Hamasaki Takeki, Kashiwagi Taichi, Komatsu Takaaki, Kabayama Shigeru, Nakamichi Noboru, Teruya Kiichiro, Shirahata Sanetaka
Department of Genetic Resources Technology, Faculty of Agriculture, Kyushu University, 744, Motooka, Nishi-ku, Fukuoka, 819-0395, Japan.
Department of Histology and Neuroanatomy, Tokyo Medical University, 6-1-1, Shinjuku, Shinjuku-ku, 160-8402, Japan.
MethodsX. 2022 Jul 28;9:101797. doi: 10.1016/j.mex.2022.101797. eCollection 2022.
We describe here a novel assay that determines the total a+ntioxidative activities of known antioxidants and antioxidants in beverages. The method employs the substrate 3,5-dibromo-4-nitrosobenzene sulfonate (DBNBS) that yields the colored product 3,5,3',5'-tetrabromoazobenzene sulfate sodium salt (azo-TBBS). The amounts of azo-TBBS are measured using HPLC and then used to calculate total antioxidative capacity (TAC) values. We first show that the TAC values measured using the new DBNBS system were significantly higher compared with the control. The assay was validated through further analysis of 56 compounds, including previously characterized antioxidants. The data are consistent with published values. Here we describe in detail the application of the DBNBS method to the measurement of the TAC values of eight beverages, including wines and fruit juices. The DBNBS assay employs a readily applicable protocol that sensitively determines the levels of antioxidants in foodstuffs. - A new DBNBS-mediated antioxidant assay system is compared with standard DPPH and ORAC assays - DBNBS traps hydrogen radicals to generate a readily measured colored reduction product that quantifies antioxidant levels.
我们在此描述一种新型检测方法,该方法可测定已知抗氧化剂以及饮料中抗氧化剂的总抗氧化活性。该方法采用底物3,5 - 二溴 - 4 - 亚硝基苯磺酸盐(DBNBS),其可生成有色产物3,5,3',5'-四溴偶氮苯磺酸钠盐(偶氮 - TBBS)。使用高效液相色谱法(HPLC)测定偶氮 - TBBS的量,然后用于计算总抗氧化能力(TAC)值。我们首先表明,与对照相比,使用新的DBNBS系统测得的TAC值显著更高。通过对56种化合物(包括先前已表征的抗氧化剂)进行进一步分析,验证了该检测方法。数据与已发表的值一致。在此,我们详细描述了DBNBS方法在测量包括葡萄酒和果汁在内的八种饮料的TAC值中的应用。DBNBS检测方法采用易于应用的方案,可灵敏地测定食品中抗氧化剂的水平。 - 将一种新的DBNBS介导的抗氧化检测系统与标准的DPPH和ORAC检测方法进行比较 - DBNBS捕获氢自由基以生成易于测量的有色还原产物,从而对抗氧化剂水平进行定量。