Department of Chemistry and Physics, University of Arkansas, Pine Bluff, AR 71601, USA.
J Agric Food Chem. 2010 Jul 28;58(14):8139-44. doi: 10.1021/jf1005935.
A thorough study was done to test the reactivity of the Folin-Ciocalteu (F-C) reagent toward various compound classes. Over 80 compounds were tested. Compound classes included phenols, thiols, vitamins, amino acids, proteins, nucleotide bases, unsaturated fatty acids, carbohydrates, organic acids, inorganic ions, metal complexes, aldehydes, and ketones. All phenols, proteins, and thiols tested were reactive toward the reagent. Many vitamin derivatives were also reactive, as were the inorganic ions Fe(+2), Mn(2+), I(-), and SO(3)(2-). Other compounds showing reactivity included the nucleotide base guanine and the trioses glyceraldehyde and dihydroxyacetone. Copper complexation enhanced the reactivity of salicylate derivatives toward the reagent, whereas zinc complexation did not. Several amino acids and sugars that were reported to be reactive toward the F-C reagent in earlier studies were found not to be reactive in this study, at least in the concentrations used. Reaction kinetics of each compound with the F-C reagent were also measured. Most compounds tested showed a biphasic kinetic pattern with half-lives under 1 min. Trolox and ascorbic acid displayed a rapid monophasic pattern in which the reaction reached end point within 1 min. In summary, this study has shown that the F-C reagent is significantly reactive toward other compounds besides phenols. As other investigators have suggested, the F-C assay should be seen as a measure of total antioxidant capacity rather than phenolic content. Because phenolics are the most abundant antioxidants in most plants, it gives a rough approximation of total phenolic content in most cases.
进行了一项彻底的研究,以测试 Folin-Ciocalteu(F-C)试剂对各种化合物类别的反应性。测试了 80 多种化合物。化合物类别包括酚类、硫醇类、维生素、氨基酸、蛋白质、核苷酸碱基、不饱和脂肪酸、碳水化合物、有机酸、无机离子、金属配合物、醛类和酮类。所有测试的酚类、蛋白质和硫醇均与试剂反应。许多维生素衍生物也是反应性的,无机离子 Fe(+2)、Mn(2+)、I(-)和 SO(3)(2-)也是如此。其他显示反应性的化合物包括核苷酸碱基鸟嘌呤和三糖甘油醛和二羟丙酮。铜配合物增强了水杨酸衍生物对试剂的反应性,而锌配合物则没有。在早期研究中报道对 F-C 试剂有反应性的几种氨基酸和糖在本研究中并未发现有反应性,至少在使用的浓度下没有反应性。还测量了每种化合物与 F-C 试剂的反应动力学。测试的大多数化合物均表现出双相动力学模式,半衰期在 1 分钟以下。Trolox 和抗坏血酸显示出快速单相模式,其中反应在 1 分钟内达到终点。总之,这项研究表明 F-C 试剂除了酚类化合物外,对其他化合物也具有明显的反应性。正如其他研究人员所建议的,F-C 测定法应被视为总抗氧化能力的衡量标准,而不是酚类含量的衡量标准。由于酚类是大多数植物中最丰富的抗氧化剂,因此在大多数情况下,它可以粗略估计总酚类含量。