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推动3D生物材料打印领域的发展。

Advancing the field of 3D biomaterial printing.

作者信息

Jakus Adam E, Rutz Alexandra L, Shah Ramille N

机构信息

Materials Science and Engineering, Northwestern University, Evanston, IL 60208, USA. Simpson Querrey Institute for BioNanotechnology, Northwestern University, Chicago, IL 60611, USA.

出版信息

Biomed Mater. 2016 Jan 11;11(1):014102. doi: 10.1088/1748-6041/11/1/014102.

Abstract

3D biomaterial printing has emerged as a potentially revolutionary technology, promising to transform both research and medical therapeutics. Although there has been recent progress in the field, on-demand fabrication of functional and transplantable tissues and organs is still a distant reality. To advance to this point, there are two major technical challenges that must be overcome. The first is expanding upon the limited variety of available 3D printable biomaterials (biomaterial inks), which currently do not adequately represent the physical, chemical, and biological complexity and diversity of tissues and organs within the human body. Newly developed biomaterial inks and the resulting 3D printed constructs must meet numerous interdependent requirements, including those that lead to optimal printing, structural, and biological outcomes. The second challenge is developing and implementing comprehensive biomaterial ink and printed structure characterization combined with in vitro and in vivo tissue- and organ-specific evaluation. This perspective outlines considerations for addressing these technical hurdles that, once overcome, will facilitate rapid advancement of 3D biomaterial printing as an indispensable tool for both investigating complex tissue and organ morphogenesis and for developing functional devices for a variety of diagnostic and regenerative medicine applications.

摘要

3D生物材料打印已成为一项具有潜在革命性的技术,有望改变研究和医学治疗领域。尽管该领域最近取得了进展,但按需制造功能性和可移植的组织和器官仍然遥不可及。要实现这一目标,必须克服两个主要技术挑战。第一个挑战是拓展现有3D可打印生物材料(生物材料墨水)种类的局限性,目前这些材料尚不能充分体现人体组织和器官的物理、化学及生物学复杂性和多样性。新开发的生物材料墨水以及由此产生的3D打印结构必须满足众多相互依存的要求,包括那些能实现最佳打印、结构和生物学效果的要求。第二个挑战是开发并实施全面的生物材料墨水和打印结构表征,并结合体外和体内组织及器官特异性评估。本观点概述了解决这些技术障碍的考虑因素,一旦克服这些障碍,将有助于3D生物材料打印作为研究复杂组织和器官形态发生以及开发用于各种诊断和再生医学应用的功能性装置的不可或缺工具而迅速发展。

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