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卡瓦在均质细胞试验中未表现出代谢毒性。

Kava does not display metabolic toxicity in a homogeneous cellular assay.

作者信息

Zou Lihong, Harkey Martha R, Henderson Gary L, Dike Laura E

机构信息

Department of Medical Pharmacology and Toxicology, School of Medicine, University of California, Davis, CA 95616, USA.

出版信息

Planta Med. 2004 Apr;70(4):289-92. doi: 10.1055/s-2004-818937.

Abstract

To determine whether kava (Kava kava, 'Awa, Yaqona, Piper methysticum Forst.), the popular herbal product associated recently with possible human hepatotoxicity, is bioactivated by cytochrome P450 enzymes to cytotoxic metabolites, three kava lactones (methysticin, yangonin, and desmethoxyyangonin) and an ethanolic extract of dried kava root were incubated over time in culture with MCL-5 cells, a human lymphoblastoid cell line that has been stably transfected with five human P450's (CYP 1A1, 1A2, 2A6, 2E1, and 3A4) and human epoxide hydrolase. Incubations were performed concurrently with a control cell line (cH2) that is derived from the same parental line as MCL-5, but transfected with two empty vectors. The kava compounds displayed varying degrees of toxicity (IC (50) values ranged from 50 to > 100 microM) to the MCL-5 and cH2 cell lines; however, both cell lines were equally sensitive to the test compounds. These results suggest that the parent compound for each of the four test compounds was primarily responsible for the observed cell toxicity and that CYP 1A1, 1A2, 2A6, 2E1, and 3A4 or epoxide hydroxylase did not appear to be involved. Thus, in vitro kava does not appear to be activated to toxic metabolites by enzymes known to be important in metabolic toxicity.

摘要

为了确定卡瓦(卡瓦胡椒,‘阿瓦、雅科纳、 Piper methysticum Forst.),这种最近与可能的人体肝毒性相关的流行草药产品,是否会被细胞色素P450酶生物活化成细胞毒性代谢产物,将三种卡瓦内酯(醉椒素、洋古尼定和去甲氧基洋古尼定)以及干燥卡瓦根的乙醇提取物与MCL-5细胞在培养物中随时间孵育,MCL-5细胞是一种已稳定转染了五种人类P450(CYP 1A1、1A2、2A6、2E1和3A4)和人类环氧化物水解酶的人类淋巴母细胞系。同时用来自与MCL-5相同亲本系但转染了两个空载体的对照细胞系(cH2)进行孵育。卡瓦化合物对MCL-5和cH2细胞系表现出不同程度的毒性(IC(50)值范围为50至>100 microM);然而,两种细胞系对测试化合物的敏感性相同。这些结果表明,四种测试化合物中的每一种的母体化合物是观察到的细胞毒性的主要原因,并且CYP 1A1、1A2、2A6、2E1和3A4或环氧化物羟化酶似乎未参与其中。因此,在体外,卡瓦似乎不会被已知在代谢毒性中起重要作用的酶活化为有毒代谢产物。

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