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古希腊药用植物嚏根草亚种的抗惊厥潜力及其主要活性成分的鉴定。

Antiseizure potential of the ancient Greek medicinal plant Helleborus odorus subsp. cyclophyllus and identification of its main active principles.

机构信息

School of Pharmaceutical Sciences, Institute of Pharmaceutical Sciences of Western Switzerland, University of Geneva, CMU - Rue Michel Servet 1, CH-1211, Geneva 4, Switzerland.

Luxembourg Centre for Systems Biomedicine, Université du Luxembourg 6, Avenue du Swing, 4367, Belvaux, Luxembourg; Theracule S.á r.l., 9, Avenue des Hauts-Fourneaux, 4362, Belval, Luxembourg.

出版信息

J Ethnopharmacol. 2020 Sep 15;259:112954. doi: 10.1016/j.jep.2020.112954. Epub 2020 May 21.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Ethnopharmacological data and ancient texts support the use of black hellebore (Helleborus odorus subsp. cyclophyllus, Ranunculaceae) for the management and treatment of epilepsy in ancient Greece.

AIM OF THE STUDY

A pharmacological investigation of the root methanolic extract (RME) was conducted using the zebrafish epilepsy model to isolate and identify the compounds responsible for a potential antiseizure activity and to provide evidence of its historical use. In addition, a comprehensive metabolite profiling of this studied species was proposed.

MATERIALS AND METHODS

The roots were extracted by solvents of increasing polarity and root decoction (RDE) was also prepared. The extracts were evaluated for antiseizure activity using a larval zebrafish epilepsy model with pentylenetetrazole (PTZ)-induced seizures. The RME exhibited the highest antiseizure activity and was therefore selected for bioactivity-guided fractionation. Isolated compounds were fully characterized by NMR and high-resolution tandem mass spectrometry (HRMS/MS). The UHPLC-HRMS/MS analyses of the RME and RDE were used for dereplication and metabolite profiling.

RESULTS

The RME showed 80% inhibition of PTZ-induced locomotor activity (300 μg/ml). This extract was fractionated and resulted in the isolation of a new glucopyranosyl-deoxyribonolactone (1) and a new furostanol saponin derivative (2), as well as of 20-hydroxyecdysone (3), hellebrin (4), a spirostanol glycoside derivative (5) and deglucohellebrin (6). The antiseizure activity of RME was found to be mainly due to the new furostanol saponin (2) and hellebrin (4), which reduced 45% and 60% of PTZ-induced seizures (135 μM, respectively). Besides, the aglycone of hellebrin, hellebrigenin (S34), was also active (45% at 7 μM). To further characterize the chemical composition of both RME and RDE, 30 compounds (A7-33, A35-37) were annotated based on UHPLC-HRMS/MS metabolite profiling. This revealed the presence of additional bufadienolides, furostanols, and evidenced alkaloids.

CONCLUSIONS

This study is the first to identify the molecular basis of the ethnopharmacological use of black hellebore for the treatment of epilepsy. This was achieved using a microscale zebrafish epilepsy model to rapidly quantify in vivo antiseizure activity. The UHPLC-HRMS/MS profiling revealed the chemical diversity of the extracts and the presence of numerous bufadienolides, furostanols and ecdysteroids, also present in the decoction.

摘要

民族药理学相关性

民族药理学数据和古代文献支持使用黑嚏根草(Helleborus odorus subsp. cyclophyllus,毛茛科)来管理和治疗古希腊的癫痫。

研究目的

使用斑马鱼癫痫模型对黑嚏根草根的甲醇提取物(RME)进行了药理学研究,以分离和鉴定负责潜在抗惊厥活性的化合物,并为其历史用途提供证据。此外,还提出了对该研究物种的全面代谢物分析。

材料和方法

用极性递增的溶剂提取根,并用根煎剂(RDE)进行提取。使用戊四氮(PTZ)诱导的惊厥的幼鱼斑马鱼癫痫模型评估提取物的抗惊厥活性。RME 显示出最高的抗惊厥活性,因此被选择进行基于生物活性的分离。通过 NMR 和高分辨率串联质谱(HRMS/MS)对分离得到的化合物进行了全面表征。使用 UHPLC-HRMS/MS 分析 RME 和 RDE,进行去重和代谢物分析。

结果

RME 显示出 80%抑制 PTZ 诱导的运动活性(300μg/ml)。该提取物进行了分离,得到了一个新的吡喃葡萄糖基-脱氧核糖内酯(1)和一个新的呋甾烷醇皂苷衍生物(2),以及 20-羟基蜕皮激素(3)、嚏根草苷(4)、螺甾烷糖苷衍生物(5)和去糖嚏根草苷(6)。RME 的抗惊厥活性主要归因于新的呋甾烷醇皂苷(2)和嚏根草苷(4),它们分别降低了 45%和 60%的 PTZ 诱导的惊厥(分别为 135μM)。此外,嚏根草苷的苷元嚏根草苷元(S34)也具有活性(7μM 时为 45%)。为了进一步表征 RME 和 RDE 的化学成分,根据 UHPLC-HRMS/MS 代谢物分析,共鉴定了 30 种化合物(A7-33,A35-37)。这揭示了存在额外的蟾蜍甾二烯,呋甾烷醇和生物碱。

结论

这项研究首次确定了黑嚏根草治疗癫痫的民族药理学用途的分子基础。这是通过使用微尺度斑马鱼癫痫模型快速定量体内抗惊厥活性来实现的。UHPLC-HRMS/MS 分析揭示了提取物的化学多样性,以及存在许多蟾蜍甾二烯、呋甾烷醇和蜕皮甾酮,这些也存在于煎剂中。

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