Vieira Carolina, Rebocho Sílvia, Craveiro Rita, Paiva Alexandre, Duarte Ana Rita C
LAQV@REQUIMTE, Departamento de Química, NOVA School of Science and Technology, Universidade NOVA de Lisboa, Caparica, Portugal.
Front Chem. 2022 Aug 12;10:954835. doi: 10.3389/fchem.2022.954835. eCollection 2022.
Rosemary () is a natural source of bioactive compounds that have high antioxidant activity. It has been in use as a medicinal herb since ancient times, and it currently is in widespread use due to its inherent pharmacological and therapeutic potential, in the pharmaceutical, food, and cosmetic industries. Natural deep eutectic systems (NADESs) have recently been considered as suitable extraction solvents for bioactive compounds, with high solvent power, low toxicity, biodegradability, and low environmental impact. The present work concerns the extraction of compounds such as rosmarinic acid, carnosol, carnosic acid, and caffeic acid, from rosemary using NADESs. This extraction was carried out using heat and stirring (HS) and ultrasound-assisted extraction (UAE). A NADES composed of menthol and lauric acid at a molar ratio of 2:1 (Me:Lau) extracted carnosic acid and carnosol preferentially, showing that this NADES exhibits selectivity for nonpolar compounds. On the other hand, a system of lactic acid and glucose (LA:Glu (5:1)) extracted preferentially rosmaniric acid, which is a more polar compound. Taking advantage of the different polarities of these NADESs, a simultaneous extraction was carried out, where the two NADESs form a biphasic system. The system LA:Glu (5:1)/Men:Lau (2:1) presented the most promising results, reaching 1.00 ± 0.12 mg of rosmarinic acid/g rosemary and 0.26 ± 0.04 mg caffeic acid/g rosemary in the more polar phase and 2.30 ± 0.18 mg of carnosol/g of rosemary and 17.54 ± 1.88 mg carnosic acid/g rosemary in the nonpolar phase. This work reveals that is possible to use two different systems at the same time and extract different compounds in a single-step process under the same conditions. NADESs are also reported to stabilize bioactive compounds, due to their interactions established with NADES components. To determine the stability of the extracts over time, the compounds of interest were quantified by HPLC at different time points. This allows the conclusion that bioactive compounds from rosemary were stable in NADESs for long periods of time; in particular, carnosic acid presented a decrease of only 25% in its antioxidant activity after 3 months, whereas the carnosic acid extracted and kept in the methanol was no longer detected after 15 days. The stabilizing ability of NADESs to extract phenolic/bioactive compounds shows a great promise for future industrial applications.
迷迭香是生物活性化合物的天然来源,具有高抗氧化活性。自古以来,它就被用作草药,由于其内在的药理和治疗潜力,目前在制药、食品和化妆品行业中广泛使用。天然深共熔体系(NADESs)最近被认为是生物活性化合物的合适提取溶剂,具有高溶剂能力、低毒性、生物降解性和低环境影响。目前的工作涉及使用NADESs从迷迭香中提取迷迭香酸、鼠尾草酸、鼠尾草酚和咖啡酸等化合物。该提取过程采用加热搅拌(HS)和超声辅助提取(UAE)。由薄荷醇和月桂酸以2:1的摩尔比组成的NADES(Me:Lau)优先提取鼠尾草酚和鼠尾草酸,表明该NADES对非极性化合物具有选择性。另一方面,乳酸和葡萄糖体系(LA:Glu(5:1))优先提取极性更强的迷迭香酸。利用这些NADESs的不同极性,进行了同时提取,其中两种NADESs形成双相体系。LA:Glu(5:1)/Men:Lau(2:1)体系呈现出最有前景的结果,在极性更强的相中,迷迭香酸达到1.00±0.12mg/g迷迭香,咖啡酸达到0.26±0.04mg/g迷迭香;在非极性相中,鼠尾草酚达到2.30±0.18mg/g迷迭香,鼠尾草酸达到17.54±1.88mg/g迷迭香。这项工作表明,在相同条件下,可以同时使用两种不同的体系,在一步过程中提取不同的化合物。据报道,由于NADESs与NADES成分之间的相互作用,它们还能稳定生物活性化合物。为了确定提取物随时间的稳定性,在不同时间点通过高效液相色谱法对目标化合物进行了定量。由此可以得出结论,迷迭香中的生物活性化合物在NADESs中长时间稳定;特别是,鼠尾草酸在3个月后其抗氧化活性仅下降了25%,而用甲醇提取并保存的鼠尾草酸在15天后就不再被检测到。NADESs对酚类/生物活性化合物的稳定提取能力在未来工业应用中显示出巨大的前景。