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视网膜色素上皮细胞贴块大小对生长因子表达的影响。

The effect of retinal pigment epithelial cell patch size on growth factor expression.

机构信息

Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA; Joint Institute of Biological Sciences, University of Tennessee, Knoxville, TN 37996, USA.

Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.

出版信息

Biomaterials. 2014 Apr;35(13):3999-4004. doi: 10.1016/j.biomaterials.2014.01.016. Epub 2014 Jan 30.

Abstract

The spatial organization of retinal pigment epithelial (RPE) cells grown in culture was controlled using micropatterning techniques in order to examine the effect of patch size on cell health and differentiation. Understanding this effect is a critical step in the development of multiplexed high throughput fluidic assays and provides a model for replicating disease states associated with the deterioration of retinal tissue during age-related macular degeneration (AMD). Microcontact printing of fibronectin on polystyrene and glass substrates was used to promote cell attachment, forming RPE patches of controlled size and shape. These colonies mimic the effect of atrophy and loss-of-function that occurs in the retina during degenerative diseases such as AMD. After 72 h of cell growth, levels of vascular endothelial growth factor (VEGF), an important biomarker of AMD, were measured. Cells were counted and morphological indicators of cell viability and tight junction formation were assessed via fluorescence microscopy. Up to a twofold increase of VEGF expression per cell was measured as colony size decreased, suggesting that the local microenvironment of, and connections between, RPE cells influences growth factor expression leading to the initiation and progression of diseases such as AMD.

摘要

使用微图案化技术控制培养的视网膜色素上皮 (RPE) 细胞的空间组织,以研究斑片大小对细胞健康和分化的影响。了解这种影响是开发高通量微流控分析的关键步骤,并为复制与年龄相关性黄斑变性 (AMD) 期间视网膜组织恶化相关的疾病状态提供了模型。将纤连蛋白微接触印刷到聚苯乙烯和玻璃基底上以促进细胞附着,形成具有可控大小和形状的 RPE 斑片。这些集落模拟了在 AMD 等退行性疾病中发生的视网膜萎缩和功能丧失的影响。在细胞生长 72 小时后,测量血管内皮生长因子 (VEGF) 的水平,VEGF 是 AMD 的一个重要生物标志物。通过荧光显微镜计数细胞并评估细胞活力和紧密连接形成的形态学指标。随着菌落大小的减小,每个细胞的 VEGF 表达增加了一倍以上,这表明 RPE 细胞之间的局部微环境和连接影响生长因子的表达,从而导致 AMD 等疾病的发生和进展。

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