Polinski Nicole K, Gombash Sara E, Manfredsson Fredric P, Lipton Jack W, Kemp Christopher J, Cole-Strauss Allyson, Kanaan Nicholas M, Steece-Collier Kathy, Kuhn Nathan C, Wohlgenant Susan L, Sortwell Caryl E
Department of Translational Science and Molecular Medicine, Michigan State University, Grand Rapids, MI, USA; Neuroscience Program, Michigan State University, Grand Rapids, MI, USA.
Graduate Program in Neuroscience, University of Cincinnati, Cincinnati, OH, USA.
Neurobiol Aging. 2015 Feb;36(2):1110-20. doi: 10.1016/j.neurobiolaging.2014.07.047. Epub 2014 Oct 13.
Clinical trials are examining the efficacy of viral vector-mediated gene delivery for treating Parkinson's disease. Although viral vector strategies have been successful in preclinical studies, to date clinical trials have disappointed. This may be because of the fact that preclinical studies fail to account for aging. Aging is the single greatest risk factor for developing Parkinson's disease and age alters cellular processes utilized by viral vectors. We hypothesized that the aged brain would be relatively resistant to transduction when compared with the young adult. We examined recombinant adeno-associated virus 2/5-mediated green fluorescent protein (rAAV2/5 GFP) expression in the young adult and aged rat nigrostriatal system. GFP overexpression was produced in both age groups. However, following rAAV2/5 GFP injection to the substantia nigra aged rats displayed 40%-60% less GFP protein in the striatum, regardless of rat strain or duration of expression. Furthermore, aged rats exhibited 40% fewer cells expressing GFP and 4-fold less GFP messenger RNA. rAAV2/5-mediated gene transfer is compromised in the aged rat midbrain, with deficiencies in early steps of transduction leading to significantly less messenger RNA and protein expression.
临床试验正在研究病毒载体介导的基因递送治疗帕金森病的疗效。尽管病毒载体策略在临床前研究中取得了成功,但迄今为止,临床试验的结果令人失望。这可能是因为临床前研究没有考虑到衰老因素。衰老是患帕金森病的最大单一风险因素,并且年龄会改变病毒载体所利用的细胞过程。我们假设,与年轻成年动物相比,老年大脑对转导相对具有抗性。我们研究了重组腺相关病毒2/5介导的绿色荧光蛋白(rAAV2/5 GFP)在年轻成年大鼠和老年大鼠黑质纹状体系统中的表达。两个年龄组均产生了GFP过表达。然而,向黑质注射rAAV2/5 GFP后,老年大鼠纹状体中的GFP蛋白无论在大鼠品系或表达持续时间方面都比年轻成年大鼠少40%-60%。此外,老年大鼠中表达GFP的细胞少40%,GFP信使核糖核酸少4倍。rAAV2/5介导的基因转移在老年大鼠中脑受损,转导早期步骤存在缺陷,导致信使核糖核酸和蛋白表达显著减少。