Department of Applied Chemistry-Physics. Faculty of Science, University Autónoma of Madrid , Madrid , Spain.
Department of Plant Biology (Plant Physiology), Faculty of Biology, University of Murcia , Murcia , Spain.
Prep Biochem Biotechnol. 2019;49(10):1033-1039. doi: 10.1080/10826068.2019.1650378. Epub 2019 Aug 13.
In many occasions it is necessary to use fast and simple methods, different to the chromatographic techniques, for the quantification of biomolecules such as flavonoids. Also, the flavonoid levels in some foodstuffs can be influenced by industrial extraction processes such as pressing and squeezing, resulting in modification of their functional value. For this purpose, we have developed a rapid method to analyze flavonoids, based on a coupling reaction between ABTS and flavonoid mediated by peroxidase. The present method can be used to detect and measure flavonoids with hydroxyl moieties on A- or B-rings, not adjacent to methoxy or oxo substitutions. The visible spectrum of the ABTS-flavonoid complex, the calibration curve (within the range 5-50 μM) and the molar absorption coefficients for isosakuranetin, isonaringin, rhoifolin, hyperoside, rutin, hesperetin, quercetin, kaempherol and naringenin are given. The method has been applied to complex culture media and is sensitive, accurate, quick and easy to apply. This method can be used in laboratories that do not have sophisticated and expensive techniques such as liquid chromatography and also as a quick, simple and inexpensive technique for student practice laboratories.
在许多情况下,需要使用不同于色谱技术的快速简单方法来定量分析生物分子,如类黄酮。此外,一些食品中的类黄酮水平可能会受到工业提取工艺(如压榨)的影响,从而改变其功能价值。为此,我们开发了一种基于 ABTS 与类黄酮在过氧化物酶介导下的偶联反应来分析类黄酮的快速方法。本方法可用于检测和测量 A 或 B 环上带有羟基、不与甲氧基或氧取代相邻的类黄酮。给出了 ABTS-类黄酮复合物的可见光谱、校准曲线(5-50 μM 范围内)和异槲皮素、异柚皮苷、圣草酚、杨梅素、芦丁、橙皮苷、槲皮素、山奈酚和柚皮苷的摩尔吸光系数。该方法已应用于复杂的培养基中,具有灵敏度高、准确性好、快速简便的特点。该方法可用于不具备液相色谱等复杂昂贵技术的实验室,也可作为学生实践实验室的快速、简单、廉价的技术。