Strzalka-Mrozik Barbara, Madej Marcel, Kurowska Natalia, Kruszniewska-Rajs Celina, Kimsa-Dudek Magdalena, Adamska Jolanta, Gola Joanna Magdalena
Department of Molecular Biology, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia, 40-055 Katowice, Poland.
Department of Nutrigenomics and Bromatology, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia, 40-055 Katowice, Poland.
Curr Issues Mol Biol. 2023 Feb 9;45(2):1500-1518. doi: 10.3390/cimb45020097.
Retinal pigment epithelium (RPE) is a specialized structure essential for proper vision, which is constantly exposed to oxidative damage. With aging, this damage accumulates within the RPE cells, causing various diseases, including age-related macular degeneration (AMD). Numerous antioxidant substances are used to prevent this process in humans, including lutein. This study aims to determine the differences in the expression patterns of pyroptosis genes in senescent human retinal pigment epithelial cell line ARPE-19 exposed to lutein. Changes in the expression of pyroptosis-related genes were assessed by oligonucleotide microarrays, and the results were validated by real-time RT-qPCR. The microarray analysis showed seven transcripts were differentially expressed both in the HO-treated cells versus the controls and in the lutein/HO-treated cells compared to the HO-treated cells (FC > 2.0). Depending on the used lutein, HO, or co-treatment of ARPE-19 cells, statistically significant differences in the expression of , , , and genes were confirmed by the RT-qPCR ( < 0.05). A STRING database analysis showed that the proteins encoded by the analyzed genes form a strong interaction network ( < 0.001). These data indicate that lutein modulates the expression level of pyroptosis-related genes, which may be useful for the development of new methods preventing pyroptosis pathway activation in the future.
视网膜色素上皮(RPE)是正常视觉所必需的特殊结构,其不断受到氧化损伤。随着年龄增长,这种损伤在RPE细胞内积累,导致包括年龄相关性黄斑变性(AMD)在内的各种疾病。许多抗氧化物质被用于预防人类的这一过程,包括叶黄素。本研究旨在确定暴露于叶黄素的衰老人类视网膜色素上皮细胞系ARPE - 19中焦亡基因表达模式的差异。通过寡核苷酸微阵列评估焦亡相关基因表达的变化,并通过实时RT - qPCR验证结果。微阵列分析显示,与对照组相比,在HO处理的细胞中以及与HO处理的细胞相比,叶黄素/HO处理的细胞中有7个转录本差异表达(FC > 2.0)。根据所用的叶黄素、HO或ARPE - 19细胞的联合处理情况,RT - qPCR证实了 、 、 和 基因表达存在统计学显著差异( < 0.05)。STRING数据库分析表明,所分析基因编码的蛋白质形成了一个强大的相互作用网络( < 0.001)。这些数据表明,叶黄素可调节焦亡相关基因的表达水平,这可能有助于未来开发预防焦亡途径激活的新方法。