Division of Basic Biomedical Sciences, Sanford School of Medicine, University of South Dakota, Vermillion, SD, 57069, USA.
Fluids Barriers CNS. 2024 Sep 27;21(1):77. doi: 10.1186/s12987-024-00574-0.
The choroid plexus (CP) is an understudied tissue in the central nervous system and is primarily implicated in cerebrospinal fluid (CSF) production. CP also produces numerous neurotrophic factors (NTF) which circulate to different brain regions. Regulation of NTFs in the CP during natural aging is largely unknown. Here, we investigated the age and gender-specific transcription of NTFs along with the changes in the tight junctional proteins (TJPs) and the water channel protein Aquaporin (AQP1).
Male and female mice were used for our study. Age-related transcriptional changes were analyzed using quantitative PCR at three different time points: mature adult, middle-aged, and aged. Transcriptional changes during aging were further confirmed with digital droplet PCR. Additionally, we used immunohistochemical analysis (IHC) for the evaluation of in vivo protein expression. We further investigated the cellular phenotype of these NTFS, TJP, and water channel proteins in the mouse CP by co-labeling them with the classical vascular marker, Isolectin B4, and epithelial cell marker, Plectin.
Aging significantly altered NTF gene expression in the CP. Brain-derived neurotrophic factor (BDNF), Midkine (MDK), VGF, Insulin-like growth factor (IGF1), IGF2, Klotho (KL), Erythropoietin (EPO), and its receptor (EPOR) were reduced in the aged CP of males and females. Vascular endothelial growth factor (VEGF) transcription was gender-specific; in males, gene expression was unchanged in the aged CP, while females showed an age-dependent reduction. Age-dependent changes in VEGF localization were evident, from vasculature to epithelial cells. IGF2 and klotho localized in the basolateral membrane of the CP and showed an age-dependent reduction in epithelial cells. Water channel protein AQP1 localized in the tip of epithelial cells and showed an age-related reduction in mRNA and protein levels. TJP's JAM, CLAUDIN1, CLAUDIN2 and CLAUDIN5 were reduced in aged mice.
Our study highlights transcriptional level changes in the CP during aging. The age-related transcriptional changes exhibit similarities as well as gene-specific differences in the CP of males and females. Altered transcription of the water channel protein AQP1 and TJPs could be involved in reduced CSF production during aging. Importantly, reduction in the neurotrophic factors and longevity factor Klotho can play a role in regulating brain aging.
脉络丛(CP)是中枢神经系统中研究较少的组织,主要参与脑脊液(CSF)的产生。CP 还产生许多神经营养因子(NTF),这些因子循环到不同的脑区。CP 中 NTF 在自然衰老过程中的调节在很大程度上是未知的。在这里,我们研究了与性别相关的 NTF 转录,以及紧密连接蛋白(TJPs)和水通道蛋白 Aquaporin(AQP1)的变化。
雄性和雌性小鼠用于我们的研究。使用定量 PCR 在三个不同时间点分析年龄相关的转录变化:成熟成年、中年和老年。使用数字液滴 PCR 进一步确认了衰老过程中的转录变化。此外,我们使用免疫组织化学分析(IHC)评估体内蛋白质表达。我们通过与经典血管标记物 Isolectin B4 和上皮细胞标记物 Plectin 共标记,进一步研究了这些 NTFS、TJP 和水通道蛋白在小鼠 CP 中的细胞表型。
衰老显著改变了 CP 中的 NTF 基因表达。脑源性神经营养因子(BDNF)、中期因子(MDK)、VGF、胰岛素样生长因子(IGF1)、IGF2、Klotho(KL)、促红细胞生成素(EPO)及其受体(EPOR)在雄性和雌性的老年 CP 中减少。血管内皮生长因子(VEGF)的转录具有性别特异性;在雄性中,老年 CP 中的基因表达不变,而雌性则表现出依赖年龄的减少。VEGF 定位的年龄依赖性变化明显,从血管到上皮细胞。IGF2 和 klotho 定位于 CP 的基底外侧膜,并在上皮细胞中表现出依赖年龄的减少。水通道蛋白 AQP1 定位于上皮细胞的尖端,其 mRNA 和蛋白水平随年龄相关降低。TJPs 的 JAM、CLAUDIN1、CLAUDIN2 和 CLAUDIN5 在老年小鼠中减少。
我们的研究强调了 CP 在衰老过程中的转录水平变化。CP 中与年龄相关的转录变化表现出雄性和雌性之间的相似性以及基因特异性差异。水通道蛋白 AQP1 和 TJPs 的转录改变可能与衰老过程中 CSF 产生减少有关。重要的是,神经营养因子和长寿因子 Klotho 的减少可以在调节大脑衰老中发挥作用。