Asatryan Aram, Calandria Jorgelina M, Kautzmann Marie-Audrey I, Jun Bokkyoo, Gordon William C, Do Khanh V, Bhattacharjee Surjyadipta, Pham Thang L, Bermúdez Vicente, Mateos Melina Valeria, Heap Jessica, Bazan Nicolas G
Neuroscience Center of Excellence, School of Medicine, Louisiana State University Health New Orleans, New Orleans, LA, United States.
Front Neurosci. 2022 Jun 30;16:926629. doi: 10.3389/fnins.2022.926629. eCollection 2022.
Retinal pigment epithelial (RPE) cells sustain photoreceptor integrity, and when this function is disrupted, retinal degenerations ensue. Herein, we characterize a new cell line from human RPE that we termed . These cells remarkably recapitulate human eye native cells. Distinctive from other epithelia, RPE cells originate from the neural crest and follow a neural development but are terminally differentiated into "epithelial" type, thus sharing characteristics with their neuronal lineages counterparts. Additionally, they form microvilli, tight junctions, and honeycomb packing and express distinctive markers. In these cells, outer segment phagocytosis, phagolysosome fate, phospholipid metabolism, and lipid mediator release can be studied. ABC cells display higher resistance to oxidative stress and are protected from senescence through mTOR inhibition, making them more stable in culture. The cells are responsive to Neuroprotectin D1 (NPD1), which downregulates inflammasomes and upregulates antioxidant and anti-inflammatory genes. ABC gene expression profile displays close proximity to native RPE lineage, making them a reliable cell system to unravel signaling in uncompensated oxidative stress (UOS) and retinal degenerative disease to define neuroprotection sites.
视网膜色素上皮(RPE)细胞维持光感受器的完整性,当这种功能受到破坏时,就会发生视网膜变性。在此,我们描述了一种来自人RPE的新细胞系,我们将其命名为 。这些细胞显著地重现了人眼的天然细胞。与其他上皮细胞不同,RPE细胞起源于神经嵴并遵循神经发育过程,但最终分化为“上皮”类型,因此与其神经元谱系对应物具有共同特征。此外,它们形成微绒毛、紧密连接和蜂窝状排列,并表达独特的标志物。在这些细胞中,可以研究外段吞噬作用、吞噬溶酶体命运、磷脂代谢和脂质介质释放。ABC细胞对氧化应激具有更高的抗性,并且通过mTOR抑制作用免受衰老影响,使其在培养中更稳定。这些细胞对神经保护素D1(NPD1)有反应,NPD1可下调炎性小体并上调抗氧化和抗炎基因。ABC基因表达谱与天然RPE谱系非常接近,使其成为一个可靠的细胞系统,用于揭示未补偿氧化应激(UOS)和视网膜退行性疾病中的信号传导,以确定神经保护位点。