College of Pharmacy, Drug Research and Development Center, Daegu Catholic University, Gyeongbuk, 38430, Republic of Korea.
School of Pharmacy, Sungkyunkwan University, Suwon, 16419, Republic of Korea; Department of Biopharmaceutical Convergence, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Phytochemistry. 2022 May;197:113100. doi: 10.1016/j.phytochem.2022.113100. Epub 2022 Feb 7.
In this study, we present the first investigation of Hedera rhombea Bean fruit, which led to the isolation of six undescribed compounds including two megastigmane glucosides, two rare 1,4-dioxane neolignanes, and two quinic acid derivatives, together with 26 known compounds. Their structures and absolute configurations were elucidated by extensive analysis of NMR spectroscopic data, HRMS, and ECD calculations. This is the first report on the isolation of methyl 3-O-caffeoyl-5-O-p-coumaroylquinate from a natural source. Among the isolated compounds, falcarindiol and caffeoyltryptophan showed significant PTP1B inhibition with IC values of 7.32 and 16.99 μM, respectively, compared to those of the positive controls [sodium orthovanadate (IC = 17.96 μM) and ursolic acid (IC = 4.53 μM)]. These two compounds along with several other compounds displayed significant α-glucosidase inhibitions with IC values ranging from 12.88 to 91.89 μM, stronger than that of the positive control (acarbose, IC = 298.07 μM). Enzyme kinetic analysis indicated that caffeoyltryptophan and falcarindiol displayed competitive and mixed-type PTP1B inhibition, respectively, whereas the α-glucosidase inhibition type was mixed-type for caffeoyltryptophan and uncompetitive (rarely reported for a-glucosidase inhibitors) for falcarindiol. In addition, molecular docking results showed that these active compounds exhibited good binding affinities toward both PTP1B and α-glucosidase with negative binding energies. The results of the present study demonstrate that these active compounds might be beneficial in the treatment of type 2 diabetes.
在这项研究中,我们首次对贯叶忍冬果实进行了研究,从中分离得到了 6 种未知化合物,包括 2 种新的 megastigmane 葡萄糖苷、2 种罕见的 1,4-二氧六环新木脂素和 2 种奎尼酸衍生物,以及 26 种已知化合物。通过广泛的 NMR 光谱数据分析、高分辨质谱和 ECD 计算,确定了它们的结构和绝对构型。这是首次从天然来源中分离得到 3-O-咖啡酰基-5-O-对香豆酰奎宁酸甲酯。在所分离的化合物中,法卡林二醇和咖啡酰色氨酸对 PTP1B 的抑制作用较强,IC 值分别为 7.32 和 16.99 μM,优于阳性对照物[偏钒酸钠(IC = 17.96 μM)和熊果酸(IC = 4.53 μM)]。这两种化合物以及其他几种化合物对 α-葡萄糖苷酶表现出显著的抑制作用,IC 值范围为 12.88-91.89 μM,强于阳性对照物(阿卡波糖,IC = 298.07 μM)。酶动力学分析表明,咖啡酰色氨酸和法卡林二醇分别对 PTP1B 表现出竞争性和混合性抑制作用,而对 α-葡萄糖苷酶则表现出混合性抑制作用(对 α-葡萄糖苷酶抑制剂较为罕见)。此外,分子对接结果表明,这些活性化合物对 PTP1B 和 α-葡萄糖苷酶均表现出良好的结合亲和力,具有负的结合能。本研究结果表明,这些活性化合物可能有助于治疗 2 型糖尿病。