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SR-A and SREC-I Are Kupffer and Endothelial Cell Receptors for Helper-dependent Adenoviral Vectors

机译:SR-A和SREC-1是辅助依赖型腺病毒载体的Kupffer和内皮细胞受体

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摘要

Helper-dependent adenoviral (HDAd) vectors can mediate long-term, high-level transgene expression from transduced hepatocytes with no chronic toxicity. However, a toxic acute response with potentially lethal consequences has hindered their clinical applications. Liver sinusoidal endothelial cells (LSECs) and Kupffer cells are major barriers to efficient hepatocyte transduction. Understanding the mechanisms of adenoviral vector uptake by non-parenchymal cells may allow the development of strategies aimed at overcoming these important barriers and to achieve preferential hepatocyte gene transfer with reduced toxicity. Scavenger receptors on Kupffer cells bind adenoviral particles and remove them from the circulation, thus preventing hepatocyte transduction. In the present study, we show that HDAd particles interact in vitro and in vivo with scavenger receptor-A (SR-A) and with scavenger receptor expressed on endothelial cells-I (SREC-I) and we exploited this knowledge to increase the efficiency of hepatocyte transduction by HDAd vectors in vivo through blocking of SR-A and SREC-I with specific fragments antigen-binding (Fabs).
机译:辅助依赖性腺病毒(HDAd)载体可以介导转导的肝细胞长期,高水平的转基因表达,而没有慢性毒性。然而,具有潜在致命后果的毒性急性反应阻碍了其临床应用。肝窦窦内皮细胞(LSEC)和库普弗细胞是有效肝细胞转导的主要障碍。了解非实质细胞摄取腺病毒载体的机制可能允许开发旨在克服这些重要障碍并以降低的毒性实现优先肝细胞基因转移的策略。库普弗细胞上的清道夫受体结合腺病毒颗粒并将其从循环系统中清除,从而阻止肝细胞转导。在本研究中,我们显示HDAd颗粒在体外和体内与清除剂受体A(SR-A)和在内皮细胞I(SREC-1)上表达的清除剂受体相互作用,我们利用这一知识来提高效率HDAd载体通过特异性结合抗原结合片段(Fabs)阻断SR-A和SREC-1体内转导肝细胞的作用。

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