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首页> 外文期刊>The international journal of artificial organs >A novel device for the automatic decellularization of biological tissues.
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A novel device for the automatic decellularization of biological tissues.

机译:一种用于生物组织自动脱细胞的新颖设备。

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Decellularized biological scaffolds represent a promising solution for tissue engineering. They offer a good substrate for cells in terms of biochemical composition, ultrastructure and mechanical properties without generating an immunogenic response. The aim of this study was to design and develop a device for the automatic decellularization of biological tissues to overcome manual operation limits, toward a good manufacturing practice-compliant process.A versatile, modular and easy-to-use device was designed, able to automatically exchange decellularization fluids and to provide mechanical shaking according to a user-defined protocol. Preliminary decellularization tests were made on porcine abdominal aortas comparing results between conventional process and device-operated process using water, sodium deoxycholate and DNase. Vessels were processed up to 4 cycles of the protocol and after each decellularization cycle histological analyses (hematoxylin-eosin, Movat pentachrome and DAPI stainings) were observed. Preliminary mechanical tests were also performed to compare the mechanical behavior of blood vessels processed with the 2 methods mentioned above.Briefly, the device consists of decellularization chambers, a shaking system and hydraulic modules for the exchange of fluids. The device was bench-tested for functionality and reliability with positive outcomes. The protocol used revealed to be effective, with a progressive tissue decellularization through repeated cycles. No difference between manual and automated operation was observed in histological or mechanical analyses.The developed device is able to automate the decellularization process lowering operator-related risks, and is a reliable and functional tool for clinical use.
机译:去细胞的生物支架代表了组织工程的有希望的解决方案。它们在生化组成,超微结构和机械性能方面为细胞提供了良好的底物,而不会产生免疫原性应答。这项研究的目的是设计和开发一种用于生物组织自动脱细胞的设备,以克服手动操作的局限性,朝着符合良好生产规范的过程发展。设计了一种多功能,模块化且易于使用的设备,能够自动交换脱细胞液并根据用户定义的方案提供机械振动。在猪腹主动脉上进行了初步的脱细胞测试,比较了传统工艺和设备操作工艺用水,脱氧胆酸钠和DNase的结果。处理该容器直至该方案的4个周期,并且在每个脱细胞周期后,观察组织学分析(苏木精-曙红,Movat五色和DAPI染色)。还进行了初步的机械测试,以比较用上述2种方法处理的血管的机械性能。简而言之,该设备包括脱细胞室,振荡系统和用于交换流体的液压模块。该设备经过了功能和可靠性的台架测试,并取得了积极的成果。使用的协议显示是有效的,通过重复的循环进行性组织脱细胞。在组织学或机械分析中均未观察到手动操作与自动操作之间的差异。该开发的设备能够使脱细胞过程自动化,从而降低了操作者相关的风险,是临床上可靠且功能强大的工具。

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