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Advances in Regenerative Medicine and Tissue Engineering: Innovation and Transformation of Medicine

机译:再生医学与组织工程学的进展:医学的创新与转型

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摘要

Humans and animals lose tissues and organs due to congenital defects, trauma, and diseases. The human body has a low regenerative potential as opposed to the urodele amphibians commonly referred to as salamanders. Globally, millions of people would benefit immensely if tissues and organs can be replaced on demand. Traditionally, transplantation of intact tissues and organs has been the bedrock to replace damaged and diseased parts of the body. The sole reliance on transplantation has created a waiting list of people requiring donated tissues and organs, and generally, supply cannot meet the demand. The total cost to society in terms of caring for patients with failing organs and debilitating diseases is enormous. Scientists and clinicians, motivated by the need to develop safe and reliable sources of tissues and organs, have been improving therapies and technologies that can regenerate tissues and in some cases create new tissues altogether. Tissue engineering and/or regenerative medicine are fields of life science employing both engineering and biological principles to create new tissues and organs and to promote the regeneration of damaged or diseased tissues and organs. Major advances and innovations are being made in the fields of tissue engineering and regenerative medicine and have a huge impact on three-dimensional bioprinting (3D bioprinting) of tissues and organs. 3D bioprinting holds great promise for artificial tissue and organ bioprinting, thereby revolutionizing the field of regenerative medicine. This review discusses how recent advances in the field of regenerative medicine and tissue engineering can improve 3D bioprinting and vice versa. Several challenges must be overcome in the application of 3D bioprinting before this disruptive technology is widely used to create organotypic constructs for regenerative medicine.
机译:人和动物由于先天缺陷,外伤和疾病而丧失组织和器官。与通常称为sal的urodele两栖动物相反,人体的再生潜力较低。如果可以按需更换组织和器官,在全球范围内,数百万人将受益匪浅。传统上,完整组织和器官的移植一直是取代身体受损和患病部位的基础。仅仅依靠移植就造成了需要捐赠的组织和器官的人的等待名单,通常,供应量不能满足需求。就照顾器官衰竭和衰弱性疾病的患者而言,社会的总成本是巨大的。出于开发安全可靠的组织和器官来源的需要,科学家和临床医生一直在改进可再生组织并在某些情况下完全创建新组织的疗法和技术。组织工程学和/或再生医学是利用工程学原理和生物学原理来创建新的组织和器官并促进受损或患病的组织和器官再生的生命科学领域。组织工程和再生医学领域正在取得重大进展和创新,对组织和器官的三维生物打印(3D生物打印)产生巨大影响。 3D生物打印在人工组织和器官生物打印方面具有广阔的前景,从而革新了再生医学领域。这篇评论讨论了再生医学和组织工程领域的最新进展如何可以改善3D生物打印,反之亦然。在此破坏性技术被广泛用于创建再生医学的器官型结构之前,在3D生物打印的应用中必须克服几个挑战。

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