INSERM UMR1089, Institut de Recherche Thérapeutique 1, Université de Nantes, 44007 Nantes Cedex 01, France.
Hum Gene Ther. 2013 Jul;24(7):670-82. doi: 10.1089/hum.2012.218.
On the basis of previous studies suggesting that vascular endothelial growth factor (VEGF) could protect motor neurons from degeneration, adeno-associated virus vectors (serotypes 1 and 9) encoding VEGF (AAV.vegf) were administered in a limb-expression 1 (LIX1)-deficient cat-a large animal model of lower motor neuron disease-using three different delivery routes to the central nervous system. AAV.vegf vectors were injected into the motor cortex via intracerebral administration, into the cisterna magna, or intravenously in young adult cats. Intracerebral injections resulted in detectable transgene DNA and transcripts throughout the spinal cord, confirming anterograde transport of AAV via the corticospinal pathway. However, such strategy led to low levels of VEGF expression in the spinal cord. Similar AAV doses injected intravenously resulted also in poor spinal cord transduction. In contrast, intracisternal delivery of AAV exhibited long-term transduction and high levels of VEGF expression in the entire spinal cord, yet with no detectable therapeutic clinical benefit in LIX1-deficient animals. Altogether, we demonstrate (i) that intracisternal delivery is an effective AAV delivery route resulting in high transduction of the entire spinal cord, associated with little to no off-target gene expression, and (ii) that in a LIX1-deficient cat model, however, VEGF expressed at high levels in the spinal cord has no beneficial impact on the disease course.
基于先前的研究表明血管内皮生长因子 (VEGF) 可以保护运动神经元免受变性,腺相关病毒载体(血清型 1 和 9)编码 VEGF(AAV.vegf)在肢体表达 1 (LIX1) 缺陷猫-一种用于研究运动神经元疾病的大型动物模型中,通过三种不同的中枢神经系统给药途径给予 LIX1 缺陷猫。AAV.vegf 载体通过脑内给药、脑池内给药或静脉内给药注入运动皮层。脑内注射导致整个脊髓中可检测到转基因 DNA 和转录物,证实 AAV 通过皮质脊髓束进行顺行转运。然而,这种策略导致脊髓中 VEGF 表达水平较低。类似的 AAV 剂量静脉内注射也导致脊髓转导不良。相比之下,脑室内给予 AAV 表现出长期转导和整个脊髓中高水平的 VEGF 表达,但在 LIX1 缺陷动物中没有检测到治疗的临床益处。总之,我们证明了:(i)脑室内给药是一种有效的 AAV 给药途径,可导致整个脊髓的高转导,与低水平或无靶基因表达相关;(ii)然而,在 LIX1 缺陷猫模型中,脊髓中高表达的 VEGF 对疾病进程没有有益影响。