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Age and lesioned-induced increases of GDNF transgene expression in brain following intracerebral injections of DNA nanoparticles

机译:脑内注射DNA纳米颗粒后年龄和病变诱导的脑中GDNF转基因表达的增加

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摘要

In previous studies that used compacted DNA nanoparticles (DNP) to transfect cells in the brain, we observed higher transgene expression in the denervated striatum when compared to transgene expression in the intact striatum. We also observed that long term transgene expression occurred in astrocytes as well as neurons. Based on these findings, we hypothesized that the higher transgene expression observed in the denervated striatum may be a function of increased gliosis. Several aging studies have also reported an increase of gliosis as a function of normal aging. In this study we used DNPs that encoded for human glial cell line-derived neurotrophic factor (hGDNF) and either a non-specific human polyubiquitin C (UbC) or an astrocyte-specific human glial fibrillary acidic protein (GFAP) promoter. The DNPs were injected intracerebrally into the denervated or intact striatum of young, middle-aged or aged rats, and GDNF transgene expression was subsequently quantified in brain tissue samples. The results of our studies confirmed our earlier finding that transgene expression was higher in the denervated striatum when compared to intact striatum for DNPs incorporating either promoter. In addition, we observed significantly higher transgene expression in the denervated striatum of old rats when compared to young rats following injections of both types of DNPs. Stereological analysis of GFAP+ cells in the striatum confirmed an increase of GFAP+ cells in the denervated striatum when compared to the intact striatum and also an age-related increase; importantly, increases in GFAP+ cells closely matched the increases in GDNF transgene levels. Thus neurodegeneration and aging may lay a foundation that is actually beneficial for this particular type of gene therapy while other gene therapy techniques that target neurons are actually targeting cells that are decreasing as the disease progresses.
机译:在以前的研究中,使用致密的DNA纳米颗粒(DNP)转染大脑中的细胞,与完整的纹状体中的转基因表达相比,我们观察到了失神经纹状体中较高的转基因表达。我们还观察到长期转基因表达发生在星形胶质细胞以及神经元中。基于这些发现,我们假设在神经支配的纹状体中观察到更高的转基因表达可能是神经胶质增高的函数。一些衰老研究还报告了神经胶质增生与正常衰老有关。在这项研究中,我们使用了编码人胶质细胞源性神经营养因子(hGDNF)和非特异性人多聚泛素C(UbC)或星形胶质细胞特异性人胶质纤维酸性蛋白(GFAP)启动子的DNP。将DNP脑内注射到年轻,中年或老年大鼠的失神经或完整纹状体中,随后在脑组织样品中定量GDNF转基因表达。我们的研究结果证实了我们较早的发现:与掺入任一种启动子的DNP相比,去神经纹状体中转基因表达均高于完整纹状体。此外,我们观察到,在注射两种类型的DNP后,年轻大鼠的神经支配纹状体中的转基因表达明显高于年轻大鼠。纹状体中的GFAP + 细胞的体视学分析证实,与完整的纹状体相比,去神经纹状体中GFAP + 细胞的增加,并且与年龄有关。重要的是,GFAP + 细胞的增加与GDNF转基因水平的增加紧密匹配。因此,神经退行性变和衰老可能为这种特定类型的基因治疗奠定实际基础,而其他针对神经元的基因治疗技术实际上针对的是随着疾病进展而减少的细胞。

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