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An intelligent bioreactor system for the cultivation of a bioartificial vascular graft

机译:用于生物人工血管移植物培养的智能生物反应器系统

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摘要

Cardiovascular disease is the most common cause of death, accounting for 31% of deaths worldwide. As purely synthetic grafts implicate concomitant anticoagulation and autologous veins are rare, tissue‐engineered vascular grafts are urgently needed. For successful in vitro cultivation of a bioartificial vascular graft, the suitable bioreactor should provide conditions comparable to vasculogenesis in the body. Such a system has been developed and characterized under continuous and pulsatile flow, and a variety of sensors has been integrated into the bioreactor to control parameters such as temperature, pressure up to 500 mbar, glucose up to 4.5 g/L, lactate, oxygen up to 150 mbar, and flow rate. Wireless data transfer (using the ZigBee specification based on the IEEE 802.15.4 standard) and multiple corresponding sensor signal processing platforms have been implemented as well. Ultrasound is used for touchless monitoring of the growing vascular structure as a quality control before implantation (maximally achieved ultrasound resolution 65 μm at 15 MHz). To withstand the harsh conditions of steam sterilization (120°C for 20 min), all electronics were encapsulated. With such a comprehensive physiologically conditioning, sensing, and imaging bioreactor system, all the requirements for a successful cultivation of vascular grafts are available now.
机译:心血管疾病是最常见的死亡原因,占全世界死亡的31%。由于纯合成移植物伴有抗凝作用,自体静脉很少见,因此迫切需要组织工程化的血管移植物。为了成功地体外培养生物人工血管移植物,合适的生物反应器应提供与体内血管生成相当的条件。已经开发出了这样的系统,并在连续和脉动的流量下对其进行了表征,并将各种传感器集成到生物反应器中以控制参数,例如温度,压力高达500 mbar,葡萄糖高达4.5 g / L,乳酸,氧升高至150毫巴,流量无线数据传输(使用基于IEEE 802.15.4标准的ZigBee规范)和多个相应的传感器信号处理平台也已实现。超声波用于植入前的质量控制,用于生长中的血管结构的非接触式监测(在15 MHz时最大可达到65μm的超声分辨率)。为了承受蒸汽灭菌的苛刻条件(120°C持续20分钟),所有电子设备都进行了封装。有了如此全面的生理条件调节,传感和成像生物反应器系统,现在就可以成功培养血管移植物。

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