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Tackling HIV Persistence: Pharmacological versus CRISPR-Based Shock Strategies

机译:解决艾滋病毒的持久性:药理学与基于CRISPR的休克策略

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摘要

Jan Svoboda studied aspects of viral latency, in particular with respect to disease induction by avian RNA tumor viruses, which were later renamed as part of the extended retrovirus family. The course of retroviral pathogenesis is intrinsically linked to their unique property of integrating the DNA copy of the retroviral genome into that of the host cell, thus forming the provirus. Retroviral latency has recently become of major clinical interest to allow a better understanding of why we can effectively block the human immunodeficiency virus type 1 (HIV-1) in infected individuals with antiviral drugs, yet never reach a cure. We will discuss HIV-1 latency and its direct consequence—the formation of long-lasting HIV-1 reservoirs. We next focus on one of the most explored strategies in tackling HIV-1 reservoirs—the “shock and kill” strategy—which describes the broadly explored pharmacological way of kicking the latent provirus, with subsequent killing of the virus-producing cell by the immune system. We furthermore present how the clustered regularly interspaced palindromic repeats (CRISPR) and associated protein (Cas) system can be harnessed to reach the same objective by reactivating HIV-1 gene expression from latency. We will review the benefits and drawbacks of these different cure strategies.
机译:扬·斯沃博达(Jan Svoboda)研究了病毒潜伏期的各个方面,特别是在禽类RNA肿瘤病毒引起的疾病诱导方面,这些病毒后来被更名为逆转录病毒扩展家族的一部分。逆转录病毒致病的过程与它们将逆转录病毒基因组的DNA拷贝整合到宿主细胞的DNA拷贝中从而形成前病毒的独特性质具有内在联系。逆转录病毒潜伏期最近已成为主要的临床兴趣,可以更好地理解为什么我们可以在使用抗病毒药物感染的个体中有效阻断1型人类免疫缺陷病毒(HIV-1),但从未治愈。我们将讨论HIV-1潜伏期及其直接后果-持久的HIV-1储库的形成。接下来,我们将重点探讨应对HIV-1病毒库中探索最多的策略之一,即“打击并杀死”策略,该策略描述了广泛探索的,对潜伏前病毒进行药理治疗的方法,随后通过免疫方法杀死了产生病毒的细胞系统。我们进一步介绍了如何利用簇状的规则间隔回文重复序列(CRISPR)和相关蛋白(Cas)系统通过从潜伏期重新激活HIV-1基因表达来达到相同的目的。我们将回顾这些不同的治疗策略的利弊。

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