University of Castilla-La Mancha, Department of Medical Science, Medical School of Albacete, Instituto de Investigación en Discapacidades Neurológicas (IDINE), Albacete, Spain.
Exp Eye Res. 2023 Nov;236:109655. doi: 10.1016/j.exer.2023.109655. Epub 2023 Sep 16.
Baseline intracellular calcium levels are significantly higher in neuronal and glial cells of rat retinas with retinitis pigmentosa (RP). Although this situation could initiate multiple detrimental pathways that lead to cell death, we considered the possibility of TRPC1 being involved in maintaining calcium homeostasis in the retina by acting as a component of store-operated calcium (SOC) channels with special relevance during photoreceptor degeneration. In this study, we examined by Western blot the expression of TRPC1 in healthy control rat retinas (Sprague-Dawley, SD) and retinas with RP (P23H-1 rats). We also analyzed its specific cellular distribution by immunofluorescence to recognize changes during neurodegeneration and to determine whether its presence is consistent with high basal calcium levels and cellular survival in degenerating retinas. We found that TRPC1 immunostaining was widely distributed across the retina in both rat strains, SD and P23H, and its expression levels significantly increased in the retinas with advanced degeneration compared to the age-control SD rats. In the outer retina, TRPC1 immunoreactivity was distributed in pigment epithelium cells, the photoreceptor inner segments of older animals, and the outer plexiform layer. In the inner retina, TRPC1 labeling was detected in horizontal cells, specific somata of bipolar and amacrine cells, and cellular processes in all the strata of the inner plexiform layer. Somata and processes were also highly immunoreactive in the ganglion cell layer and astrocytes in the nerve fiber layer in all animals. In the P23H rat retinas, the TRPC1 distribution pattern changed according to advancing photoreceptor degeneration and the gliosis reaction, with TRPC1 immunoreactive Müller cells mainly in advanced stages of disease. The cellular TRPC1 immunoreactivity found in this work suggests different mechanisms of activation of these channels depending on the cell type. Furthermore, the results support the idea that photoreceptor loss due to RP is associated with robust TRPC1 protein expression in the rat inner retina and raise the possibility of TRPC1 channels contributing to maintain high basal calcium levels during neurodegeneration and/or maintenance processes of the inner retina.
原发性视网膜色素变性(RP)大鼠视网膜神经元和神经胶质细胞的基础细胞内钙离子水平显著升高。尽管这种情况可能会引发多种有害途径导致细胞死亡,但我们认为 TRPC1 可能通过作为储存操作钙(SOC)通道的组成部分参与维持视网膜内的钙稳态,在光感受器变性过程中具有特殊意义。在这项研究中,我们通过 Western blot 检查了健康对照大鼠视网膜(Sprague-Dawley,SD)和 RP 大鼠视网膜(P23H-1 大鼠)中 TRPC1 的表达。我们还通过免疫荧光分析了其特定的细胞分布,以识别神经退行性变过程中的变化,并确定其存在是否与退行性变视网膜中的高基础钙水平和细胞存活一致。我们发现,TRPC1 免疫染色在两种大鼠 SD 和 P23H 的整个视网膜中广泛分布,并且其表达水平在晚期变性的视网膜中与年龄对照 SD 大鼠相比显著增加。在外视网膜中,TRPC1 免疫反应性分布在色素上皮细胞、较老动物的光感受器内段和外丛状层中。在内视网膜中,TRPC1 标记物在外网状层的所有层中检测到水平细胞、双极细胞和无长突细胞的特定体和细胞过程。在所有动物的神经纤维层中的节细胞层和星形胶质细胞中,体和过程也具有高度的免疫反应性。在 P23H 大鼠视网膜中,根据光感受器变性和神经胶质反应的进展,TRPC1 分布模式发生变化,TRPC1 免疫反应性 Müller 细胞主要出现在疾病的晚期阶段。本工作中发现的细胞 TRPC1 免疫反应性表明,这些通道的激活机制因细胞类型而异。此外,结果支持这样一种观点,即由于 RP 导致的光感受器丧失与大鼠内视网膜中强大的 TRPC1 蛋白表达有关,并提出了 TRPC1 通道有助于维持神经退行性变期间和/或内视网膜维持过程中的高基础钙水平的可能性。