转化实现大豆中天然苷元的衍生提供了一种实验方法,以开发有效的抗炎食品补充剂。

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