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Development and Optimization of Herpes Simplex Virus Vectors for Multiple Long-Term Gene Delivery to the Peripheral Nervous System

机译:多种长期基因递送至周围神经系统的单纯疱疹病毒载体的开发和优化

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摘要

Herpes simplex virus (HSV) has often been suggested as a suitable vector for gene delivery to the peripheral nervous system as it naturally infects sensory nerve terminals before retrograde transport to the cell body in the spinal ganglia where latency is established. HSV vectors might therefore be particularly appropriate for the study and treatment of chronic pain following vector administration by relatively noninvasive peripheral routes. However parameters allowing safe and efficient gene delivery to spinal ganglia following peripheral vector inoculation, or the long-term expression of delivered genes, have not been comprehensively studied. We have identified combinations of deletions from the HSV genome which allow highly efficient gene delivery to spinal dorsal root ganglia (DRGs) following either footpad or sciatic nerve injection. These vectors have ICP34.5 deleted and have inactivating mutations in vmw65. We also report that peripheral replication is probably necessary for the efficient establishment of latency in vivo, as fully replication-incompetent HSV vectors allow efficient gene expression in DRGs only after peripheral inoculation at a high virus dose. Very low transduction efficiencies are otherwise achieved. In parallel, promoters have been developed that allow the long-term expression of individual or pairs of genes in DRGs by using elements from the latently active region of the virus to confer a long-term activity onto a number of promoters which otherwise function only in the short term. This work further defines elements and mechanisms within the latently active region that are necessary for long-term gene expression and for the first time allows multiple inserted genes to be expressed from HSV vectors during latency.
机译:单纯疱疹病毒(HSV)通常被建议作为基因传递至周围神经系统的合适载体,因为它在逆行转运至建立潜伏期的脊髓神经节的细胞体之前会自然感染感觉神经末梢。因此,HSV载体可能特别适合研究和治疗通过相对无创的外周途径给药后的慢性疼痛。然而,尚未进行全面研究允许外围载体接种后安全有效地将基因递送至脊髓神经节的参数或所递送基因的长期表达的参数。我们已经确定了从HSV基因组中缺失的组合,这些组合允许在足垫或坐骨神经注射后高效地将基因传递至脊髓背根神经节(DRG)。这些载体已删除ICP34.5,并在vmw65中具有失活突变。我们还报告说,外围复制对于体内潜伏期的有效建立可能是必要的,因为完全无复制能力的HSV载体仅在以高病毒剂量进行外围接种后才允许在DRG中高效表达基因。否则实现了非常低的转导效率。平行地,已经开发出了启动子,其通过使用来自病毒潜在活性区域的元件将长期活性表达给许多启动子,这些启动子可以在DRG中长期表达单个或成对的基因,否则这些启动子只能在短期的。这项工作进一步定义了潜在活性区域内长期基因表达所必需的元件和机制,并首次允许在潜伏期从HSV载体表达多个插入的基因。

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