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最大限度地提高中枢神经系统中的慢病毒载体基因转移。

Maximizing lentiviral vector gene transfer in the CNS.

机构信息

Lausanne University Hospital (CHUV) and University of Lausanne, Department of Clinical Neurosciences (DNC), Laboratory of Neurotherapies and NeuroModulation, Lausanne, Switzerland.

Lausanne University Hospital (CHUV) and University of Lausanne, Neuroscience Research Center (CRN), Laboratory of Cellular and Molecular Neurotherapies (LCMN), Lausanne, Switzerland.

出版信息

Gene Ther. 2021 Feb;28(1-2):75-88. doi: 10.1038/s41434-020-0172-6. Epub 2020 Jul 6.

Abstract

Gene transfer is a widely developed technique for studying and treating genetic diseases. However, the development of therapeutic strategies is challenging, due to the cellular and functional complexity of the central nervous system (CNS), its large size and restricted access. We explored two parameters for improving gene transfer efficacy and capacity for the selective targeting of subpopulations of cells with lentiviral vectors (LVs). We first developed a second-generation LV specifically targeting astrocytes for the efficient expression or silencing of genes of interest, and to better study the importance of cell subpopulations in neurological disorders. We then made use of the retrograde transport properties of a chimeric envelope to target brain circuits affected in CNS diseases and achieve a broad distribution. The combination of retrograde transport and specific tropism displayed by this LV provides opportunities for delivering therapeutic genes to specific cell populations and ensuring high levels of transduction in interconnected brain areas following local administration. This new LV and delivery strategy should be of greater therapeutic benefit and opens up new possibilities for the preclinical development of gene therapy for neurodegenerative diseases.

摘要

基因转移是一种广泛发展的技术,用于研究和治疗遗传疾病。然而,由于中枢神经系统(CNS)的细胞和功能复杂性、体积大和进入受限,治疗策略的发展具有挑战性。我们探索了两种参数,以提高基因转移的效果和容量,以便使用慢病毒载体(LV)选择性靶向细胞亚群。我们首先开发了一种第二代 LV,专门针对星形胶质细胞,用于有效表达或沉默感兴趣的基因,并更好地研究细胞亚群在神经疾病中的重要性。然后,我们利用嵌合包膜的逆行转运特性来靶向 CNS 疾病中受影响的脑回路,并实现广泛的分布。这种 LV 显示出逆行转运和特异性嗜性的结合,为将治疗基因递送到特定细胞群提供了机会,并确保在局部给药后,在相互连接的脑区中实现高转导水平。这种新的 LV 和传递策略应该具有更大的治疗益处,并为神经退行性疾病的基因治疗的临床前开发开辟了新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a76/7902268/b0d230937ece/41434_2020_172_Fig1_HTML.jpg

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