Ajisaka Katsumi, Agawa Sayuri, Nagumo Satomi, Kurato Keisuke, Yokoyama Tatsuya, Arai Kumiko, Miyazaki Tatsuo
Department of Food Science, Niigata University of Pharmacy and Applied Life Sciences, Akiha-ku, Niigata 956-8603, Japan.
J Agric Food Chem. 2009 Apr 22;57(8):3102-7. doi: 10.1021/jf804020u.
A detailed analysis of the antioxidative activity of 12 carbohydrates including chondroitin sulfate, fucoidan, agaro-oligosaccharide, 2-deoxy-scyllo-inosose (DOI), Galbeta1-4DOI, D-glucuronic acid, chitobiose, D-mannosamine, D-galactosamine, D-glucosamine, heparin, and colominic acid was performed using four established methods: 2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging assay, ferric reducing antioxidant power (FRAP) assay, superoxide dismutase (SOD) activity assay, and the deoxyribose method. Ascorbic acid and/or catechin were used as positive standards. In the DPPH radical scavenging activity measurements, fucoidan, DOI, and Galbeta1-4DOI showed remarkable levels of activity, although at lower levels than ascorbic acid. The SOD assay revealed that DOI, Galbeta1-4DOI, and agaro-oligosaccharide had high antioxidant activity, with DOI and Galbeta1-4DOI notably showing almost half of the antioxidative potency of ascorbic acid. Using the deoxyribose method, chitobiose and heparin showed the highest hydroxyl radical scavenging activity, followed by chondroitin sulfate, colominic acid, Galbeta1-4DOI, and d-glucosamine. Given that 11 of the carbohydrates analyzed share a common structure, agaro-oligosaccharide being the exception, we propose from our current results that at least one amino, carboxyl, carbonyl, or sulfonyl group is required, but is not in itself sufficient, for carbohydrates to function as antioxidants.
使用四种既定方法对12种碳水化合物的抗氧化活性进行了详细分析,这些碳水化合物包括硫酸软骨素、岩藻依聚糖、琼脂寡糖、2-脱氧-scyllo-肌醇(DOI)、Galβ1-4DOI、D-葡萄糖醛酸、壳二糖、D-甘露糖胺、D-半乳糖胺、D-葡萄糖胺、肝素和结肠菌素。抗坏血酸和/或儿茶素用作阳性对照。在DPPH自由基清除活性测量中,岩藻依聚糖、DOI和Galβ1-4DOI表现出显著的活性水平,尽管低于抗坏血酸。超氧化物歧化酶(SOD)测定表明,DOI、Galβ1-4DOI和琼脂寡糖具有较高的抗氧化活性,其中DOI和Galβ1-4DOI的抗氧化能力明显接近抗坏血酸的一半。使用脱氧核糖法,壳二糖和肝素表现出最高的羟基自由基清除活性,其次是硫酸软骨素、结肠菌素、Galβ1-4DOI和D-葡萄糖胺。鉴于所分析的12种碳水化合物中有11种具有共同结构,琼脂寡糖除外,我们从目前的结果中提出,碳水化合物要发挥抗氧化剂的作用,至少需要一个氨基、羧基、羰基或磺酰基,但仅有这些基团本身是不够的。