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Improvement of HSV-1 based amplicon vectors for a safe and long-lasting gene therapy in non-replicating cells

机译:基于HSV-1的扩增子载体的改进在非复制细胞中的安全和长期基因治疗

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摘要

A key factor for developing gene therapy strategies for neurological disorders is the availability of suitable vectors. Currently, the most advanced are adeno-associated vectors that, while being safe and ensuring long-lasting transgene expression, have a very limited cargo capacity. In contrast, herpes simplex virus-based amplicon vectors can host huge amounts of foreign DNA, but concerns exist about their safety and ability to express transgenes long-term. We aimed at modulating and prolonging amplicon-induced transgene expression kinetics in vivo using different promoters and preventing transgene silencing. To pursue the latter, we deleted bacterial DNA sequences derived from vector construction and shielded the transgene cassette using AT-rich and insulator-like sequences (SAm technology). We employed luciferase and GFP as reporter genes. To determine transgene expression kinetics, we injected vectors in the hippocampus of mice that were longitudinally scanned for bioluminescence for 6 months. To evaluate safety, we analyzed multiple markers of damage and performed patch clamp electrophysiology experiments. All vectors proved safe, and we managed to modulate the duration of transgene expression, up to obtaining a stable, long-lasting expression using the SAm technology. Therefore, these amplicon vectors represent a flexible, efficient, and safe tool for gene delivery in the brain.
机译:发育神经障碍基因治疗策略的关键因素是合适载体的可用性。目前,最先进的是adeno相关的向量,虽然安全和确保持久的转换表达,货物容量非常有限。相比之下,疱疹Simplex的病毒基扩增子载体可以占巨大的外国DNA,但是对它们的安全性和能够长期表达转基因的担忧。我们旨在使用不同的启动子和防止转基因沉默在体内调节和延长扩增子诱导的转基因表达动力学。为了追求后者,我们删除了源自载体结构的细菌DNA序列,并使用富含富含和绝缘体样序列(SAM技术)屏蔽转基因盒。我们使用荧光素酶和GFP作为报告基因。为了确定转基因表达动力学,我们在小鼠的海马中注射载体,该载体纵向扫描生物发光6个月。为了评估安全性,我们分析了多个损坏标记并进行了膜片钳电体医学实验。所有载体都证明了安全的,我们设法调制了转基因表达的持续时间,以获得使用SAM技术获得稳定的长持久的表达。因此,这些扩增子矢量代表脑中基因递送的灵活,有效和安全的工具。

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