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Development of a Bioreactor to Culture Tissue Engineered Ureters Based on the Application of Tubular OPTIMAIX 3D Scaffolds

机译:基于管状OPTIMAIX 3D支架的应用开发用于培养组织工程输尿管的生物反应器

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摘要

Regenerative medicine, tissue engineering and biomedical research give hope to many patients who need bio-implants. Tissue engineering applications have already been developed based on bioreactors. Physiological ureter implants, however, do not still function sufficiently, as they represent tubular hollow structures with very specific cellular structures and alignments consisting of several cell types.The aim ofthis study was to a develop a new bioreactor system based on seamless, collagenous, tubular OPTIMAIX 3D prototype sponge as scaffold material for ex-vivo culturing of a tissue engineered ureter replacement for future urological applications. Particular emphasis was given to a great extent to mimic the physiological environment similar to the in vivo situation of a ureter. NIH-3T3 fibroblasts, C2C12, Urotsa and primary genitourinary tract cells were applied as co-cultures on the scaffold and the penetration of cells into the collagenous material was followed. By the end of this study, the bioreactor was functioning, physiological parameter as temperature and pH and the newly developed BIOREACTOR system is applicable to tubular scaffold materials with different lengths and diameters. The automatized incubation system worked reliably. The tubular OPTIMAIX 3D sponge was a suitable scaffold material for tissue engineering purposes and co-cultivation procedures. (C) 2015 S. Karger AG, Basel
机译:再生医学,组织工程学和生物医学研究为许多需要生物植入物的患者带来了希望。已经基于生物反应器开发了组织工程应用。然而,生理输尿管植入物仍然不能充分发挥作用,因为它们代表具有非常特定的细胞结构和排列方式的管状空心结构,并由几种细胞类型组成。本研究的目的是开发一种基于无缝,胶原,管状的新型生物反应器系统OPTIMAIX 3D原型海绵作为支架材料,用于离体培养组织工程化输尿管,以备将来泌尿外科应用。特别强调在很大程度上模拟类似于输尿管体内情况的生理环境。将NIH-3T3成纤维细胞,C2C12,Urotsa和原泌尿生殖道细胞作为共培养物施加在支架上,并跟踪细胞向胶原材料中的渗透。到本研究结束时,生物反应器开始运行,其生理参数随温度和pH值变化,新开发的BIOREACTOR系统适用于不同长度和直径的管状支架材料。自动化的孵化系统工作可靠。管状OPTIMAIX 3D海绵是用于组织工程目的和共培养程序的合适支架材料。 (C)2015 S.Karger AG,巴塞尔

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