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球形聚集体的 3D 生物打印策略:全面综述。

Strategies for 3D bioprinting of spheroids: A comprehensive review.

机构信息

The Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, PA, USA; Engineering Science and Mechanics Department, Penn State University, University Park, PA, USA; Department of Medicine, Division of Cardiology, University of California, San Diego, La Jolla, CA, 92093, USA.

The Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, PA, USA; Engineering Science and Mechanics Department, Penn State University, University Park, PA, USA.

出版信息

Biomaterials. 2022 Dec;291:121881. doi: 10.1016/j.biomaterials.2022.121881. Epub 2022 Oct 28.

Abstract

Biofabricated tissues have found numerous applications in tissue engineering and regenerative medicine in addition to the promotion of disease modeling and drug development and screening. Although three-dimensional (3D) printing strategies for designing and developing customized tissue constructs have made significant progress, the complexity of innate multicellular tissues hinders the accurate evaluation of physiological responses in vitro. Cellular aggregates, such as spheroids, are 3D structures where multiple types of cells are co-cultured and organized with endogenously secreted extracellular matrix and are designed to recapitulate the key features of native tissues more realistically. 3D Bioprinting has emerged as a crucial tool for positioning of these spheroids to assemble and organize them into physiologically- and histologically-relevant tissues, mimicking their native counterparts. This has triggered the convergence of spheroid fabrication and bioprinting, leading to the investigation of novel engineering methods for successful assembly of spheroids while simultaneously enhancing tissue repair. This review provides an overview of the current state-of-the-art in spheroid bioprinting methods and elucidates the involved technologies, intensively discusses the recent tissue fabrication applications, outlines the crucial properties that influence the bioprinting of these spheroids and bioprinted tissue characteristics, and finally details the current challenges and future perspectives of spheroid bioprinting efforts in the growing field of biofabrication.

摘要

生物制造的组织除了促进疾病建模、药物开发和筛选外,在组织工程和再生医学中也有广泛的应用。尽管用于设计和开发定制组织构建体的三维(3D)打印策略已经取得了重大进展,但内源性多细胞组织的复杂性阻碍了对体外生理反应的准确评估。细胞聚集体,如球体,是 3D 结构,其中多种类型的细胞被共同培养,并由内源性分泌的细胞外基质组织在一起,旨在更真实地再现天然组织的关键特征。3D 生物打印已成为定位这些球体以将其组装并组织成具有生理和组织学相关性的组织的重要工具,从而模拟其天然对应物。这引发了球体制造和生物打印的融合,从而促使人们研究新的工程方法,以成功组装球体,同时增强组织修复。本文综述了球体生物打印方法的最新研究进展,阐述了所涉及的技术,深入讨论了最近的组织制造应用,概述了影响这些球体和生物打印组织特性的关键特性,并详细介绍了球体生物打印在生物制造这一日益发展的领域中的当前挑战和未来展望。

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