INIBIOLP-Histology B-Pathology B, University of La Plata, La Plata, Argentina.
CINIBA, School of Medicine, University of La Plata, La Plata, Argentina.
J Gerontol A Biol Sci Med Sci. 2018 Mar 14;73(4):459-467. doi: 10.1093/gerona/glx125.
In rats, learning and memory performance decline during normal aging, which makes this rodent species a suitable model to evaluate therapeutic strategies. In aging rats, insulin-like growth factor-I (IGF-I), is known to significantly improve spatial memory accuracy as compared to control counterparts. A constellation of gene expression changes underlie the hippocampal phenotype of aging but no studies on the effects of IGF-I on the hippocampal transcriptome of old rodents have been documented. Here, we assessed the effects of IGF-I gene therapy on spatial memory performance in old female rats and compared them with changes in the hippocampal transcriptome. In the Barnes maze test, experimental rats showed a significantly higher exploratory frequency of the goal hole than controls. Hippocampal RNA-sequencing showed that 219 genes are differentially expressed in 28-month-old rats intracerebroventricularly injected with an adenovector expressing rat IGF-I as compared with placebo adenovector-injected counterparts. From the differentially expressed genes, 81 were down and 138 upregulated. From those genes, a list of functionally relevant genes, concerning hippocampal IGF-I expression, synaptic plasticity as well as neuronal function was identified. Our results provide an initial glimpse at the molecular mechanisms underlying the neuroprotective actions of IGF-I in the aging brain.
在正常衰老过程中,大鼠的学习和记忆能力会下降,这使得这种啮齿动物成为评估治疗策略的合适模型。与对照组相比,在衰老大鼠中,胰岛素样生长因子-I(IGF-I)已知可显著提高空间记忆的准确性。一系列基因表达的变化是衰老海马表型的基础,但尚未有研究记录 IGF-I 对老年啮齿动物海马转录组的影响。在这里,我们评估了 IGF-I 基因治疗对老年雌性大鼠空间记忆表现的影响,并将其与海马转录组的变化进行了比较。在 Barnes 迷宫测试中,实验组大鼠对目标孔的探索频率明显高于对照组。海马 RNA 测序显示,与接受安慰剂腺病毒注射的对照组相比,经脑室内注射表达大鼠 IGF-I 的腺病毒的 28 月龄大鼠中有 219 个基因表达存在差异。在差异表达的基因中,有 81 个下调,138 个上调。从这些基因中,确定了与海马 IGF-I 表达、突触可塑性以及神经元功能相关的功能相关基因列表。我们的研究结果为 IGF-I 在衰老大脑中的神经保护作用的分子机制提供了初步的了解。