Fuentes Jhunior Abrahan Marcía, López-Salas Lucía, Borrás-Linares Isabel, Navarro-Alarcón Miguel, Segura-Carretero Antonio, Lozano-Sánchez Jesús
Faculty of Technological Sciences, Universidad Nacional de Agricultura, Catacamas, Olancho 16201, Honduras.
Faculty of Pharmacy and Food, University of Havana, La Lisa 17100, Havana, Cuba.
Foods. 2021 Feb 11;10(2):398. doi: 10.3390/foods10020398.
Nowadays there are evidences from several studies which have revealed the protective effects of food against chronic diseases. These healthy properties have been related to bioactive compounds. Among bioactive substances, the scientific interest in phenolic compounds has stimulated multidisciplinary research on the composition of plant phenolic compounds. The aim of this work has been to determine the bioactive composition of Carao tree seeds () and to optimize the recovering of these compounds for developing functional ingredients. To achieve this goal, pressurized liquid extraction (PLE) has been applied to recover these phytochemicals. The optimization of this innovative extraction procedure was performed by a response surface methodology (RSM) based on a central composite design 2 model to address the bioactive compounds extraction. Phenolic compounds recovered by PLE were characterized using reversed-phase high-performance liquid chromatography coupled to electrospray ionization time-of-flight mass spectrometry (HPLC-ESI-TOF-MS). Analytical characterization allowed the identification and quantitation of phenolic compounds belonging to hydroxybenzoic acids and flavonoids (flavonols, flavanols, flavanones and proanthocyanidins). Phytochemical concentrations were used as response variable in order to get the best extraction conditions. These results pointed out that Carao tree seeds can be a potential source of bioactive compounds and PLE extracts could be used as functional ingredients.
如今,多项研究的证据表明食物对慢性疾病具有保护作用。这些健康特性与生物活性化合物有关。在生物活性物质中,对酚类化合物的科学兴趣激发了对植物酚类化合物组成的多学科研究。这项工作的目的是确定卡拉奥树种子()的生物活性成分,并优化这些化合物的提取以开发功能性成分。为实现这一目标,采用了加压液体萃取(PLE)来回收这些植物化学物质。基于中心复合设计2模型的响应面方法(RSM)对这一创新提取工艺进行了优化,以解决生物活性化合物的提取问题。采用反相高效液相色谱-电喷雾电离飞行时间质谱联用(HPLC-ESI-TOF-MS)对PLE回收的酚类化合物进行表征。分析表征能够鉴定和定量属于羟基苯甲酸和黄酮类(黄酮醇、黄烷醇、黄烷酮和原花青素)的酚类化合物。以植物化学物质浓度作为响应变量,以获得最佳提取条件。这些结果表明,卡拉奥树种子可能是生物活性化合物的潜在来源,PLE提取物可作为功能性成分使用。