3D生物打印在再生医学中的临床应用前景

Sadi Loai, Benjamin R. Kingston, Zongjie Wang, David Philpott, Mingyang Tao, H. Cheng
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引用次数: 22

摘要

三维(3D)生物打印是一种新兴的制造技术,它将活细胞和生物相容的天然或合成材料分层,以构建具有必要3D几何形状的复杂功能活组织。这项技术在再生医学、病理生理学研究和药物测试等众多应用中具有巨大的前景。然而,尽管在重建复杂组织结构的早期尝试中取得了一些成功,但生物打印领域仍处于初级阶段。构建可行、功能性和持久的3D结构面临着各种挑战,尤其是从研究环境转化为临床环境。在这篇综述中,评估了身体中几种主要组织类型(皮肤、骨骼/软骨、心血管、中枢/外周神经系统、骨骼肌、肾脏和肝脏)的3D生物打印的当前转化状态,强调了最近的突破和当前的挑战,并讨论了这一令人兴奋的研究领域的未来前景。我们首先概述了这项技术本身,然后详细讨论了目前用于再生医学的生物打印不同组织的相关方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clinical Perspectives on 3D Bioprinting Paradigms for Regenerative Medicine
Three-dimensional (3D) bioprinting is an emerging manufacturing technology that layers living cells and biocompatible natural or synthetic materials to build complex, functional living tissue with the requisite 3D geometries. This technology holds tremendous promise across a plethora of applications as diverse as regenerative medicine, pathophysiological studies, and drug testing. Despite some success demonstrated in early attempts to recreate complex tissue structures, however, the field of bioprinting is very much in its infancy. There are a variety of challenges to building viable, functional, and lasting 3D structures, not the least of which is translation from a research to a clinical setting. In this review, the current translational status of 3D bioprinting is assessed for several major tissue types in the body (skin, bone/cartilage, cardiovascular, central/peripheral nervous systems, skeletal muscle, kidney, and liver), recent breakthroughs and current challenges are highlighted, and future prospects for this exciting research field are discussed. We begin with an overview of the technology itself, followed by a detailed discussion of the current approaches relevant for bioprinting different tissues for regenerative medicine.
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