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Improving the Transduction of Bone Marrow–Derived Cells with an Integrase-Defective Lentiviral Vector

机译:整合酶缺陷型慢病毒载体改善骨髓来源细胞的转导

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摘要

In lentiviral vector (LV) applications where transient transgene expression is sufficient, integrase-defective lentiviral vectors (IDLVs) are beneficial for reducing the potential for off-target effects associated with insertional mutagenesis. It was previously demonstrated that human RPE65 mRNA expression from an integrating lentiviral vector (ILV) induces endogenous Rpe65 and Cralbp mRNA expression in murine bone marrow–derived cells (BMDCs), initiating programming of the cells to retinal pigment epithelium (RPE)-like cells. These cells regenerate RPE in retinal degeneration models when injected systemically. As transient expression of RPE65 is sufficient to activate endogenous RPE-associated genes for programming BMDCs, use of an ILV is an unnecessary risk. In this study, an IDLV expressing RPE65 (IDLV3-RPE65) was generated. Transduction with IDLV3-RPE65 is less efficient than the integrating vector (ILV3-RPE65). Therefore, IDLV3-RPE65 transduction was enhanced with a combination of preloading 20 × -concentrated viral supernatant on RetroNectin at a multiplicity of infection of 50 and transduction of BMDCs by low-speed centrifugation. RPE65 mRNA levels increased from ∼12-fold to ∼25-fold (p < 0.05) after modification of the IDLV3-RPE65 transduction protocol, achieving expression similar to the ∼27-fold (p < 0.05) increase observed with ILV3-RPE65. Additionally, the study shows that the same preparation of RetroNectin can be used to coat up to three wells with no reduction in transduction. Critically, IDLV3-RPE65 transduction initiates endogenous Rpe65 mRNA expression in murine BMDCs and Cralbp/CRALBP mRNA in both murine and human BMDCs, similar to expression observed in ILV3-RPE65-transduced cells. Systemic administration of ILV3-RPE65 or IDLV3-RPE65 programmed BMDCs in a mouse model of retinal degeneration is sufficient to retain visual function and reduce retinal degeneration compared to mice receiving no treatment or naïve BMDC. It is concluded that IDLV3-RPE65 is appropriate for programming BMDCs to RPE-like cells.
机译:在瞬时转基因表达足够的慢病毒载体(LV)应用中,整合酶缺陷型慢病毒载体(IDLV)有利于减少与插入诱变相关的脱靶效应的可能性。先前已证明,整合慢病毒载体(ILV)的人RPE65 mRNA表达在鼠骨髓源性细胞(BMDC)中诱导内源性Rpe65和Cralbp mRNA表达,从而开始将细胞编程为视网膜色素上皮(RPE)样细胞。当全身注射时,这些细胞在视网膜变性模型中再生RPE。由于RPE65的瞬时表达足以激活用于编程BMDC的内源性RPE相关基因,因此使用ILV是不必要的风险。在这项研究中,生成了表达IDPE的RPE65(IDLV3-RPE65)。 IDLV3-RPE65的转导效率低于整合载体(ILV3-RPE65)。因此,将IDV3-RPE65的转导与在50的感染复数下在RetroNectin上预加载20××浓缩的病毒上清液和通过低速离心转导BMDC的组合增强。修改IDLV3-RPE65转导方案后,RPE65 mRNA水平从约12倍增至约25倍(p <0.05),实现的表达类似于用ILV3-RPE65观察到的约27倍增高(p expression <0.05)。此外,研究表明,相同的RetroNectin制剂可用于包被多达三孔,且转导率不会降低。至关重要的是,IDLV3-RPE65转导启动了鼠和人BMDC中鼠BMDC和 Cralbp / CRALBP mRNA中内源性Rpe65 mRNA的表达,类似于在ILV3 -RPE65-转导中观察到的表达细胞。与未接受治疗或未接受任何治疗的小鼠相比,在视网膜变性小鼠模型中全身施用ILV3- RPE65 或IDLV3- RPE65 编程的BMDC足以保留视觉功能并减少视网膜变性。幼稚的BMDC。结论是IDLV3- RPE65 适用于将BMDC编程为RPE样细胞。

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