State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China.
School of Biotechnology and Health Sciences, Wuyi University, Jiangmen 529020, China.
Bioorg Chem. 2022 Nov;128:106060. doi: 10.1016/j.bioorg.2022.106060. Epub 2022 Jul 27.
Fourteen phenolic constituents, notopheninetols A-E (1-5), notoflavinols A and B (6 and 7), and (2R)-5,4'-dihydroxy-7-O-[(E)-3,7-dimethyl-2,6-octadienyl]flavanone (8a), along with 12 known analogues (8b and 9-19) were isolated from the roots and rhizomes of Notopterygium incisum. Compounds 1-4 and 6-8 were seven pairs of enantiomers, and they were separated by chiral HPLC to obtain the optically pure compounds. The structures of the new compounds were elucidated based on detailed analyses of 1D and 2D NMR and HRESIMS data, and the absolute configurations were determined by quantum chemical calculations of the electronic circular dichroism (ECD) spectra, comparison of the experimental ECD data with those reported, and chemical methods. Compounds 1 and 2 possessed a 1-benzyl-2-methyl-indane skeleton, which was unprecedented in natural source. All of the isolated compounds were evaluated for their nitric oxide (NO) inhibitory effects on RAW264.7 cells induced by LPS, and compounds 6a/6b, 7a, 8a/8b, and the hydrogenated products 6'a and 7'a showed moderate inhibitory activities with IC values in the range of 6.2-20.6 μM. Moreover, the interactions of these bioactive compounds with inducible nitric oxide synthase (iNOS) were explored by employing molecular docking simulation.
从羌活的根和根茎中分离得到了 14 种酚类成分,分别为 notopheninetols A-E(1-5)、notoflavinols A 和 B(6 和 7)以及(2R)-5,4'-二羟基-7-O-[(E)-3,7-二甲基-2,6-辛二烯基]黄烷酮(8a),以及 12 种已知类似物(8b 和 9-19)。化合物 1-4 和 6-8 是 7 对对映异构体,通过手性 HPLC 分离得到光学纯化合物。根据 1D 和 2D NMR 和 HRESIMS 数据的详细分析,确定了新化合物的结构,并通过量子化学计算电子圆二色谱(ECD)光谱、实验 ECD 数据与文献报道数据的比较以及化学方法确定了绝对构型。化合物 1 和 2 具有 1-苄基-2-甲基-茚烷骨架,这在天然产物中是前所未有的。所有分离得到的化合物均对 LPS 诱导的 RAW264.7 细胞中一氧化氮(NO)的抑制作用进行了评价,化合物 6a/6b、7a、8a/8b 和氢化产物 6'a 和 7'a 具有中等抑制活性,IC 值在 6.2-20.6 μM 范围内。此外,还通过分子对接模拟研究了这些生物活性化合物与诱导型一氧化氮合酶(iNOS)的相互作用。