Rodríguez-Sánchez Dariana Graciela, Marín-Obispo Luis Martín, Velázquez-Garza Francisco Eduardo, Garza-Aguilar Sara Margarita, Gonzalez Viejo Claudia, Fuentes Sigfredo, Colin-Oviedo Álvaro, Díaz de la Garza Rocío I, Hernández-Brenes Carmen
Escuela de Ingenieria y Ciencias, Tecnologico de Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey, Nuevo Leon 64849, Mexico.
Institute for Obesity Research, Tecnologico de Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey, Nuevo Leon 64849, Mexico.
J Agric Food Chem. 2025 Jan 15;73(2):1529-1541. doi: 10.1021/acs.jafc.4c06815. Epub 2025 Jan 1.
Fatty acid (FA), tocopherol, and phytosterol profiles are used in avocado oil purity standards. However, blends with other oils can mimic the profile of pure avocado oil, resulting in similar ranges for these molecules. Therefore, fatty alcohol esters (FAEs) uniquely of spp. were assessed as complementary markers in the chemical profile of pure avocado oil. Utilizing HPLC-TOF-MS and UPLC-MS/MS for identification and HPLC-DAD-ELSD for quantification, major FAEs were analyzed in nine cultivars. Major FAEs included Persin (20-48%), AcO-avocadyne (11-44%), Persenone A (12-30%), and AcO-avocadene (3-24%). Metabolic balance between the main FAs (C18:1n-9, C16:0, C16:1n-9, and C18:2n-6), vaccenic (C18:1n-7), two C17-FAs, and low levels of C18:3n-3 and stearic acid marked the pattern. Relationships between avocado FAs and FAEs were assessed, reinforcing the relevance of both metabolite groups to the fingerprinting of avocado oil and as novel composition biomarkers.
脂肪酸(FA)、生育酚和植物甾醇谱被用于鳄梨油纯度标准中。然而,与其他油类的混合油可能会模仿纯鳄梨油的谱图,导致这些分子的含量范围相似。因此,评估了鳄梨属植物特有的脂肪醇酯(FAEs)作为纯鳄梨油化学谱图中的补充标志物。利用HPLC-TOF-MS和UPLC-MS/MS进行鉴定,HPLC-DAD-ELSD进行定量,分析了9个品种中的主要FAEs。主要的FAEs包括鳄梨素(20-48%)、乙酰氧基鳄梨碱(11-44%)、鳄梨素A(12-30%)和乙酰氧基鳄梨烯(3-24%)。主要脂肪酸(C18:1n-9、C16:0、C16:1n-9和C18:2n-6)、反式vaccenic酸(C18:1n-7)、两种C17脂肪酸以及低水平的C18:3n-3和硬脂酸之间的代谢平衡构成了该模式。评估了鳄梨脂肪酸和脂肪醇酯之间关系,强化了这两类代谢物在鳄梨油指纹图谱以及作为新型成分生物标志物方面的相关性。