Jacobs A, Breakefield X O, Fraefel C
Department of Neurology at the University and MPI for Neurological Research, Cologne, Germany.
Neoplasia. 1999 Nov;1(5):387-401. doi: 10.1038/sj.neo.7900055.
The design of effective gene therapy strategies for brain tumors and other neurological disorders relies on the understanding of genetic and pathophysiological alterations associated with the disease, on the biological characteristics of the target tissue, and on the development of safe vectors and expression systems to achieve efficient, targeted and regulated, therapeutic gene expression. The herpes simplex virus type 1 (HSV-1) virion is one of the most efficient of all current gene transfer vehicles with regard to nuclear gene delivery in central nervous system-derived cells including brain tumors. HSV-1-related research over the past decades has provided excellent insight into the structure and function of this virus, which, in turn, facilitated the design of innovative vector systems. Here, we review aspects of HSV-1 structure, replication and pathogenesis, which are relevant for the engineering of HSV-1-based vectors.
针对脑肿瘤和其他神经疾病设计有效的基因治疗策略,依赖于对与疾病相关的基因和病理生理改变的理解、对靶组织生物学特性的了解,以及开发安全的载体和表达系统以实现高效、靶向和可控的治疗性基因表达。就向包括脑肿瘤在内的中枢神经系统来源细胞进行核基因递送而言,单纯疱疹病毒1型(HSV-1)病毒体是目前所有基因传递载体中效率最高的载体之一。过去几十年间与HSV-1相关的研究,为深入了解这种病毒的结构和功能提供了很好的视角,这反过来又促进了创新载体系统的设计。在此,我们综述与基于HSV-1的载体工程相关的HSV-1结构、复制和发病机制等方面。