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Sequential LASER ART and CRISPR Treatments Eliminate HIV-1 in a Subset of Infected Humanized Mice

机译:顺序激光艺术和CRISPR治疗消除了感染人源化小鼠的子集中的HIV-1

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Elimination of HIV-1 requires clearance and removal of integrated proviral DNA from infected cells and tissues. Here, sequential long-acting slow-effective release antiviral therapy (LASER ART) and CRISPR-Cas9 demonstrate viral clearance in latent infectious reservoirs in HIV-1 infected humanized mice. HIV-1 subgenomic DNA fragments, spanning the long terminal repeats and the Gag gene, are excised in vivo, resulting in elimination of integrated proviral DNA; virus is not detected in blood, lymphoid tissue, bone marrow and brain by nested and digital-droplet PCR as well as RNAscope tests. No CRISPR-Cas9 mediated off-target effects are detected. Adoptive transfer of human immunocytes from dual treated, virus-free animals to uninfected humanized mice fails to produce infectious progeny virus. In contrast, HIV-1 is readily detected following sole LASER ART or CRISPR-Cas9 treatment. These data provide proof-of-concept that permanent viral elimination is possible.
机译:消除HIV-1需要来自感染细胞和组织的综合荧光DNA的间隙和除去。这里,顺序长效慢效释放抗病毒治疗(激光艺术)和CRISPR-CAS9在HIV-1感染的人源化小鼠中展示了潜伏感染储层中的病毒间隙。在体内切除HIV-1跨越长末端重复和GAG基因的亚因子组,导致综合荧光DNA的消除;通过嵌套和数码液滴PCR以及Rnascope测试,在血液,淋巴组织,骨髓和脑中未检测到病毒。未检测到CRISPR-CAS9介导的偏离目标效果。从双重治疗的人免疫细胞使用免疫细胞,无感染的人源化小鼠的病毒免疫细胞未能产生传染性后代病毒。相反,在唯一的激光艺术或CRISPR-CAS9处理之后容易检测HIV-1。这些数据提供了概念的证据,即永久性病毒消除是可能的。

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