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Engineering a microcirculation for perfusion control of ex vivo–assembled organ systems: Challenges and opportunities

机译:设计微循环以控制离体组装器官系统的灌注:挑战和机遇

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摘要

Donor organ shortage remains a clear problem for many end-stage organ patients around the world. The number of available donor organs pales in comparison with the number of patients in need of these organs. The field of tissue engineering proposes a plausible solution. Using stem cells, a patient’s autologous cells, or allografted cells to seed-engineered scaffolds, tissue-engineered constructs can effectively supplement the donor pool and bypass other problems that arise when using donor organs, such as who receives the organ first and whether donor organ rejection may occur. However, current research methods and technologies have been unable to successfully engineer and vascularize large volume tissue constructs. This review examines the current perfusion methods for ex vivo organ systems, defines the different types of vascularization in organs, explores various strategies to vascularize ex vivo organ systems, and discusses challenges and opportunities for the field of tissue engineering.
机译:对于世界各地许多晚期器官患者,供体器官短缺仍然是一个明显的问题。与需要这些器官的患者数量相比,可用的供体器官数量很少。组织工程领域提出了一种可行的解决方案。使用工程设计的支架将干细胞,患者的自体细胞或同种异体移植细胞植入种子工程支架,可以有效补充供体库,并绕开使用供体器官时出现的其他问题,例如谁先接受器官,以及是否供体器官拒绝可能会发生。然而,当前的研究方法和技术不能成功地工程化和血管化大体积组织构造。这篇综述检查了当前用于离体器官系统的灌注方法,定义了器官中不同类型的血管化,探索了使离体器官系统血管化的各种策略,并讨论了组织工程领域的挑战和机遇。

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