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通过快速灵敏的超高效液相色谱-大气压化学电离-飞行时间质谱法筛选染料木黄酮的新来源

Screening of Novel Source for Genistein by Rapid and Sensitive UPLC-APCI-TOF Mass Spectrometry.

作者信息

Bettaiah Aparna, Prabhushankar Hema Bommanamane

机构信息

Department of Biotechnology, Sri Jayachamarajendra College of Engineering, JSS Science and Technology University, JSS TI Campus, Mysuru, Karnataka 57006, India.

出版信息

Int J Food Sci. 2021 Mar 16;2021:5537917. doi: 10.1155/2021/5537917. eCollection 2021.

Abstract

Genistein has been shown to have a broad spectrum of health advantages. Only legumes were reported to have a significant amount of genistein with the highest concentration in Soybean. Soybean was found to cause allergies in children with atopic dermatitis and in adults. Limited food sources have hindered the use of genistein in daily diets, medications, and nutraceuticals. The main objective of the current research work was to discover the novel source for genistein by the simple method of extraction and quantification. Genistein was extracted by solid-liquid extraction technique. Extraction parameters were optimized by a single factor test. Identification and quantification of genistein from the selected seeds of Apiaceae were carried out using UPLC-APCI-TOF-MS. UPLC-APCI-TOF-MS method was successfully developed, validated (linearity (R = 0.999), precision (R.S.D. <5%), and accuracy (107.23%)), and used for the study. Remarkably, a high concentration of the genistein (811.57 g/g) was found in the . Solvent mixture (50 mL Methanol+25 mL Dimethyl sulphoxide+25 mL Water (//)), temperature (80°C), and time (1 h) were found to be the optimum extraction conditions. The concentration of genistein before optimization was 226.67 g/g and after optimization is 811.57 g/g. This shows the efficiency of the extraction method in the extraction of genistein without the need for hydrolysis. Novel source for genistein is identified in regular human food can be consumed in a regular diet which increases wellness of human health along with enhancing the taste of the food. The developed extraction method coupled with high throughput, sensitive, and selective UPLC-APCI-TOF-MS technique facilitates rapid quantification (8 minutes of run time) without primary purification of complex extract.

摘要

染料木黄酮已被证明具有广泛的健康益处。据报道,只有豆类含有大量的染料木黄酮,其中大豆中的浓度最高。人们发现大豆会导致患有特应性皮炎的儿童和成年人过敏。有限的食物来源阻碍了染料木黄酮在日常饮食、药物和营养保健品中的应用。当前研究工作的主要目标是通过简单的提取和定量方法发现染料木黄酮的新来源。采用固液萃取技术提取染料木黄酮。通过单因素试验优化提取参数。使用超高效液相色谱-大气压化学电离-飞行时间质谱(UPLC-APCI-TOF-MS)对伞形科选定种子中的染料木黄酮进行鉴定和定量。成功开发并验证了UPLC-APCI-TOF-MS方法(线性(R = 0.999)、精密度(相对标准偏差<5%)和准确度(107.23%)),并用于该研究。值得注意的是,在[此处原文缺失具体样本名称]中发现了高浓度的染料木黄酮(811.57 μg/g)。发现溶剂混合物(50 mL甲醇+25 mL二甲基亚砜+25 mL水(//))、温度(80°C)和时间(1 h)为最佳提取条件。优化前染料木黄酮的浓度为226.67 μg/g,优化后为811.57 μg/g。这表明该提取方法在无需水解的情况下提取染料木黄酮的效率。在常见的人类食物中发现了染料木黄酮的新来源,可在日常饮食中食用,这既能增进人类健康,又能提升食物的口感。所开发的提取方法与高通量、灵敏且选择性的UPLC-APCI-TOF-MS技术相结合,无需对复杂提取物进行初步纯化即可实现快速定量(运行时间8分钟)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ced/7987462/19055b75d910/IJFS2021-5537917.001.jpg

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