Department of Pharmacognosy, Semmelweis University, Budapest, Hungary.
Department of Plant Anatomy, Eötvös Loránd University, Budapest, Hungary.
J Pharm Biomed Anal. 2020 Nov 30;191:113612. doi: 10.1016/j.jpba.2020.113612. Epub 2020 Sep 9.
Celtis occidentalis L. (common Hackberry, Cannabaceae) has been applied in the traditional medicine for a long time as a remedy for sore throat, aid during menstruation and for treating jaundice. Nevertheless, the phytochemical exploration of the plant is still incomplete, literature data is limited to flavonoid derivatives isolated from the leaves. The present study reports screening approaches for bioactive compounds in C. occidentalis by fast and simple UHPLC-coupled assays. The UHPLC-DPPH method revealed six constituents in the methanolic extract of the twigs that had not been reported in C. occidentalis before. The antioxidant compounds were isolated by the means of flash chromatography and semi-preparative HPLC and identified by Orbitrap® MS and NMR spectroscopy as N-trans-p-coumaroyloctopamine (1), N-trans-feruloyloctopamine (2), N-trans-caffeoyltyramine (3), 2-trans-3-(4-hydroxyphenyl)-N-[2-(4-hydroxyphenyl)-2-oxoethyl] prop-2-enamide (4), N-trans-p-coumaroyltryramine (5) and N-trans-feruloyltyramine (6). Despite the high antioxidant activity measured in the present study and literature data suggesting potential positive effects of the compounds in the central nervous system, the PAMPA-BBB assay performed with the Celtis extract revealed that none of the aforementioned compounds are able to penetrate across the blood-brain barrier via transcellular passive diffusion.
美国朴(Celtis occidentalis L.,榆科大麻属)在传统医学中作为一种治疗喉咙痛、月经期间辅助和治疗黄疸的药物已有很长的应用历史。然而,该植物的植物化学研究仍不完整,文献数据仅限于从叶子中分离出的黄酮类衍生物。本研究通过快速简便的 UHPLC 偶联分析报告了在 C. occidentalis 中筛选生物活性化合物的方法。UHPLC-DPPH 法显示,以前在 C. occidentalis 中未报道过在树枝甲醇提取物中的六种成分。抗氧化化合物通过快速色谱和半制备 HPLC 分离,并通过 Orbitrap® MS 和 NMR 光谱鉴定为 N-trans-p-香豆酰辛胺(1)、N-trans-阿魏酰辛胺(2)、N-trans-咖啡酰酪胺(3)、2-trans-3-(4-羟苯基)-N-[2-(4-羟苯基)-2-氧代乙基]丙-2-烯酰胺(4)、N-trans-p-香豆酰酪胺(5)和 N-trans-阿魏酰酪胺(6)。尽管本研究测量的抗氧化活性较高,且文献数据表明这些化合物在中枢神经系统中具有潜在的积极影响,但用 Celtis 提取物进行的 PAMPA-BBB 测定表明,上述化合物均不能通过细胞间被动扩散穿透血脑屏障。