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评估CPME作为己烷的可持续低挥发性有机化合物替代品:使用计算和实验方法优化胡芦巴籽油的提取效率和生物活性化合物产量。

Assessment of CPME as Sustainable Low VOC Alternative to Hexane: Optimization of Extraction Efficiency and Bioactive Compound Yield from Fenugreek Seed Oil Using Computational and Experimental Methods.

作者信息

Ben Abdennebi Ameni, Chaabani Emna, Ben Jemaa Mariem, Hammami Majdi, Khammassi Saber, Nait Mohamed Salma, Aidi Wannes Wissem, Hamrouni Sellami Ibtissem, Fabiano Tixier Anne-Sylvie, Bettaieb Rebey Iness

机构信息

Laboratory of Aromatic and Medicinal Plants, Borj Cedria Biotechnology Center, BP 901, Hammam-Lif 2050, Tunisia.

Laboratory of Olive Biotechnology, Borj Cedria Biotechnology Center, BP 901, Hammam-Lif 2050, Tunisia.

出版信息

Foods. 2024 Dec 3;13(23):3899. doi: 10.3390/foods13233899.

Abstract

This study investigates the performance of cyclopentyl methyl ether (CPME) in the extraction of fenugreek seed oil, aiming to replace the conventionally used hexane. The efficiency of this alternative solvent was evaluated first through in silico methods (based on Hansen Solubility Parameters (HSPs) and Conductor-like Screening Model for Real Solvent (COSMO-RS) simulations), followed by experimental studies. Solubility computational predictions analysis revealed that CPME exhibits superior solvation power compared to hexane. Experimentally, CPME demonstrated a significantly higher oil yield (7.23%) compared to hexane (4.25%) and a better retention of beneficial unsaturated fatty acids than hexane. Additionally, the physicochemical properties of oils extracted with CPME showed enhanced oxidative stability, sterol, tocopherol, and phenolic contents, leading to superior antioxidant and antibacterial activities. Importantly, CPME's low volatile organic compound (VOC) emissions further establish it as a more sustainable and environmentally friendly alternative to hexane, aligning with contemporary goals of reducing harmful emissions in extraction processes. Thus, this paper highlights the functional advantages of CPME, focusing on its efficiency, selectivity, and enhanced retention of bioactive compounds, positioning it as a superior extraction solvent for fenugreek seed oil compared to hexane.

摘要

本研究考察了环戊基甲基醚(CPME)在胡芦巴籽油萃取中的性能,旨在替代传统使用的己烷。首先通过计算机模拟方法(基于 Hansen 溶解度参数(HSPs)和真实溶剂类导体屏蔽模型(COSMO-RS)模拟)评估了这种替代溶剂的效率,随后进行了实验研究。溶解度计算预测分析表明,与己烷相比,CPME 具有更强的溶剂化能力。实验表明,与己烷(4.25%)相比,CPME 的出油率显著更高(7.23%),并且比己烷更能有效保留有益的不饱和脂肪酸。此外,用 CPME 萃取的油的物理化学性质显示出更高的氧化稳定性、甾醇、生育酚和酚类含量,从而具有更好的抗氧化和抗菌活性。重要的是,CPME 的低挥发性有机化合物(VOC)排放进一步表明它是一种比己烷更具可持续性和环境友好性的替代品,符合减少萃取过程中有害排放的当代目标。因此,本文强调了 CPME 的功能优势,重点在于其效率、选择性以及对生物活性化合物的更好保留,表明它是一种比己烷更优越的胡芦巴籽油萃取溶剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e105/11640834/6e0f1f992394/foods-13-03899-g001.jpg

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