Departments of Surgery and of Ophthalmology and Visual Science, Yale University School of Medicine, PO Box 208062, 310 Cedar Street, New Haven, CT 06520-8062, USA.
Exp Eye Res. 2014 Sep;126:16-26. doi: 10.1016/j.exer.2013.12.018. Epub 2014 Apr 14.
The principal function of an epithelium is to form a dynamic barrier that regulates movement between body compartments. Each epithelium is specialized with barrier functions that are specific for the tissues it serves. The apical surface commonly faces a lumen, but the retinal pigment epithelium (RPE) appears to be unique by a facing solid tissue, the sensory retina. Nonetheless, there exists a thin (subretinal) space that can become fluid filled during pathology. RPE separates the subretinal space from the blood supply of the outer retina, thereby forming the outer blood-retinal barrier. The intricate interaction between the RPE and sensory retina presents challenges for learning how accurately culture models reflect native behavior. The challenge is heightened by findings that detail the variation of RPE barrier proteins both among species and at different stages of the life cycle. Among the striking differences is the expression of claudin family members. Claudins are the tight junction proteins that regulate ion diffusion across the spaces that lie between the cells of a monolayer. Claudin expression by RPE varies with species and life-stage, which implies functional differences among commonly used animal models. Investigators have turned to transcriptomics to supplement functional studies when comparing native and cultured tissue. The most detailed studies of the outer blood-retinal barrier have focused on human RPE with transcriptome and functional studies reported for human fetal, adult, and stem-cell derived RPE.
上皮组织的主要功能是形成一个动态的屏障,调节身体隔室之间的物质运动。每种上皮组织都具有特定的屏障功能,这些功能是为其服务的组织所特有的。上皮组织的顶侧表面通常朝向腔,但视网膜色素上皮(RPE)似乎因其面对的是感觉视网膜这一实体组织而显得独特。尽管如此,仍然存在一个可以在病理情况下充满液体的薄(视网膜下)空间。RPE 将视网膜下空间与外视网膜的血液供应隔开,从而形成了外血视网膜屏障。RPE 和感觉视网膜之间复杂的相互作用给了解培养模型如何准确反映自然行为带来了挑战。这一挑战因发现 RPE 屏障蛋白在物种间和生命周期的不同阶段存在差异而加剧。其中一个显著的差异是紧密连接蛋白家族成员的表达。紧密连接蛋白是调节单层细胞之间空间中离子扩散的紧密连接蛋白。RPE 对紧密连接蛋白的表达因物种和生命阶段而异,这意味着常用动物模型之间存在功能差异。研究人员转向转录组学来补充比较天然组织和培养组织的功能研究。对最详细的外血视网膜屏障的研究集中在人 RPE 上,已有关于人胎儿、成人和干细胞衍生的 RPE 的转录组和功能研究报告。