HIV-2和SIV载体系统。

J R Gilbert, F Wong-Staal
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引用次数: 19

摘要

近年来,慢病毒载体由于能够有效地转导非分裂细胞而受到广泛关注。在慢病毒中,HIV-2和SIV为慢病毒载体设计提供了一些独特的优势。HIV-1、HIV-2和SIV仍然是唯一已知的灵长类慢病毒,因此是已知研究最广泛的病毒。在确定灵长类慢病毒的致病决定因素和了解它们在灵长类动物体内的复制方面,已经投入了大量的努力。在灵长类慢病毒中,HIV-2和SIV的致病性和传播率远低于HIV-1,这可能为基于HIV-2/SIV的载体提供更大程度的生物安全性。最后,也许也是最重要的一点,HIV-2和SIV是可以在易患艾滋病样疾病的非人类灵长类动物模型中进行研究的病毒,这使得基于这些病毒的载体可以进行大量的临床前评估。我们在本章中介绍了关于HIV-2和SIV的基本生物学信息,并通过指出HIV-2和SIV的独特特征如何非常适合载体设计来结束,希望让读者对这些病毒在基因转移应用领域提供的潜力有更大的了解。
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HIV-2 and SIV vector systems.

Lentiviral vectors have received much attention in recent years due to their ability to efficiently transduce non-dividing cells. Of the lentiviruses HIV-2 and SIV offer several unique benefits as the basis for lentiviral vector design. HIV-1, HIV-2 and SIV remain the only known primate lentiviruses, and consequently are among the most extensively studied viruses known. Substantial effort has been devoted towards identifying the pathogenic determinants of the primate lentiviruses and towards understanding their replication within primates. Of the primate lentiviruses, the pathogenicity and rates of transmission of HIV-2 and SIV fall far below that of HIV-1, potentially providing vectors based upon HIV-2/SIV with a greater degree of biosafety. Last, and perhaps most importantly, HIV-2 and SIV are viruses which may be studied within non-human primate models susceptible to AIDS-like disease, making vectors based upon these viruses accessible to substantial preclinical evaluation. We approach this Chapter presenting information regarding the basic biology of HIV-2 and SIV and conclude by pointing to how unique features of HIV-2 and SIV are well suited to vector design, hoping to leave the reader with a greater appreciation of the potential these viruses offer within the field of gene transfer applications.

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