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基因治疗应用中腺病毒与宿主因子相互作用的调控。

Manipulation of adenovirus interactions with host factors for gene therapy applications.

机构信息

British Heart Foundation Glasgow Cardiovascular Research Center, College of Medical, Veterinary & Life Sciences, University of Glasgow, 126 University Place, Glasgow G12 8TA, UK.

出版信息

Nanomedicine (Lond). 2012 Feb;7(2):271-88. doi: 10.2217/nnm.11.186.

Abstract

Nanomedicine based on the use of adenovirus vectors for therapeutic gene delivery shows broad potential. Specific targeting for many gene therapy applications, such as metastatic cancers or cardiovascular diseases requires intravascular delivery of the vector. However, a major barrier to successful adenovirus vector targeting follows systemic delivery, as upon contact with the bloodstream the virus interacts with a variety of host proteins, in particular coagulation factor X, which mediates profound liver gene transfer. This inherent hepatic tropism combined with macrophage scavenging minimizes the efficacy of the virus at the desired sites and induces toxic side effects. Understanding the complex, multifaceted interactions of adenovirus with host factors is of vital importance to the design of safer vectors with improved efficacy and pharmacokinetic profiles. Increased knowledge of adenovirus biology provides the opportunity to develop innovative strategies to detarget the virus from the liver following intravascular delivery and redirect the vector to disease areas.

摘要

基于腺病毒载体的纳米医学在治疗基因传递方面显示出广阔的潜力。对于许多基因治疗应用,如转移性癌症或心血管疾病,需要将载体进行血管内递送。然而,腺病毒载体靶向治疗的一个主要障碍是在系统给药后,因为病毒与血液中的各种宿主蛋白相互作用,特别是凝血因子 X,这介导了深刻的肝脏基因转移。这种固有的肝脏趋向性加上巨噬细胞的清除作用,使病毒在所需部位的疗效最小化,并诱导毒性副作用。了解腺病毒与宿主因子的复杂、多方面的相互作用,对于设计更安全、疗效更高、药代动力学更优的载体至关重要。增加对腺病毒生物学的了解为开发创新策略提供了机会,可以在血管内给药后将病毒从肝脏中去除靶向,并将载体重新定向到疾病部位。

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