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Whole-organ bioengineering: Current tales of modern alchemy

机译:全器官生物工程:现代炼金术的最新故事

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End-stage organ disease affects millions of people around the world, to whom organ transplantation is the only definitive cure available. However, persistent organ shortage and the resulting widespread transplant backlog are part of a disturbing reality and a common burden felt by thousands of patients on waiting lists in almost every country where organ transplants are performed. Several alternatives and potential solutions to this problem have been sought in past decades, but one seems particularly promising now: whole-organ bioengineering. This review describes briefly the evolution of organ transplantation and the development of decellularized organ scaffolds and their application to organ bioengineering. This modern alchemy of generating whole-organ scaffolds and recellularizing them with multiple cell types in perfusion bioreactors is paving the way for a new revolution in transplantation medicine. Furthermore, although the first generation of bioengineered organs still lacks true clinical value, it has created a number of novel tissue and organ model platforms with direct application in other areas of science (eg, developmental biology and stem cell biology, drug discovery, physiology and metabolism). In this review, we describe the current status and numerous applications of whole-organ bioengineering, focusing also on the multiple challenges that researchers have to overcome to translate these novel technologies fully into transplantation medicine.
机译:终末期器官疾病影响着全球数以百万计的人,器官移植是唯一可以确定的治疗方法。然而,持续的器官短缺和由此造成的广泛的移植积压是令人不安的现实的一部分,并且几乎在每个进行器官移植的国家中,成千上万的患者在等待名单上感受到了共同的负担。在过去的几十年中,人们一直在寻求针对此问题的几种替代方案和潜在解决方案,但现在看来,其中一种特别有希望:全器官生物工程。这篇综述简要描述了器官移植的发展和脱细胞的器官支架的发展及其在器官生物工程中的应用。这种现代的炼金术可以在灌注生物反应器中生成全器官支架并将其用多种细胞类型重新细胞化,这为移植医学的新革命铺平了道路。此外,尽管第一代生物工程器官仍然缺乏真正的临床价值,但它创造了许多新颖的组织和器官模型平台,可直接应用于其他科学领域(例如发育生物学和干细胞生物学,药物发现,生理学和代谢)。在这篇综述中,我们描述了全器官生物工程的现状和众多应用,同时着重于研究人员将这些新技术完全转化为移植医学所必须克服的多重挑战。

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