Muramatsu Daisuke, Uchiyama Hirofumi, Kida Hiroshi, Iwai Atsushi
Aureo Science Co., Ltd., Hokudai Business Spring, North 21, West 12, Kita-ku, Sapporo, Hokkaido, 001-0021, Japan.
Aureo Co., Ltd., 54-1 Kazusakoito, Kimitsu, Chiba, 292-1149, Japan.
Heliyon. 2019 Jul 13;5(7):e02047. doi: 10.1016/j.heliyon.2019.e02047. eCollection 2019 Jul.
The larches, the genus of plants are known as a natural source of taxifolin (dihydroquercetin), and extracts of its taxifolin rich xylem are used in dietary supplements to maintain health. In the present study, to assess biological activities of a methanol extract of the Japanese larch, (LK-ME), the effects of LK-ME on cell viability, inflammatory cytokine expression, and glycation were investigated. The effects of taxifolin which is known to be a main compound of LK-ME, and its related flavonoids, quercetin and luteolin were also examined. The results show that taxifolin exhibits lower growth inhibition activity and lesser induction activity of inflammatory cytokines in a human monocyte derived cell line, THP-1 cells, while in vitro anti-glycation activities of taxifolin were inhibiting at comparable levels to those of quercetin and luteolin. The growth inhibition and the cytokine induction activities, and the anti-glycation effects of LK-ME are assumed to have properties similar to taxifolin. The results of high performance liquid chromatography (HPLC) analysis indicated that taxifolin was detected as the main peak of LK-ME at the absorbance of 280 nm, and the concentration of taxifolin was measured as 3.12 mg/ml. The actual concentration of taxifolin in LK-ME is lower than the concentration estimated from the IC values calculated by the results of glycation assays, suggesting that other compounds contained in LK-ME are involved in the anti-glycation activity.
落叶松属植物是已知的天然花旗松素(二氢槲皮素)来源,其富含花旗松素的木质部提取物被用于膳食补充剂以维持健康。在本研究中,为了评估日本落叶松甲醇提取物(LK-ME)的生物活性,研究了LK-ME对细胞活力、炎性细胞因子表达和糖基化的影响。还检测了已知为LK-ME主要成分的花旗松素及其相关黄酮类化合物槲皮素和木犀草素的作用。结果表明,在人单核细胞衍生细胞系THP-1细胞中,花旗松素表现出较低的生长抑制活性和炎性细胞因子诱导活性,而花旗松素的体外抗糖基化活性与槲皮素和木犀草素的抑制水平相当。推测LK-ME的生长抑制和细胞因子诱导活性以及抗糖基化作用具有与花旗松素相似的特性。高效液相色谱(HPLC)分析结果表明,在280nm吸光度下,花旗松素被检测为LK-ME的主峰,花旗松素浓度测定为3.12mg/ml。LK-ME中花旗松素的实际浓度低于根据糖基化试验结果计算的IC值估计的浓度,这表明LK-ME中含有的其他化合物参与了抗糖基化活性。