Lee Sullim, Lee Da-Hye, Kim Jin-Chul, Um Byung Hun, Sung Sang Hyun, Jeong Lak Shin, Kim Yong Kee, Kim Su-Nam
Natural Products Research Institute, Korea Institute of Science and Technology, Gangneung 25451, Republic of Korea.
Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 08826, Republic of Korea.
Biochem Biophys Res Commun. 2017 Nov 4;493(1):765-772. doi: 10.1016/j.bbrc.2017.08.106. Epub 2017 Aug 26.
Pectolinarin and pectolinarigenin have been reported to be major compounds in Cirsium setidens. In the present study, we demonstrated inhibitory effects of pectolinarin and pectolinarigenin from C. setidens on melanogenesis. Melanin synthesis was decreased in both pectolinarin- and pectolinarigenin-treated melan-a cells and in a reconstructed human skin model. However, pectolinarigenin treatment showed more potent inhibitory activity of melanin synthesis than did pectolinarin treatment. The concentrations of pectolinarin and pectolinarigenin in C. setidens water extracts were determined by HPLC. Unfortunately, the amount of pectolinarigenin of C. setidens water extract was lower than that of pectolinarin. To increase the pectolinarigenin content in C. setidens water extract, several component conversion methods were studied. Consequently, we identified that microwave irradiation under 1% acetic acid was an optimum sugar elimination method.
据报道,朝鲜蓟素和朝鲜蓟黄素是大蓟(Cirsium setidens)中的主要化合物。在本研究中,我们证明了大蓟中的朝鲜蓟素和朝鲜蓟黄素对黑色素生成具有抑制作用。在朝鲜蓟素和朝鲜蓟黄素处理的黑素-a细胞以及重建的人类皮肤模型中,黑色素合成均减少。然而,与朝鲜蓟素处理相比,朝鲜蓟黄素处理对黑色素合成显示出更强的抑制活性。通过高效液相色谱法测定了大蓟水提取物中朝鲜蓟素和朝鲜蓟黄素的含量。遗憾的是,大蓟水提取物中朝鲜蓟黄素的含量低于朝鲜蓟素。为了提高大蓟水提取物中朝鲜蓟黄素的含量,研究了几种成分转化方法。结果,我们确定在1%乙酸条件下微波辐照是一种最佳的脱糖方法。