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A bilayer photoreceptor‐retinal tissue model with gradient cell density design: A study of microvalve‐based bioprinting

机译:具有梯度细胞密度设计的双层光感受器 - 视网膜组织模型:基于微型阀的生物印刷

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摘要

Abstract ARPE‐19 and Y79 cells were precisely and effectively delivered to form an in vitro retinal tissue model via 3D cell bioprinting technology. The samples were characterized by cell viability assay, haematoxylin and eosin and immunofluorescent staining, scanning electrical microscopy and confocal microscopy, and so forth. The bioprinted ARPE‐19 cells formed a high‐quality cell monolayer in 14?days. Manually seeded ARPE‐19 cells were poorly controlled during and after cell seeding, and they aggregated to form uneven cell layer. The Y79 cells were subsequently bioprinted on the ARPE‐19 cell monolayer to form 2 distinctive patterns. The microvalve‐based bioprinting is efficient and accurate to build the in vitro tissue models with the potential to provide similar pathological responses and mechanism to human diseases, to mimic the phenotypic endpoints that are comparable with clinical studies, and to provide a realistic prediction of clinical efficacy.
机译:摘要精确有效地递送ARPE-19和Y79细胞以通过3D细胞生物监测技术形成体外视网膜组织模型。 通过细胞活力测定,血红素和曙红和免疫荧光染色,扫描电显微镜和共聚焦显微镜等,其特征在于样品。 Bioplinted Arpe-19细胞在14天内形成高质量的细胞单层。 在细胞播种期间和之后,手动播种的ARPE-19细胞较差,并且它们聚集以形成不均匀的细胞层。 随后在ARPE-19细胞单层上生成Y79细胞以形成2个独特的图案。 基于微型肢体的生物印刷品是有效且准确地构建体外组织模型,潜力为人类疾病提供类似的病理反应和机制,以模仿与临床研究相当的表型终点,并提供临床的现实预测 功效。

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