Food Engineering Department, La Serena University, Av. Raúl, Bitrán Nachary 1305, La Serena, Chile; CEAZA, Advanced Studies Center in Arid Zones, Av. Raúl Bitrán Nachary, 1305 La Serena, Chile.
Food Engineering Department, La Serena University, Av. Raúl, Bitrán Nachary 1305, La Serena, Chile.
Food Chem. 2019 Apr 25;278:751-759. doi: 10.1016/j.foodchem.2018.11.106. Epub 2018 Nov 22.
Tomato pulp is a useful source of antioxidants, which can be extracted by high hydrostatic pressure (HHPE). This study aimed to optimize the individual and interactive effect of operating high pressure and solvent polarity (solvent mixture) on yield extraction, flavonoid and lycopene content from tomato pulp (Solanum lycopersicum) by using response surface methodology (RSM). The results showed that the selected factors (high pressure and solvent mixture) have a significant influence on extraction yield, flavonoid and lycopene content. Extraction at 450 MPa and 60% hexane concentration in the solvent mixture was considered the optimal HHPE condition since it provided the maximum extraction yield (8.71%), flavonoid (21.52 ± 0.09 mg QE/g FW) and lycopene content (2.01 ± 0.09 mg QE/100 g FW). Therefore, HHPE could be a useful tool improve the extraction and release of potentially health-related compounds while providing information on the cumulative effect of solvent polarity and high-pressure extraction on antioxidant compounds of fruits.
番茄浆是一种有用的抗氧化剂来源,可以通过高静压(HHPE)提取。本研究旨在通过响应面法(RSM)优化操作高压和溶剂极性(溶剂混合物)对番茄浆(Solanum lycopersicum)的提取产率、类黄酮和番茄红素含量的单独和交互作用。结果表明,所选因素(高压和溶剂混合物)对提取产率、类黄酮和番茄红素含量有显著影响。在溶剂混合物中以 450 MPa 和 60%己烷浓度进行提取被认为是 HHPE 的最佳条件,因为它提供了最大的提取产率(8.71%)、类黄酮(21.52±0.09 mg QE/g FW)和番茄红素含量(2.01±0.09 mg QE/100 g FW)。因此,HHPE 可以成为一种有用的工具,在提供有关溶剂极性和高压提取对水果中抗氧化化合物累积效应的信息的同时,提高与健康相关的潜在化合物的提取和释放。