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本文引用的文献

1
Functional consequences of cell type-restricted expression of laminin α5 in mouse placental labyrinth and kidney glomerular capillaries.层粘连蛋白 α5 在小鼠胎盘绒毛和肾脏肾小球毛细血管中的细胞类型特异性表达的功能后果。
PLoS One. 2012;7(7):e41348. doi: 10.1371/journal.pone.0041348. Epub 2012 Jul 20.
2
Effects of proinflammatory cytokines on the claudin-19 rich tight junctions of human retinal pigment epithelium.促炎细胞因子对人视网膜色素上皮细胞中富含 claudin-19 的紧密连接的影响。
Invest Ophthalmol Vis Sci. 2012 Jul 27;53(8):5016-28. doi: 10.1167/iovs.11-8311.
3
Blood-derived human iPS cells generate optic vesicle-like structures with the capacity to form retinal laminae and develop synapses.血液来源的人类诱导多能干细胞生成具有形成视网膜层和发育突触能力的类视囊结构。
Invest Ophthalmol Vis Sci. 2012 Apr 18;53(4):2007-19. doi: 10.1167/iovs.11-9313.
4
Embryonic stem cell trials for macular degeneration: a preliminary report.胚胎干细胞治疗黄斑变性:初步报告。
Lancet. 2012 Feb 25;379(9817):713-20. doi: 10.1016/S0140-6736(12)60028-2. Epub 2012 Jan 24.
5
Integration of tight junctions and claudins with the barrier functions of the retinal pigment epithelium.紧密连接和 Claudin 与视网膜色素上皮的屏障功能整合。
Prog Retin Eye Res. 2011 Sep;30(5):296-323. doi: 10.1016/j.preteyeres.2011.06.002. Epub 2011 Jun 17.
6
Self-organizing optic-cup morphogenesis in three-dimensional culture.三维培养中的自组织视杯形态发生。
Nature. 2011 Apr 7;472(7341):51-6. doi: 10.1038/nature09941.
7
Key enzymes of the retinoid (visual) cycle in vertebrate retina.脊椎动物视网膜中类视黄醇(视觉)循环的关键酶。
Biochim Biophys Acta. 2012 Jan;1821(1):137-51. doi: 10.1016/j.bbalip.2011.03.005. Epub 2011 Apr 5.
8
Characterization of conditioned media collected from aged versus young human eye cups.从老年和年轻人类杯状细胞中收集的条件培养基的特性。
Invest Ophthalmol Vis Sci. 2011 Jul 29;52(8):5963-72. doi: 10.1167/iovs.10-6440.
9
Claudin-19 and the barrier properties of the human retinal pigment epithelium.Claudin-19 和人视网膜色素上皮的屏障特性。
Invest Ophthalmol Vis Sci. 2011 Mar 14;52(3):1392-403. doi: 10.1167/iovs.10-5984. Print 2011 Mar.
10
The new paradigm: retinal pigment epithelium cells generated from embryonic or induced pluripotent stem cells.新范例:由胚胎或诱导多能干细胞生成的视网膜色素上皮细胞。
Pigment Cell Melanoma Res. 2011 Feb;24(1):21-34. doi: 10.1111/j.1755-148X.2010.00772.x. Epub 2010 Oct 7.

利用人胚胎干细胞衍生的视网膜色素上皮细胞构建血视网膜屏障:转录组和功能分析。

Engineering a blood-retinal barrier with human embryonic stem cell-derived retinal pigment epithelium: transcriptome and functional analysis.

机构信息

Department of Surgery, Yale University School of Medicine, New Haven, CT, USA.

出版信息

Stem Cells Transl Med. 2013 Jul;2(7):534-44. doi: 10.5966/sctm.2012-0134. Epub 2013 Jun 3.

DOI:10.5966/sctm.2012-0134
PMID:23734062
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3697821/
Abstract

Retinal degenerations are a major cause of impaired vision in the elderly. Degenerations originate in either photoreceptors or the retinal pigment epithelium (RPE). RPE forms the outer blood-retinal barrier and functions intimately with photoreceptors. Animal models and cultures of RPE are commonly used to screen potential pharmaceuticals or explore RPE replacement therapy, but human RPE differs from that of other species. Human RPE forms a barrier using tight junctions composed of a unique set of claudins, proteins that determine the permeability and selectivity of tight junctions. Human adult RPE fails to replicate these properties in vitro. To develop a culture model for drug development and tissue-engineering human retina, RPE were derived from human embryonic stem cells (hESCs). Barrier properties of RPE derived from the H1 and H9 hESC lines were compared with a well-regarded model of RPE function, human fetal RPE isolated from 16-week-gestation fetuses (hfRPE). A serum-free medium (SFM-1) that enhanced the redifferentiation of hfRPE in culture also furthered the maturation of hESC-derived RPE. In SFM-1, the composition, selectivity, and permeability of tight junctions were similar to those of hfRPE. Comparison of the transcriptomes by RNA sequencing and quantitative reverse transcription-polymerase chain reaction revealed a high correlation between the hESCs and hfRPE, but there were notable differences in the expression of adhesion junction and membrane transport genes. These data indicated that hESC-derived RPE is highly differentiated but may be less mature than RPE isolated from 16-week fetuses. The study identified a panel of genes to monitor the maturation of RPE.

摘要

视网膜变性是老年人视力障碍的主要原因。变性起源于光感受器或视网膜色素上皮 (RPE)。RPE 形成了外血视网膜屏障,并与光感受器密切相关。动物模型和 RPE 培养物常用于筛选潜在药物或探索 RPE 替代疗法,但人类 RPE 与其他物种不同。人类 RPE 通过由一组独特的紧密连接蛋白组成的紧密连接形成屏障,这些蛋白决定了紧密连接的通透性和选择性。人成年 RPE 在体外无法复制这些特性。为了开发用于药物开发和组织工程学的人类视网膜培养模型,从人胚胎干细胞 (hESC) 中提取 RPE。将源自 H1 和 H9 hESC 系的 RPE 的屏障特性与公认的 RPE 功能模型(从 16 周龄胎儿中分离出的人胎儿 RPE(hfRPE))进行了比较。一种增强 hfRPE 在培养中再分化的无血清培养基 (SFM-1) 也进一步促进了 hESC 衍生的 RPE 的成熟。在 SFM-1 中,紧密连接的组成、选择性和通透性与 hfRPE 相似。通过 RNA 测序和定量逆转录聚合酶链反应进行的转录组比较显示,hESC 和 hfRPE 之间具有高度相关性,但粘附连接和膜转运基因的表达存在显著差异。这些数据表明,hESC 衍生的 RPE 高度分化,但可能不如从 16 周龄胎儿中分离出的 RPE 成熟。该研究确定了一组基因来监测 RPE 的成熟。