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[Inhibition of hepatitis B virus replication and expression by RNA interference in vitro].

Cai Zhu, Xue-Gong Fan, Ning Li, Ruo-su Ying, Xue‐Fei Tian

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Abstract

OBJECTIVE: To design pSilencer3.1-H1hygro plasmid expressing short interfering RNAs (siRNA) that target HBV S gene region, and to evaluate inhibitory effect of this siRNA on HBV in vitro. METHODS: HepG2.2.15 was used as target cell. The plasmid expressing small interfering RNA was transfected into the cultured cells via liposome metafectene, HBsAg and HBeAg were analyzed by time-resolved immunofluorometric assay, HBV DNA were analyzed by fluorogenic quantitative PCR (FQ-PCR), HBV S-mRNA was detected by semi-quantitative RT-PCR. RESULTS: The plasmid expressing siRNA was successfully constructed. The S region siRNAs could effectively inhibit both antigens secretion and HBV replication compared with controls, HBsAg levels decreased by 75%, 82%, 89%; HBeAg levels decreased by 32%, 38%, 43%; HBV DNA production decreased by 30%, 43%, 49%; The HBV mRNA species was reduced by 30%, 70%, 90% when transfected with 1 microg, 2 microg, 4 microg HBV S-siRNA, respectively. CONCLUSION: These results demonstrate that RNAi can substantially inhibit HBV replication and the antigens expression in the infected cells. These inhibitive effect of siRNA on HBV was dose-dependent and sequence-specific.

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What this paper is about

OBJECTIVE: To design pSilencer3.1-H1hygro plasmid expressing short interfering RNAs (siRNA) that target HBV S gene region, and to evaluate inhibitory effect of this siRNA on HBV in vitro. METHODS: HepG2.2.15 was used as target cell. The plasmid expressing small interfering RNA was transfected into the cultured cells via liposome metafectene, HBsAg and HBeAg were analyzed by time-resolved immunofluorometric assay, HBV DNA were analyzed by fluorogenic quantitative PCR (FQ-PCR), HBV S-mRNA was detected by semi-quantitative RT-PCR. RESULTS: The plasmid expressing siRNA was successfully constructed. The S region siRNAs could effectively inhibit both antigens secretion and HBV replication compared with controls, HBsAg levels decreased by 75%, 82%, 89%; HBeAg levels decreased by 32%, 38%, 43%; HBV DNA production decreased by 30%, 43%, 49%; The HBV mRNA species was reduced by 30%, 70%, 90% when transfected with 1 microg, 2 microg, 4 microg HBV S-siRNA, respectively. CONCLUSION: These results demonstrate that RNAi can substantially inhibit HBV replication and the antigens expression in the infected cells. These inhibitive effect of siRNA on HBV was dose-dependent and sequence-specific.

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Available abstract

OBJECTIVE: To design pSilencer3.1-H1hygro plasmid expressing short interfering RNAs (siRNA) that target HBV S gene region, and to evaluate inhibitory effect of this siRNA on HBV in vitro. METHODS: HepG2.2.15 was used as target cell. The plasmid expressing small interfering RNA was transfected into the cultured cells via liposome metafectene, HBsAg and HBeAg were analyzed by time-resolved immunofluorometric assay, HBV DNA were analyzed by fluorogenic quantitative PCR (FQ-PCR), HBV S-mRNA was detected by semi-quantitative RT-PCR. RESULTS: The plasmid expressing siRNA was successfully constructed. The S region siRNAs could effectively inhibit both antigens secretion and HBV replication compared with controls, HBsAg levels decreased by 75%, 82%, 89%; HBeAg levels decreased by 32%, 38%, 43%; HBV DNA production decreased by 30%, 43%, 49%; The HBV mRNA species was reduced by 30%, 70%, 90% when transfected with 1 microg, 2 microg, 4 microg HBV S-siRNA, respectively. CONCLUSION: These results demonstrate that RNAi can substantially inhibit HBV replication and the antigens expression in the infected cells. These inhibitive effect of siRNA on HBV was dose-dependent and sequence-specific.

Key concepts: HBeAg, HBsAg, Small interfering RNA, Hepatitis B virus, Transfection, RNA interference, Molecular biology, Plasmid

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