Zhu Rui-Lin, Fang Yuan, Yu Hong-Hua, Chen Dong F, Yang Liu, Cho Kin-Sang
Department of Ophthalmology, Peking University First Hospital, Beijing, China; Schepens Eye Research Institute, Massachusetts Eye and Ear, Harvard Medical School, Boston, MA, USA.
Department of Ophthalmology and Visual Science, Eye & ENT Hospital, Shanghai Medical College, Fudan University, Shanghai, China.
Neural Regen Res. 2021 Jul;16(7):1317-1322. doi: 10.4103/1673-5374.301034.
Müller cells (MC) are considered dormant retinal progenitor cells in mammals. Previous studies demonstrated ephrin-As act as negative regulators of neural progenitor cells in the retina and brain. It remains unclear whether the lack of ephrin-A2/A3 is sufficient to promote the neurogenic potential of MC. Here we investigated whether the MC is the primary retinal cell type expressing ephrin-A2/A3 and their role on the neurogenic potential of Müller cells. In this study, we showed that ephrin-A2/A3 and their receptor EphA4 were expressed in retina and especially enriched in MC. The level of ephrinAs/EphA4 expression increased as the retina matured that is correlated with the reduced proliferative and progenitor cell potential of MC. Next, we investigated the proliferation in primary MC cultures isolated from wild-type and A2 A3 mice by 5-ethynyl-2'-deoxyuridine (EdU) incorporation. We detected a significant increase of EdU cells in MC derived from A2 A3 mice. Next, we investigated the role of ephrin-A2/A3 in mice undergoing photoreceptor degeneration such as Rhodopsin knockout (Rho) mice. To further evaluate the role of ephrin-A2/A3 in MC proliferation in vivo, EdU was injected intraperitoneally to adult wild-type, A2 A3 , Rho and Rho A2 A3 mice and the numbers of EdU cells distributed among different layers of the retina. EphrinAs/EphA4 expression was upregulated in the retina of Rho mice compared to the wild-type mice. In addition, cultured MC derived from ephrin-A2 A3 mice also expressed higher levels of progenitor cell markers and exhibited higher proliferation potential than those from wild-type mice. Interestingly, we detected a significant increase of EdU cells in the retinas of adult ephrin-A2 A3 mice mainly in the inner nuclear layer; and these EdU cells were co-localized with MC marker, cellular retinaldehyde-binding protein, suggesting some proliferating cells are from MC. In Rhodopsin knockout mice (Rho A2 A3 mice), a significantly greater amount of EdU cells were located in the ciliary body, retina and RPE than that of Rho mice. Comparing between 6 and 12 weeks old Rho A2 A3 mice, we recorded more EdU cells in the outer nuclear layer in the 12-week-old mice undergoing severe retinal degeneration. Taken together, Ephrin-A2/A3 are negative regulators of the proliferative and neurogenic potentials of MC. Absence of ephrin-A2/A3 promotes the migration of proliferating cells into the outer nuclear layer and may lead to retinal cell regeneration. All experimental procedures were approved by the Animal Care and Use Committee at Schepens Eye Research Institute, USA (approval No. S-353-0715) on October 24, 2012.
穆勒细胞(MC)被认为是哺乳动物中处于休眠状态的视网膜祖细胞。先前的研究表明,ephrin-A类蛋白作为视网膜和大脑中神经祖细胞的负调控因子。目前尚不清楚缺乏ephrin-A2/A3是否足以促进穆勒细胞的神经发生潜能。在此,我们研究了穆勒细胞是否是表达ephrin-A2/A3的主要视网膜细胞类型,以及它们对穆勒细胞神经发生潜能的作用。在本研究中,我们发现ephrin-A2/A3及其受体EphA4在视网膜中表达,且在穆勒细胞中尤其富集。随着视网膜成熟,ephrin-A类蛋白/EphA4的表达水平升高,这与穆勒细胞增殖和祖细胞潜能降低相关。接下来,我们通过5-乙炔基-2'-脱氧尿苷(EdU)掺入法研究了从野生型和A2 A3小鼠分离的原代穆勒细胞培养物中的增殖情况。我们检测到来自A2 A3小鼠的穆勒细胞中EdU阳性细胞显著增加。接下来,我们研究了ephrin-A2/A3在经历光感受器退化的小鼠(如视紫红质基因敲除(Rho)小鼠)中的作用。为了进一步评估ephrin-A2/A3在体内穆勒细胞增殖中的作用,将EdU腹腔注射到成年野生型、A2 A3、Rho和Rho A2 A3小鼠体内,并统计分布在视网膜不同层的EdU阳性细胞数量。与野生型小鼠相比,Rho小鼠视网膜中ephrin-A类蛋白/EphA4表达上调。此外,与野生型小鼠来源的培养穆勒细胞相比,ephrin-A2 A3小鼠来源的培养穆勒细胞也表达更高水平的祖细胞标志物,并表现出更高的增殖潜能。有趣的是,我们在成年ephrin-A2 A3小鼠的视网膜中检测到EdU阳性细胞显著增加,主要位于内核层;并且这些EdU阳性细胞与穆勒细胞标志物细胞视黄醛结合蛋白共定位,表明一些增殖细胞来自穆勒细胞。在视紫红质基因敲除小鼠(Rho A2 A3小鼠)中,与Rho小鼠相比,睫状体、视网膜和视网膜色素上皮中EdU阳性细胞数量显著更多。比较6周龄和12周龄的Rho A2 A3小鼠,我们在12周龄经历严重视网膜退化的小鼠的外核层中记录到更多EdU阳性细胞。综上所述,Ephrin-A2/A3是穆勒细胞增殖和神经发生潜能的负调控因子。缺乏ephrin-A2/A3会促进增殖细胞迁移到外核层,并可能导致视网膜细胞再生。所有实验程序均于2012年10月24日获得美国Schepens眼科研究所动物护理和使用委员会的批准(批准号:S-353-0715)。