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Inhibition of Hepatitis B Virus Replication by Helper Dependent Adenoviral Vectors Expressing Artificial Anti-HBV Pri-miRs from a Liver-Specific Promoter

机译:乙型肝炎病毒复制的抑制作用从表达肝特异性启动子的表达人工抗HBV Pri-miR的辅助依赖性腺病毒载体

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摘要

Research on applying RNA interference (RNAi) to counter HBV replication has led to identification of potential therapeutic sequences. However, before clinical application liver-specific expression and efficient delivery of these sequences remain an important objective. We recently reported short-term inhibition of HBV replication in vivo by using helper dependent adenoviral vectors (HD Ads) expressing anti-HBV sequences from a constitutively active cytomegalovirus (CMV) promoter. To develop the use of liver-specific transcription regulatory elements we investigated the utility of the murine transthyretin (MTTR) promoter for expression of anti-HBV primary microRNAs (pri-miRs). HD Ads containing MTTR promoter effected superior expression of anti-HBV pri-miRs in mice compared to HD Ads containing the CMV promoter. MTTR-containing HD Ads resulted in HBV replication knockdown of up to 94% in mice. HD Ads expressing trimeric anti-HBV pri-miRs silenced HBV replication for 5 weeks. We previously showed that the product of the codelivered lacZ gene induces an immune response, and the duration of HBV silencing in vivo is likely to be attenuated by this effect. Nevertheless, expression of anti-HBV pri-miRs from MTTR promoter is well suited to countering HBV replication and development of HD Ads through attenuation of their immunostimulatory effects should advance their clinical utility.
机译:应用RNA干扰(RNAi)对抗HBV复制的研究已导致鉴定潜在的治疗序列。然而,在临床应用之前,肝脏特异性表达和这些序列的有效递送仍然是重要的目标。我们最近报道了通过使用表达来自组成性活性巨细胞病毒(CMV)启动子的抗HBV序列的辅助依赖性腺病毒载体(HD Ads),在体内对HBV复制的短期抑制作用。为了开发肝脏特异性转录调控元件的用途,我们研究了鼠运甲状腺素蛋白(MTTR)启动子在抗HBV初级微小RNA(pri-miRs)表达中的用途。与包含CMV启动子的HD Ads相比,包含MTTR启动子的HD Ads在小鼠中具有更好的抗HBV pri-miRs表达。包含MTTR的高清广告在小鼠中导致HBV复制抑制高达94%。表达三聚体抗HBV pri-miR的高清广告使HBV复制沉默了5周。我们以前表明,codelivered lacZ基因的产物可诱导免疫反应,体内HBV沉默的持续时间可能会因这种作用而减弱。然而,MTTR启动子表达的抗HBV pri-miRs非常适合通过减弱其免疫刺激作用来抵抗HD Ads的复制和发展,从而促进其临床应用。

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