酚类化合物提取的绿色化学和多元优化:NaDES在膨化挤出物替代原料中的潜力。

IF 2 Q3 BIOCHEMICAL RESEARCH METHODS
Mateus Alves Araújo, Bianca Rodrigues Morais, João Pedro da Silva Santos, Larissa Karla de Jesus, Kaliston Aurélio Lomba, Gustavo Costa do Nascimento, Marcus Alvarenga Soares, Nathalia de Andrade Neves, Irene Andressa, Maria Teresa Pedrosa Silva Clerici, Marcio Schmiele
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引用次数: 0

摘要

酚类化合物是广泛分布于植物体内的次生代谢产物,具有生物活性,尤其是抗氧化活性。对可持续提取方法的探索推动了天然深共晶溶剂(NaDESs)的使用,这种溶剂由天然化合物(如有机酸、糖、醇和氨基酸)的组合形成。本研究优化了NaDES(山梨醇、柠檬酸和甘氨酸)在热塑性挤压蒸煮前后对玉米、荞麦、生物强化橙甘薯、红扁豆、苏丹草和鹰嘴豆6种面粉基质中总可溶性酚类化合物(TSPCs)的提取效率,并与70%甲醇溶液进行了比较。采用Folin-Ciocalteu法进行定量,在10%显著性水平下进行统计学分析。总的来说,原料的甲醇提取物中TSPC含量较高,而豆科植物的NaDESs含量较高。挤压后,除甘薯外,观察到TSPC水平降低。多变量分析(PLS-DA和热图)区分了原始样品和挤压样品,揭示了热处理过程中的结构和化学变化。同意评分为0.7 (NaDES)和0.54(甲醇),有利于NaDES。BAGI得分(75.0)证实了该方法的稳健性和可持续性分析应用的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Green Chemistry and Multivariate Optimization in the Extraction of Phenolic Compounds: The Potential of NaDES in Alternative Raw Materials for Expanded Extrudates.

Green Chemistry and Multivariate Optimization in the Extraction of Phenolic Compounds: The Potential of NaDES in Alternative Raw Materials for Expanded Extrudates.

Green Chemistry and Multivariate Optimization in the Extraction of Phenolic Compounds: The Potential of NaDES in Alternative Raw Materials for Expanded Extrudates.

Green Chemistry and Multivariate Optimization in the Extraction of Phenolic Compounds: The Potential of NaDES in Alternative Raw Materials for Expanded Extrudates.

Phenolic compounds are secondary metabolites widely distributed among plants, with bioactive properties, especially antioxidant activity. The search for sustainable extraction methods has driven the use of natural deep eutectic solvents (NaDESs), formed by combinations of natural compounds, such as organic acids, sugars, alcohols, and amino acids. This study optimized NaDES (sorbitol, citric acid, and glycine) efficiency and compared it to that of 70% methanol solution in extracting total soluble phenolic compounds (TSPCs) from six flours matrices-corn, buckwheat, biofortified orange sweet potato, red lentil, Sudan grass, and chickpea-before and after thermoplastic extrusion cooking. Quantification was performed using the Folin-Ciocalteu method, with statistical analysis at the 10% significance level. In general, the methanolic extracts showed higher TSPC levels in the raw materials, whereas the levels were higher in NaDESs for legumes. After extrusion, a reduction in the TSPC levels was observed, except in the sweet potato. Multivariate analysis (PLS-DA and heatmap) distinguished the raw and extruded samples, revealing structural and chemical changes from thermal processing. The AGREE scores were 0.7 (NaDES) and 0.54 (methanol), favoring NaDES. The BAGI score (75.0) confirmed the method's robustness and suitability for sustainable analytical applications.

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来源期刊
Methods and Protocols
Methods and Protocols Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
3.60
自引率
0.00%
发文量
85
审稿时长
8 weeks
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