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发酵过程中蚕豆粉中野靛碱、伴野靛碱及其糖苷配基的降解。

Degradation of vicine, convicine and their aglycones during fermentation of faba bean flour.

机构信息

University of Bari "Aldo Moro", Department of Soil, Plant, and Food Science, Via Amendola 165/a, 70125 Bari, Italy.

University of Bari "Aldo Moro", Department of Chemistry, Via E. Orabona 4, 70125 Bari, Italy.

出版信息

Sci Rep. 2016 Aug 31;6:32452. doi: 10.1038/srep32452.

Abstract

In spite of its positive repercussions on nutrition and environment, faba bean still remains an underutilized crop due to the presence of some undesired compounds. The pyrimidine glycosides vicine and convicine are precursors of the aglycones divicine and isouramil, the main factors of favism, a genetic condition which may lead to severe hemolysis after faba bean ingestion. The reduction of vicine and convicine has been targeted in several studies but little is known about their degradation. In this study, the hydrolysis kinetics of vicine and convicine and their derivatives during fermentation with L. plantarum DPPMAB24W was investigated. In particular, a specific HPLC method coupled to ESI-MS and MS/MS analysis, including the evaluation procedure of the results, was set up as the analytical approach to monitor the compounds. The degradation of the pyrimidine glycosides in the fermented flour was complete after 48 h of incubation and the aglycone derivatives could not be detected in any of the samples. The toxicity of the fermented faba bean was established through ex-vivo assays on human blood, confirming the experimental findings. Results indicate that mild and cost effective bioprocessing techniques can be applied to detoxify faba bean also for industrial applications.

摘要

尽管兵豆具有积极的营养和环境影响,但由于存在一些不理想的化合物,它仍然是一种未充分利用的作物。嘧啶糖苷野靛碱和伴野靛碱是糖苷元野靛苦苷和异尿咪的前体,野靛苦苷和异尿咪是蚕豆病的主要因素,这种遗传性疾病可能导致摄入兵豆后严重溶血。在几项研究中,已经针对降低野靛碱和伴野靛碱的含量进行了研究,但对它们的降解知之甚少。在这项研究中,研究了用 L. plantarum DPPMAB24W 发酵时野靛碱和伴野靛碱及其衍生物的水解动力学。特别是,建立了一种特定的 HPLC 方法,结合 ESI-MS 和 MS/MS 分析,包括结果的评估程序,作为监测化合物的分析方法。发酵面粉中嘧啶糖苷的降解在孵育 48 小时后完全,在任何样品中都无法检测到糖苷元衍生物。通过对人血进行的体外检测,确定了发酵兵豆的毒性,证实了实验结果。结果表明,温和且具有成本效益的生物加工技术可用于兵豆解毒,也可用于工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da52/5006014/8222c579203a/srep32452-f1.jpg

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