Figueroa Juan David, Barroso-Torres Noreima, Morales Marcela, Herrera Bárbara, Aranda Mario, Dorta Eva, López-Alarcón Camilo
Departamento de Química Física, Escuela de Química, Facultad de Química y de Farmacia, Pontificia Universidad Católica de Chile, Santiago 7820436, Chile.
Departamento de Producción Vegetal, Instituto Canario de Investigaciones Agrarias (ICIA), 38270 San Cristóbal de la Laguna, Spain.
Foods. 2023 Dec 2;12(23):4360. doi: 10.3390/foods12234360.
The ORAC (Oxygen Radical Absorbance Capacity) assay is commonly employed for determining the antioxidant capacity of bioactive peptides. To gain insights into the meaning of this index for peptides containing a single Trp, we studied the consumption of this residue and fluorescein (FLH, the probe of ORAC method), induced by radicals generated by AAPH (2,2'-Azo-bis(2-amidinopropane) dihydrochloride) thermolysis. ORAC values were rationalized from kinetics and computational calculations of bond dissociation energies (BDE) of the N-H bond (indole ring of Trp). Free Trp, di- and tri- peptides, and three larger peptides were studied. Solutions containing 70 nM FLH, 1-5 μM free Trp or peptides, and 10 mM AAPH were incubated at 37 °C in phosphate buffer. Kinetic studies showed that FLH minimally affected Trp consumption. However, a clear protection of FLH, characterized by pseudo-lag times, was evidenced, reflecting radical-radical reactions and FLH repairing. Peptides showed similar ORAC values (~1.9-2.8 Trolox equivalents), while BDE varied between 91.9 and 103.5 kcal. These results, added to the protection of FLH observed after total consumption of Trp, indicate a lack of discrimination of the assay for the chemical structure of peptides and the contribution of oxidation products to the index.
氧自由基吸收能力(ORAC)测定法通常用于测定生物活性肽的抗氧化能力。为了深入了解该指标对于含单个色氨酸的肽的意义,我们研究了由2,2'-偶氮二异丁脒二盐酸盐(AAPH)热解产生的自由基诱导的该残基和荧光素(FLH,ORAC方法的探针)的消耗情况。通过对色氨酸N-H键(吲哚环)的键解离能(BDE)进行动力学和计算计算,对ORAC值进行了合理化分析。研究了游离色氨酸、二肽和三肽以及三种较大的肽。将含有70 nM FLH、1-5 μM游离色氨酸或肽以及10 mM AAPH的溶液在37°C下于磷酸盐缓冲液中孵育。动力学研究表明,FLH对色氨酸消耗的影响最小。然而,以假滞后时间为特征的FLH的明显保护作用得到了证实,这反映了自由基-自由基反应和FLH修复。肽显示出相似的ORAC值(约1.9-2.8 Trolox当量),而BDE在91.9至103.5千卡之间变化。这些结果,加上色氨酸完全消耗后观察到的FLH保护作用,表明该测定法对肽的化学结构缺乏区分能力,且氧化产物对该指标有贡献。