Rangkadilok Nuchanart, Sitthimonchai Somkid, Worasuttayangkurn Luksamee, Mahidol Chulabhorn, Ruchirawat Mathuros, Satayavivad Jutamaad
Laboratory of Pharmacology, Chulabhorn Research Institute (CRI), 54 Moo 4, Vipavadee-Rangsit Highway, Laksi, Bangkok 10210, Thailand.
Food Chem Toxicol. 2007 Feb;45(2):328-36. doi: 10.1016/j.fct.2006.08.022. Epub 2006 Sep 12.
The protective effects of fruits and vegetables against chronic diseases have been attributed to the antioxidant properties of some secondary metabolites present in these foods. Plant polyphenols have been reported to exhibit bioactive properties, and in particular antioxidant activities. Longan seeds are found to contain high levels of some beneficial polyphenolic compounds such as corilagin, gallic acid and ellagic acid. The present study examined the free radical scavenging activity of longan seed extract by using three different assay methods. Longan extracts contained corilagin ranging from zero to 50.64 mg/g DW, gallic acid from 9.18 to 23.04 mg/g DW, and ellagic acid from 8.13 to 12.65 mg/g DW depending on the cultivars. Dried longan seed extracts of cultivar Edor contained high levels of gallic acid and ellagic acid and also exhibited the highest radical scavenging activities when comparing fresh seed and dried pulp extracts. For scavenging activity of DPPH and superoxide radicals, longan seed extract was found to be as effective as Japanese green tea extract while dried longan pulp and mulberry green tea extracts showed the least scavenging activities. In the ORAC assay, both fresh and dried longan seed also had higher activity than dried pulp and whole fruit. However, the results demonstrate that three polyphenolics may not be the major contributors of the high antioxidant activity of longan water extracts but this high activity may be due to other phenolic/flavonoid glycosides and ellagitannins present in longan fruit. In addition, longan seed also showed tyrosinase inhibitory activity with IC(50) values of 2.9-3.2 mg/ml. Therefore, the preliminary observations suggest that longan seed extract could be another potential source of potent natural dietary antioxidants and also in an application as a new natural skin-whitening agent.
水果和蔬菜对慢性病的保护作用归因于这些食物中存在的一些次生代谢产物的抗氧化特性。据报道,植物多酚具有生物活性特性,尤其是抗氧化活性。人们发现龙眼种子含有高水平的一些有益多酚化合物,如柯里拉京、没食子酸和鞣花酸。本研究采用三种不同的测定方法检测了龙眼种子提取物的自由基清除活性。根据品种不同,龙眼提取物中柯里拉京含量为0至50.64毫克/克干重,没食子酸含量为9.18至23.04毫克/克干重,鞣花酸含量为8.13至12.65毫克/克干重。品种Edor的龙眼干种子提取物含有高水平的没食子酸和鞣花酸,与新鲜种子和干果肉提取物相比,其自由基清除活性也最高。对于DPPH和超氧阴离子自由基的清除活性,发现龙眼种子提取物与日本绿茶提取物一样有效,而龙眼干果肉和桑椹绿茶提取物的清除活性最低。在氧自由基吸收能力(ORAC)测定中,新鲜和干燥的龙眼种子活性也高于干果肉和整个果实。然而,结果表明,三种多酚类物质可能不是龙眼水提取物高抗氧化活性的主要贡献者,但这种高活性可能归因于龙眼果实中存在的其他酚类/黄酮糖苷和鞣花单宁。此外,龙眼种子还表现出酪氨酸酶抑制活性,IC(50)值为2.9 - 3.2毫克/毫升。因此,初步观察结果表明,龙眼种子提取物可能是另一种潜在的强效天然膳食抗氧化剂来源,也可作为一种新型天然美白剂应用。