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A Pulsatile Bioreactor for Conditioning of Tissue-Engineered Cardiovascular Constructs under Endoscopic Visualization

机译:内窥镜下可调节组织工程心血管构造的多功能生物反应器

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Heart valve disease (HVD) is a globally increasing problem and accounts for thousands of deaths yearly. Currently end-stage HVD can only be treated by total valve replacement, however with major drawbacks. To overcome the limitations of conventional substitutes, a new clinical approach based on cell colonization of artificially manufactured heart valves has been developed. Even though this attempt seems promising, a confluent and stable cell layer has not yet been achieved due to the high stresses present in this area of the human heart. This study describes a bioreactor with a new approach to cell conditioning of tissue engineered heart valves. The bioreactor provides a low pulsatile flow that grants the correct opening and closing of the valve without high shear stresses. The flow rate can be regulated allowing a steady and sensitive conditioning process. Furthermore, the correct functioning of the valve can be monitored by endoscope surveillance in real-time. The tubeless and modular design allows an accurate, simple and faultless assembly of the reactor in a laminar flow chamber. It can be concluded that the bioreactor provides a strong tool for dynamic pre-conditioning and monitoring of colonized heart valve prostheses physiologically exposed to shear stress.
机译:心脏瓣膜疾病(HVD)是一个全球性问题,每年造成数千人死亡。目前,只能通过更换总阀来治疗末级HVD,但存在主要缺点。为了克服常规替代物的局限性,已经开发了基于人工制造的心脏瓣膜的细胞定殖的新临床方法。尽管这种尝试似乎很有希望,但由于在人的心脏区域存在高应力,因此尚未实现融合和稳定的细胞层。这项研究描述了一种具有新方法的生物反应器,可以对组织工程化心脏瓣膜进行细胞调节。生物反应器提供低脉动流量,可在没有高剪切应力的情况下正确打开和关闭阀门。可以调节流速,从而实现稳定而灵敏的调节过程。此外,可以通过内窥镜监控实时监控阀门的正确功能。无管模块化设计允许在层流室内将反应器准确,简单且无故障地组装。可以得出结论,生物反应器为动态预处理和监测生理上承受剪切应力的定植的心脏瓣膜假体提供了强大的工具。

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