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斑马鱼生物测定法引导下从喀麦隆药用植物节莎草(Cyperus articulatus L.)中分离抗癫痫化合物

Zebrafish bioassay-guided isolation of antiseizure compounds from the Cameroonian medicinal plant Cyperus articulatus L.

作者信息

Brillatz Théo, Jacmin Maxime, Queiroz Emerson Ferreira, Marcourt Laurence, Slacanin Ivan, Petit Charlotte, Carrupt Pierre-Alain, Bum Elisabeth Ngo, Herrling Paul, Crawford Alexander D, Wolfender Jean-Luc

机构信息

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

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

出版信息

Phytomedicine. 2020 Jan 23;70:153175. doi: 10.1016/j.phymed.2020.153175.

Abstract

BACKGROUND

Epilepsy is a chronic neurological disorder affecting more than 50 million people worldwide, of whom 80% live in low- and middle-income countries. Due to the limited availability of antiseizure drugs (ASDs) in these countries, medicinal plants are the first-line treatment for most epilepsy patients. In Cameroon, a decoction of Cyperus articulatus L. rhizomes is traditionally used to treat epilepsy.

PURPOSE

The aim of this study was to identify and isolate the active compounds responsible for the antiseizure activity of C. articulatus in order to confirm both its traditional medicinal usage and previous in vivo studies on extracts of this plant in mouse epilepsy models.

METHODS

The dried rhizomes of C. articulatus were extracted with solvents of increasing polaritie (hexane, dichloromethane, methanol and water). A traditional decoction and an essential oil were also prepared. These extracts were evaluated for antiseizure activity using a larval zebrafish seizure model with seizures induced by the GABA antagonist pentylenetetrazole (PTZ). The hexane extract demonstrated the highest antiseizure activity and was therefore selected for bioassay-guided fractionation. The isolated bioactive compounds were characterized by classical spectroscopic methods. Since they were found to be volatile, they were quantified by GC-FID. In addition, the absorption of the active compounds through the gastrointestinal tract and the blood-brain barrier was evaluated using a hexadecane and a blood-brain barrier parallel artificial membrane permeability assays (HDM-PAMPA and PAMPA-BBB).

RESULTS

The hexane extract of C. articulatus exhibited the highest antiseizure activity with a reduction of 93% of PTZ-induced seizures, and was therefore subjected to bioassay-guided fractionation in order to isolate the active principles. Four sesquiterpenoids were identified as cyperotundone (1), mustakone (2), 1,2-dehydro-α-cyperone (3) and sesquichamaenol (4) and exhibited significant antiseizure activity. These volatile compounds were quantified by GC in the hexane extract, the essential oil and the simulated traditional decoction. In addition, the constituents of the hexane extract including compounds 1 and 2 were found to cross the gastrointestinal barrier and the major compound 2 crossed the blood-brain barrier as well.

CONCLUSION

These results highlight the antiseizure activity of various sesquiterpene compounds from a hexane extract of C. articulatus dried rhizomes and support its use as a traditional treatment for epilepsy.

摘要

背景

癫痫是一种慢性神经疾病,全球有超过5000万人受其影响,其中80%生活在低收入和中等收入国家。由于这些国家抗癫痫药物(ASDs)供应有限,药用植物是大多数癫痫患者的一线治疗方法。在喀麦隆,关节莎草根茎的煎剂传统上用于治疗癫痫。

目的

本研究的目的是鉴定和分离出关节莎草抗癫痫活性的活性化合物,以证实其传统药用用途以及先前在小鼠癫痫模型中对该植物提取物的体内研究。

方法

用极性递增的溶剂(己烷、二氯甲烷、甲醇和水)提取关节莎草的干燥根茎。还制备了传统煎剂和精油。使用由GABA拮抗剂戊四氮(PTZ)诱导癫痫发作的斑马鱼幼体癫痫模型评估这些提取物的抗癫痫活性。己烷提取物表现出最高的抗癫痫活性,因此被选用于生物测定导向的分级分离。通过经典光谱方法对分离出的生物活性化合物进行表征。由于发现它们具有挥发性,因此通过气相色谱 - 火焰离子化检测法(GC - FID)对其进行定量。此外,使用十六烷和血脑屏障平行人工膜渗透性测定法(HDM - PAMPA和PAMPA - BBB)评估活性化合物通过胃肠道和血脑屏障的吸收情况。

结果

关节莎草的己烷提取物表现出最高的抗癫痫活性,可使PTZ诱导的癫痫发作减少93%,因此对其进行生物测定导向的分级分离以分离出活性成分。鉴定出四种倍半萜类化合物为莎草酮(1)、穆斯塔酮(2)、1,2 - 脱氢 - α - 莎草酮(3)和倍半查马烯醇(4),它们表现出显著的抗癫痫活性。通过气相色谱法对己烷提取物、精油和模拟传统煎剂中的这些挥发性化合物进行定量。此外,发现己烷提取物的成分包括化合物1和2能够穿过胃肠道屏障,主要化合物2也能穿过血脑屏障。

结论

这些结果突出了关节莎草干燥根茎己烷提取物中各种倍半萜化合物的抗癫痫活性,并支持其作为癫痫传统治疗方法的应用。

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