首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Identifying an optimal seeding protocol and endothelial cell substrate for biohybrid lung development
【24h】

Identifying an optimal seeding protocol and endothelial cell substrate for biohybrid lung development

机译:用于生物冬肺发育的最佳播种方案和内皮细胞基底

获取原文
获取原文并翻译 | 示例
           

摘要

Several key prerequisites need to be fulfilled for the development of a biohybrid lung, which can offer an actual alternative to lung transplantation. A major aspect is an optimized haemocompatibility of the device's artificial surfaces via endothelial cell seeding. In this study, four different types of polymeric gas exchange hollow fibre membranes (HFMs) were analysed utilizing four different seeding protocols in order to identify the ideal combination for sufficient long-term endothelialization. Human cord blood-derived endothelial cells (HCBECs) were used for the endothelialization of polypropylene HFMs with two different pore sizes and poly-4-methyl-1-pentene HFMs, both with and without heparin/albumin coating. The qualitative and quantitative impact of four different rotational seeding protocols regarding long-term HFM endothelialization and the impact of inflammatory stimulation on the seeded HCBECs were examined by fluorescence microscopy, cell counting, and analysis of relative expression levels of activation, shear stress, and thrombogenic state markers. Optimized endothelial cell seeding and long-term cultivation were only achieved using heparin/albumin-coated poly-4-methyl-1-pentene HFMs, applying 24 hr of rotational speed at 1 rpm followed by 120 hr of static culture. Neither cell-to-HFM contact nor the rotational cultivation procedure showed an impact on the physiological anti-thrombogenic and anti-inflammatory HCBEC activation status. Additionally, the cells maintained their physiological responsiveness towards inflammatory stimulation. Rotational seeding strategies and a seamless heparin/albumin coating of the HFMs are crucial requirements for a sufficient and long-lasting endothelialization and thus a key element in the future development and in vivo application of the biohybrid lung.
机译:需要满足几个关键的先决条件来开发生物喂dbrid肺,这可以提供肺移植的实际替代品。主要方面是通过内皮细胞播种的装置人造表面的优化血换。在该研究中,利用四种不同的播种方案分析了四种不同类型的聚合物气体交换中空纤维膜(HFMS),以鉴定足够的长期内皮化的理想组合。人脐带血的内皮细胞(HCBECs)用于具有两种不同孔径和聚-4-甲基-1-戊烯HFM的聚丙烯HFM的内皮化,两者都有和没有肝素/白蛋白涂层。通过荧光显微镜,细胞计数和激活,剪切应力和血栓形成和血栓形成水平的荧光显微镜,细胞计数和血栓形成水平的定性和定量影响对长期HFM内皮化和炎症刺激对种子HCBEC的影响的定性和定量影响。国家标记。仅使用肝素/白蛋白涂覆的聚-4-甲基-1-戊烯HFMS实现优化的内皮细胞播种和长期培养,以1rpm施加24小时的转速,然后施加120小时的静态培养物。既不是细胞至HFM接触也不是旋转培养程序对生理抗血栓形成和抗炎HCBEC活化状态显示出影响。另外,细胞对炎症刺激保持其生理反应性。旋转播种策略和HFMS的无缝肝素/白蛋白涂层对足够和长期的内皮化的关键要求,因此是未来发展中的关键因素和生物喂水肺的体内应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号