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一种优化的微波辅助消化方法,用于分析不同种植来源的[具体物质]的氨基酸谱。 (注:原文中“from Different Planted Origins”前缺少具体所指物质,翻译时根据语境补充了“[具体物质]”)

An Optimized Microwave-Assisted Digestion Method to Analyze the Amino Acids Profile of from Different Planted Origins.

作者信息

Dai Lei, Yang Lin, Wang Yiwu, Li Yan, Zhao Jianing, Pan Shuxiang, Li Yaxuan, Yang Dan, He Dan

机构信息

Chongqing Research Center for Pharmaceutical Engineering, College of Pharmacy, Chongqing Medical University, Chongqing 400016, China.

Chongqing Pharmaceutical Preparation Engineering Technology Research Center, Chongqing Medical and Pharmaceutical College, Chongqing 401331, China.

出版信息

Foods. 2024 May 24;13(11):1645. doi: 10.3390/foods13111645.

Abstract

This study aims to establish a rapid and convenient microwave-assisted digestion method for sample pretreatment to determine amino acid profiles in natural products. This method was applied to analyze the amino acid profiles of (QF) from different planted origins. The microwave-assisted digestion conditions were optimized by a response surface methodology (RSM), and 17 amino acids in different planted origins of QF were determined by an automatic amino acid analyzer according to the optimized digestion conditions. The contents of 17 amino acids in QF from different planted origins were further analyzed by fingerprint and chemometric analysis. The temperature of microwave digestion at 167 °C, time of microwave digestion at 24 min, and a solid-liquid ratio of 46.5 g/mL was selected as the optimal digestion conditions. The total content of 17 amino acids in QF from different planted origins ranged from 71.88 to 91.03 mg/g. Amino acid composition and nutritional evaluation indicated that the content of medicinal amino acids was higher than aromatic amino acids. The results of fingerprint analysis reflected that the similarity between the 16 batches of QF ranged from 0.889 to 0.999, while chemometrics analysis indicated amino acid content in QF varied from different planted origins, and six important differential amino acids were screened. Compared with the traditional extraction method, microwave-assisted digestion with response surface optimized has the advantages of rapidity, convenience, and reliability, which could be used to study the amino acid profiles in natural products. The amino acid profile of QF indicated that it has a rich medicinal nutritional value. Different planted origins of QF have a high degree of similarity and could be effectively distinguished by chemometric analysis.

摘要

本研究旨在建立一种快速便捷的微波辅助消化方法用于样品预处理,以测定天然产物中的氨基酸谱。该方法应用于分析不同种植产地的秦艽(QF)的氨基酸谱。采用响应面法(RSM)优化微波辅助消化条件,并根据优化后的消化条件,通过自动氨基酸分析仪测定不同种植产地QF中的17种氨基酸。通过指纹图谱和化学计量学分析进一步分析不同种植产地QF中17种氨基酸的含量。选择微波消解温度为167℃、微波消解时间为24分钟、固液比为46.5 g/mL作为最佳消解条件。不同种植产地QF中17种氨基酸的总含量在71.88至91.03 mg/g之间。氨基酸组成和营养评价表明,药用氨基酸含量高于芳香族氨基酸。指纹图谱分析结果表明,16批次QF之间的相似度在0.889至0.999之间,而化学计量学分析表明,不同种植产地的QF中氨基酸含量存在差异,并筛选出6种重要的差异氨基酸。与传统提取方法相比,响应面优化的微波辅助消解具有快速、便捷、可靠的优点,可用于研究天然产物中的氨基酸谱。QF的氨基酸谱表明其具有丰富的药用营养价值。不同种植产地的QF具有高度相似性,通过化学计量学分析可有效区分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a040/11172225/d8e5091e2c6d/foods-13-01645-g001.jpg

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