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通过表达微阵列分析研究叶下珠乙醇提取物对乙型肝炎病毒(HBV)的抗病毒作用。

Antiviral effect of Phyllanthus nanus ethanolic extract against hepatitis B virus (HBV) by expression microarray analysis.

作者信息

Lam Wai-Yip, Leung Kam-Tong, Law Patrick Tik-Wan, Lee Simon Ming-Yuen, Chan Henry Lik-Yuen, Fung Kwok-Pui, Ooi Vincent Eng-Choon, Waye Mary Miu-Yee

机构信息

Department of Biochemistry, The Croucher Laboratory for Human Genomics, The Chinese University of Hong Kong, Shatin, Hong Kong, China.

出版信息

J Cell Biochem. 2006 Mar 1;97(4):795-812. doi: 10.1002/jcb.20611.

Abstract

Ethanolic extract of Phyllanthus nanus (P. nanus) treatment exhibited potent antiviral activity against Hepatitis B virus (HBV). The effects of these extracts on HBV in the HBV genome integrated cell lines--Alexander cells and HepG2 2.2.15 cells were examined. Experimental results showed that the ethanolic extract of P. nanus produced suppressive effect on HBsAg secretion and HBsAg mRNA expression. The extract also inhibited HBV replication as measured by HBV DNA level in vitro. In addition, using a duck HBV (DHBV) primary culture model, the P. nanus ethanolic extract suppressed viral replication of DHBV in DHBV infected primary duck hepatocytes. The gene expression pattern in Alexander cells that had been treated with the ethanolic extract of P. nanus was also revealed by microarray techniques. The microarray results indicated that there was up-regulation of expression of several genes, including annexin A7 (Axn7). The subcellular localization of Axn7 and anti-HBV effect of Axn7 over-expression in Alexander cells were also investigated. Results showed that expression of Axn7-GFP fusion protein are localized around the secretory vesicles and could cause a decrease in HBsAg secretion in Alexander cells. Axn7 protein might play an important role in the medicinal effect of the active principle(s) of P. nanus.

摘要

小花叶下珠乙醇提取物对乙型肝炎病毒(HBV)具有强大的抗病毒活性。研究了这些提取物对整合有HBV基因组的细胞系——亚历山大细胞和HepG2 2.2.15细胞中HBV的影响。实验结果表明,小花叶下珠乙醇提取物对HBsAg分泌和HBsAg mRNA表达产生抑制作用。该提取物在体外也通过HBV DNA水平抑制HBV复制。此外,使用鸭乙型肝炎病毒(DHBV)原代培养模型,小花叶下珠乙醇提取物抑制DHBV感染的原代鸭肝细胞中DHBV的病毒复制。通过微阵列技术还揭示了用小花叶下珠乙醇提取物处理的亚历山大细胞中的基因表达模式。微阵列结果表明,包括膜联蛋白A7(Axn7)在内的几个基因的表达上调。还研究了Axn7在亚历山大细胞中的亚细胞定位以及Axn7过表达的抗HBV作用。结果表明,Axn7-GFP融合蛋白的表达定位于分泌小泡周围,并可导致亚历山大细胞中HBsAg分泌减少。Axn7蛋白可能在小花叶下珠活性成分的药用作用中发挥重要作用。

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