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移植的胚胎视网膜干细胞有可能修复受损的老鼠视网膜。

Transplanted embryonic retinal stem cells have the potential to repair the injured retina in mice.

机构信息

Department of Ophthalmology, Shandong Provincial Western Hospital, Shandong Provincial ENT Hospital, Jinan, China.

Department of Ophthalmology, Shandong Provincial Hospital Affiliated to Shandong First Medical University, No324, Jingwu Road, 250021, Jinan, China.

出版信息

BMC Ophthalmol. 2021 Jan 9;21(1):26. doi: 10.1186/s12886-020-01795-1.

Abstract

BACKGROUND

Stem cell transplantation has been reported as one of the promising strategies to treat retinal degenerative diseases. But, the application and the role of retina stem cells (RSCs) in the treatment of patients with retinal degenerative diseases have not been fully revealed. This study aimed to investigate the potential role of transplantation of the embryo-derived RSCs into the vitreous cavity in repairing the damaged retina in mice.

METHODS

RSCs were isolated from Kunming mice E17 embryonic retina and ciliary body tissues, and labeled with 5-bromo-2'-deoxyuridin (BrdU). Retinal optic nerve crush injury was induced in left eyes in male Kunming mice by ring clamping the optic nerve. The 6th -generation of BrdU-labeled RSCs were transplanted into the damaged retina by the intravitreal injection, and saline injected eyes were used as the control. Hematoxylin and eosin histological staining, and BrdU, Nestin and Pax6 immunostaining were performed. Electroretinogram (ERG) was used for assessing the electrical activity of the retina.

RESULTS

Embryo-derived RSCs were identified by the positive stains of Pax6 and Nestin. BrdU incorporation was detected in the majority of RSCs. The damaged retina showed cellular nuclear disintegration and fragmentation in the retinal tissue which progressed over the periods of clamping time, and decreased amplitudes of a and b waves in ERG. In the damaged retina with RSCs transplantation, the positive staining for BrdU, Pax6 and Nestin were revealed on the retinal surface. Notably, RSCs migrated into the retinal ganglion cell layer and inner nuclear. Transplanted RSCs significantly elevated the amplitudes of a waves in retina injured eyes.

CONCLUSIONS

Embryonic RSCs have similar characteristics to neural stem cells. Transplantation of RSCs by intravitreal injection would be able to repair the damaged retina.

摘要

背景

干细胞移植已被报道为治疗视网膜退行性疾病的一种有前途的策略之一。但是,视网膜干细胞(RSCs)在治疗视网膜退行性疾病患者中的应用和作用尚未完全揭示。本研究旨在探讨胚胎源性 RSCs 移植到玻璃体腔中修复受损视网膜的潜在作用。

方法

从小鼠 E17 胚胎视网膜和睫状体组织中分离 RSCs,并标记 5-溴-2'-脱氧尿苷(BrdU)。通过环夹视神经诱导雄性昆明小鼠左眼视网膜视神经挤压损伤。通过玻璃体内注射将第 6 代 BrdU 标记的 RSCs 移植到受损的视网膜中,将注射盐水的眼睛作为对照。进行苏木精和伊红组织学染色以及 BrdU、Nestin 和 Pax6 免疫染色。用电视网膜图(ERG)评估视网膜的电活动。

结果

胚胎源性 RSCs 通过 Pax6 和 Nestin 的阳性染色得到鉴定。BrdU 掺入在大多数 RSCs 中被检测到。受损的视网膜在视网膜组织中显示细胞核解体和碎片化,随着夹压时间的延长而进展,ERG 中的 a 和 b 波振幅降低。在 RSCs 移植的受损视网膜中,视网膜表面显示 BrdU、Pax6 和 Nestin 的阳性染色。值得注意的是,RSCs 迁移到视网膜神经节细胞层和内核层。移植的 RSCs 显著提高了受损眼睛的 a 波振幅。

结论

胚胎 RSCs 具有与神经干细胞相似的特征。玻璃体内注射移植 RSCs 能够修复受损的视网膜。

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