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一种新型人类视网膜器官型培养技术的特性分析

Characterization of a Novel Human Organotypic Retinal Culture Technique.

作者信息

Kuo Charisse Y J, Louie Henry H, Rupenthal Ilva D, Mugisho Odunayo O

机构信息

Buchanan Ocular Therapeutics Unit, Department of Ophthalmology and the New Zealand National Eye Centre, University of Auckland.

Buchanan Ocular Therapeutics Unit, Department of Ophthalmology and the New Zealand National Eye Centre, University of Auckland;

出版信息

J Vis Exp. 2021 Jun 9(172). doi: 10.3791/62046.

Abstract

Previous human organotypic retinal culture (HORC) models have utilized detached retinas; however, without the structural support conferred by retinal pigment epithelium-choroid (RPE-choroid) and sclera, the integrity of the fragile retina can easily be compromised. The aim of this study was to develop a novel HORC model that contains the retina, RPE-choroid and sclera to maintain retinal integrity when culturing retinal explants. After cutting circumferentially along the limbus to remove iris and lens, four deep incisions were made to flatten the eyecup. In contrast to previous HORC protocols, a trephine was used to cut through not only the retina but also the RPE-choroid and sclera. The resultant triple-layered explants were cultured for 72 h. Hematoxylin and Eosin staining (H&E) was used to assess anatomical structures and retinal explants were further characterized by immunohistochemistry (IHC) for apoptosis, Müller cell integrity and retinal inflammation. To confirm the possibility of disease induction, explants were exposed to high glucose (HG) and pro-inflammatory cytokines (Cyt), to mimic diabetic retinopathy (DR). The Luminex magnetic bead assay was used to measure DR-related cytokines released into the culture medium. H&E staining revealed distinct retinal lamellae and compact nuclei in retinal explants with the underlying RPE-choroid and sclera, while retinas without the underlying structures exhibited reduced thickness and severe nuclei loss. IHC results indicated absence of apoptosis and retinal inflammation as well as preserved Müller cell integrity. The Luminex assays showed significantly increased secretion of DR-associated pro-inflammatory cytokines in retinal explants exposed to HG + Cyt relative to baseline levels at 24 h. We successfully developed and characterized a novel HORC protocol in which retinal integrity was preserved without apoptosis or retinal inflammation. Moreover, the induced secretion of DR-associated pro-inflammatory biomarkers when exposing retinal explants to HG + Cyt suggests that this model could be used for clinically translatable retinal disease studies.

摘要

以往的人视网膜器官型培养(HORC)模型使用的是分离的视网膜;然而,由于缺乏视网膜色素上皮-脉络膜(RPE-脉络膜)和巩膜提供的结构支持,脆弱的视网膜完整性很容易受到损害。本研究的目的是开发一种新型的HORC模型,该模型包含视网膜、RPE-脉络膜和巩膜,以在培养视网膜外植体时维持视网膜的完整性。沿角膜缘周向切开以去除虹膜和晶状体后,进行四个深度切口以使眼杯变平。与以往的HORC方案不同,使用环钻不仅切开视网膜,还切开RPE-脉络膜和巩膜。将得到的三层外植体培养72小时。苏木精和伊红染色(H&E)用于评估解剖结构,视网膜外植体通过免疫组织化学(IHC)进一步表征细胞凋亡、Müller细胞完整性和视网膜炎症。为了确认疾病诱导的可能性,将外植体暴露于高糖(HG)和促炎细胞因子(Cyt),以模拟糖尿病性视网膜病变(DR)。使用Luminex磁珠分析法测量释放到培养基中的DR相关细胞因子。H&E染色显示视网膜外植体中具有明显的视网膜板层和致密的细胞核,其下方为RPE-脉络膜和巩膜,而没有下方结构的视网膜厚度减小且细胞核严重丢失。IHC结果表明不存在细胞凋亡和视网膜炎症,并且Müller细胞完整性得以保留。Luminex分析显示,相对于24小时的基线水平,暴露于HG + Cyt的视网膜外植体中DR相关促炎细胞因子的分泌显著增加。我们成功开发并表征了一种新型的HORC方案,其中视网膜完整性得以保留,且无细胞凋亡或视网膜炎症。此外,将视网膜外植体暴露于HG + Cyt时诱导分泌DR相关促炎生物标志物,表明该模型可用于临床可转化的视网膜疾病研究。

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