Coscarella Mario, Nardi Monica, Alipieva Kalina, Bonacci Sonia, Popova Milena, Procopio Antonio, Scarpelli Rosa, Simeonov Svilen
Department of Health Sciences, Università "Magna Græcia" di Catanzaro, Viale Europa, Campus Universitario "S. Venuta", Germaneto, 88100 Catanzaro, Italy.
Institute of Organic Chemistry with Centre of Phytochemistry, Bulgarian Academy of Sciences, Acad. G. Bontchev Str. Bl. 9, 1113 Sofia, Bulgaria.
Antioxidants (Basel). 2023 Dec 29;13(1):62. doi: 10.3390/antiox13010062.
A renewed understanding of eco-friendly principles is moving the industrial sector toward a shift in the utilization of less harmful solvents as a main strategy to improve manufacturing. Green analytical chemistry (GAC) has definitely paved the way for this transition by presenting green solvents to a larger audience. Among the most promising, surely DESs (deep eutectic solvents), NaDESs (natural deep eutectic solvents), HDESs (hydrophobic deep eutectic solvents), and HNaDESs (hydrophobic natural deep eutectic solvents), with their unique features, manifest a wide-range of applications, including their use as a means for the extraction of small bioactive compounds. In examining recent advancements, in this review, we want to focus our attention on some of the most interesting and novel 'solvent-free' extraction techniques, such as microwave-assisted extraction (MAE) and ultrasound-assisted extraction (UAE) in relation to the possibility of better exploiting DESs and NaDESs as plausible extracting solvents of the phenolic compounds (PCs) present in different matrices from olive oil components, such as virgin olive pomace, olive leaves and twigs, virgin and extra virgin olive oil (VOO and EVOO, respectively), and olive cake and olive mill wastewaters (OMWW). Therefore, the status of DESs and NaDESs is shown in terms of their nature, efficacy and selectivity in the extraction of bioactive phytochemicals such as secoiridoids, lignans, phenolic acids and alcohols. Related studies on experimental design and processes' optimization of the most promising DESs/NaDESs are also reviewed. In this framework, an extensive list of relevant works found in the literature is described to consider DESs/NaDESs as a suitable alternative to petrochemicals in cosmetics, pharmaceutical, or food applications.
对环保原则的重新认识正在推动工业部门转向使用危害较小的溶剂,以此作为改善制造业的主要策略。绿色分析化学(GAC)通过向更广泛的受众介绍绿色溶剂,无疑为这一转变铺平了道路。在最有前景的溶剂中,深共熔溶剂(DESs)、天然深共熔溶剂(NaDESs)、疏水深共熔溶剂(HDESs)和疏水天然深共熔溶剂(HNaDESs)凭借其独特特性展现出广泛的应用,包括用作提取小生物活性化合物的手段。在审视近期进展时,在本综述中,我们希望将注意力集中在一些最有趣和新颖的“无溶剂”提取技术上,比如微波辅助提取(MAE)和超声辅助提取(UAE),探讨能否更好地利用DESs和NaDESs作为从不同基质(如橄榄油成分,如初榨橄榄果渣、橄榄叶和嫩枝、初榨橄榄油和特级初榨橄榄油(分别为VOO和EVOO)、橄榄饼和橄榄榨油废水(OMWW))中提取酚类化合物(PCs)的可行提取溶剂。因此,展示了DESs和NaDESs在提取生物活性植物化学物质(如裂环烯醚萜类、木脂素、酚酸和醇类)方面的性质、功效和选择性。还综述了关于最有前景的DESs/NaDESs的实验设计和工艺优化的相关研究。在此框架下,描述了文献中发现的大量相关研究,以将DESs/NaDESs视为化妆品、制药或食品应用中石化产品的合适替代品。