Artilha-Mesquita Carla Adriana Ferrari, Stafussa Ana Paula, Santos Patrícia Daniele Silva Dos, Santos Oscar de Oliveira, da Costa Silvio Claudio, Madrona Grasiele Scaramal
Postgraduate Program in Food Science, Universidade Estadual de Maringá, Avenida Colombo 5790-Zona 7, Maringá 87020-900, PR, Brazil.
Chemistry Department, State Universidade Estadual de Maringá, Avenida Colombo 5790-Zona 7, Maringá 87020-900, PR, Brazil.
Plants (Basel). 2024 Jul 26;13(15):2065. doi: 10.3390/plants13152065.
This work demonstrates the effectiveness of using alternative solvents to obtain jambolan extracts with a high content of bioactive compounds compared to conventional organic solvents, being the first study to evaluate the best ecological solvent alternative for (L.) Skeels. Five alternative solvents were used for extraction: water at 25 °C (W25), water at 50 °C (W50), water at 75 °C (W75), water with citric acid at 2.4% (CA2), and water with citric acid at 9.6% (CA9) in comparison with three conventional solvents: ethanol (EtOH), water with ethanol at 50% (WE), and water with methanol at 50% (WM). A protocol was then established for the extraction and concentration of samples obtained with these solvents. The highest content of total phenolic compounds (TPCs) in the extracts was obtained with the solvent W75 (1347.27 mg GAE/100 g), while in the concentrates it was the solvents EtOH (3823.03 mg GAE/100 g) and WM (4019.39 mg GAE/100 g). Total monomeric anthocyanins (TMAs) increased by 209.31% and 179.95% in extractions with CA2 and CA9, respectively, compared to pulp (35.57 mg eq c-3-g/100 g), demonstrating that they are the most efficient alternative solvents in this extraction. The levels of bioactive compounds and antioxidant activity varied according to the solvents used. Delphinidin 3,5-diglucoside, cyanidin 3,5-diglucoside, delphinidin 3-glucoside, petunidin 3,5-diglucoside, cyanidin 3-glucoside, peonidin 3,5-diglucoside, malvidin 3,5-diglucoside, petunidin 3-glucoside, and malvidin 3-glucoside were identified in most of the samples by UPLC-MS/MS. This study suggests that a simple procedure using alternative solvents can be used as an environmentally friendly strategy to achieve efficient extraction of bioactive compounds in jambolan.
这项研究表明,与传统有机溶剂相比,使用替代溶剂来获取富含生物活性化合物的蒲桃提取物是有效的,这是第一项评估用于蒲桃(L.)Skeels的最佳生态溶剂替代品的研究。使用了五种替代溶剂进行提取:25℃的水(W25)、50℃的水(W50)、75℃的水(W75)、含2.4%柠檬酸的水(CA2)和含9.6%柠檬酸的水(CA9),并与三种传统溶剂进行比较:乙醇(EtOH)、含50%乙醇的水(WE)和含50%甲醇的水(WM)。然后建立了一个用于提取和浓缩用这些溶剂获得的样品的方案。提取物中总酚化合物(TPCs)含量最高的是溶剂W75(1347.27毫克没食子酸当量/100克),而在浓缩物中,是溶剂EtOH(3823.03毫克没食子酸当量/100克)和WM(4019.39毫克没食子酸当量/100克)。与果肉(35.57毫克当量c - 3 - g/100克)相比,用CA2和CA9提取时,总单体花青素(TMAs)分别增加了209.31%和179.95%,表明它们是这种提取中最有效的替代溶剂。生物活性化合物的水平和抗氧化活性因所用溶剂而异。通过超高效液相色谱 - 串联质谱法(UPLC - MS/MS)在大多数样品中鉴定出了矢车菊素3,5 - 二葡萄糖苷、花青素3,5 - 二葡萄糖苷、矢车菊素3 - 葡萄糖苷、矮牵牛素3,5 - 二葡萄糖苷、花青素3 - 葡萄糖苷、芍药素3,5 - 二葡萄糖苷、锦葵素3,5 - 二葡萄糖苷、矮牵牛素3 - 葡萄糖苷和锦葵素3 - 葡萄糖苷。这项研究表明,使用替代溶剂的简单程序可作为一种环境友好的策略,以实现蒲桃中生物活性化合物的高效提取。