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首页> 外文期刊>Investigative ophthalmology & visual science >Biodegradable polymer film as a source for formation of human fetal retinal pigment epithelium spheroids.
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Biodegradable polymer film as a source for formation of human fetal retinal pigment epithelium spheroids.

机译:可生物降解的聚合物薄膜可作为形成人类胎儿视网膜色素上皮球的来源。

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PURPOSE: To evaluate the attachment of human fetal rctinal pigment epithelial (HFRPE) cells to a biodegradable polymer film with subsequent formation of spheroids in vitro. METHODS: Ten biodegradable polymer films with different compositions were examined for their physical properties and ease of manipulation under a dissecting microscope. The film with the most suitable handling characteristics was chosen, and a purely isolated sheet of HFRPE cells was attached to it. The purity of the cells was assessed by their pigmentation and expression of cytokeratin. Proliferation was assessed by incorporation of 5-bromo-2'-deoxyuridine (BrdtJ). Cellular structure was analyzed under light and electron microscopes, and the functional capability of the cells was evaluated by rod outer segment (ROS) phagocytosis. RESULTS: The polymer film with composition 50:50 poly (DL-lactide) (PLA)/poly (DL-lactide-co-glycolide) (PLG) with an inherent viscosity of 1.03 dl/g was found to be the most suitable for handling under the microscope. Sheets of HFRPE cells attached to the polymer films within 48 hours and began to form spheroids. All the isolated cells were pigmented and expressed cytokeratin. They possessed a cuboidal morphology, numerous apical microvilli, and no sign of dedifferentiation. HFRPE cells produced extracellular matrix (collagen filaments) on their basal side, filling the cavities of the polymer film. The cells subsequently proliferated, incorporated BrdU, migrated onto the culture plate to form monolayers, and phagocytized ROS. CONCLUSIONS: Biodegradable polymer films can be used as a scaffold for the adhesion of the HFRPE sheet and formation of spheroids. Spheroids represent a source of high density and well-differentiated HFRPE cells that are easy to transfer. Furthermore, the stricture of the membrane makes it suitable for additional applications.
机译:目的:评估人类胎儿视网膜色素上皮细胞(HFRPE)与可生物降解的聚合物膜的附着力,随后在体外形成球体。方法:在解剖显微镜下检查了十种具有不同组成的可生物降解的聚合物膜的物理性质和易于操作。选择具有最合适处理特性的薄膜,然后将纯分离的HFRPE电池片粘贴到该薄膜上。通过细胞的色素沉着和细胞角蛋白的表达来评估细胞的纯度。通过掺入5-溴-2'-脱氧尿苷(BrdtJ)来评估增殖。在光镜和电子显微镜下分析细胞结构,并通过杆外节(ROS)吞噬作用评估细胞的功能能力。结果:组成比为50:50的特性粘度为1.03 dl / g的聚(DL-丙交酯)(PLA)/聚(DL-丙交酯-共-乙交酯)(PLG)的聚合物膜最适合用于在显微镜下处理。 HFRPE细胞片在48小时内附着到聚合物膜上,并开始形成球体。所有分离的细胞均被染色并表达细胞角蛋白。它们具有长方体形态,许多顶端微绒毛,并且没有去分化的迹象。 HFRPE细胞在其基底侧产生细胞外基质(胶原蛋白细丝),填充了聚合物膜的空腔。随后细胞增殖,掺入BrdU,迁移到培养板上以形成单层,并吞噬ROS。结论:可生物降解的聚合物膜可用作HFRPE片的粘附和球体形成的支架。球状体代表了高密度和分化良好的HFRPE细胞的来源,这些细胞易于转移。此外,膜的狭窄使其适用于其他应用。

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