Curriculum in Genetics and Molecular Biology.
Gene Therapy Center.
JCI Insight. 2016 Sep 8;1(14):e88034. doi: 10.1172/jci.insight.88034.
Adeno-associated viruses (AAV) are currently being evaluated in clinical trials for gene therapy of CNS disorders. However, host factors that influence the spread, clearance, and transduction efficiency of AAV vectors in the brain are not well understood. Recent studies have demonstrated that fluid flow mediated by aquaporin-4 (AQP4) channels located on astroglial end feet is essential for exchange of solutes between interstitial and cerebrospinal fluid. This phenomenon, which is essential for interstitial clearance of solutes from the CNS, has been termed glial-associated lymphatic transport or glymphatic transport. In the current study, we demonstrate that glymphatic transport profoundly affects various aspects of AAV gene transfer in the CNS. Altered localization of AQP4 in aged mouse brains correlated with significantly increased retention of AAV vectors in the parenchyma and reduced systemic leakage following ventricular administration. We observed a similar increase in AAV retention and transgene expression upon i.c.v. administration in AQP4 mice. Consistent with this observation, fluorophore-labeled AAV vectors showed markedly reduced flux from the ventricles of AQP4 mice compared with WT mice. These results were further corroborated by reduced AAV clearance from the AQP4-null brain, as demonstrated by reduced transgene expression and vector genome accumulation in systemic organs. We postulate that deregulation of glymphatic transport in aged and diseased brains could markedly affect the parenchymal spread, clearance, and gene transfer efficiency of AAV vectors. Assessment of biomarkers that report the kinetics of CSF flux in prospective gene therapy patients might inform variable treatment outcomes and guide future clinical trial design.
腺相关病毒 (AAV) 目前正在临床试验中用于治疗中枢神经系统疾病的基因治疗。然而,影响 AAV 载体在大脑中传播、清除和转导效率的宿主因素尚未得到很好的理解。最近的研究表明,水通道蛋白-4 (AQP4) 通道介导的流体流动位于星形胶质细胞终足,对于脑间质和脑脊液之间溶质的交换至关重要。这种现象对于溶质从中枢神经系统的间质清除至关重要,被称为胶质相关淋巴转运或神经胶质转运。在本研究中,我们证明神经胶质转运深刻影响 AAV 基因转移在中枢神经系统的各个方面。衰老小鼠大脑中 AQP4 的定位改变与 AAV 载体在实质中的保留显著增加以及脑室给药后系统性渗漏减少相关。我们在 AQP4 小鼠中观察到类似的 AAV 保留增加和转基因表达增加。与这一观察结果一致,荧光标记的 AAV 载体从 AQP4 小鼠的脑室中显示出明显减少的通量,与 WT 小鼠相比。AQP4 缺失大脑中 AAV 清除减少进一步证实了这一结果,这表现为转基因表达和系统器官中载体基因组积累减少。我们假设,衰老和患病大脑中神经胶质转运的失调可能会显著影响 AAV 载体在实质中的扩散、清除和转导效率。评估报告 CSF 通量动力学的生物标志物可能会影响潜在基因治疗患者的治疗结果,并指导未来的临床试验设计。