3B's Research Group I3Bs - Research Institute on Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, AvePark - Parque de Ciência e Tecnologia Zona Industrial da Gandra Barco, Guimarães 4805-017, Portugal.
ICVS/3B's - PT Government Associate Laboratory, Braga/Guimarães, Portugal.
Biomater Sci. 2023 Aug 8;11(16):5462-5473. doi: 10.1039/d3bm00626c.
Designing functional, vascularized, human scale models with biomimetic architectures and multiple cell types is a highly promising strategy for both a better understanding of natural tissue/organ development stages to inspire regenerative medicine, and to test novel therapeutics on personalized microphysiological systems. Extrusion-based 3D bioprinting is an effective biofabrication technology to engineer living constructs with predefined geometries and cell patterns. However, bioprinting high-resolution multilayered structures with mechanically weak hydrogel bioinks is challenging. The advent of embedded 3D bioprinting systems in recent years offered new avenues to explore this technology for modeling. By providing a stable, cell-friendly and perfusable environment to hold the bioink during and after printing, it allows to recapitulate native tissues' architecture and function in a well-controlled manner. Besides enabling freeform bioprinting of constructs with complex spatial organization, support baths can further provide functional housing systems for their long-term maintenance and screening. This minireview summarizes the recent advances in this field and discuss the enormous potential of embedded 3D bioprinting technologies as alternatives for the automated fabrication of more biomimetic models.
设计具有仿生结构和多种细胞类型的功能性、血管化、人类尺度模型,是深入了解自然组织/器官发育阶段以启发再生医学,并在个性化微生理系统上测试新型治疗方法的极具前景的策略。基于挤出的 3D 生物打印是一种有效的生物制造技术,可以用预定的几何形状和细胞模式来设计活的结构体。然而,用机械强度较弱的水凝胶生物墨水打印高分辨率多层结构具有挑战性。近年来嵌入式 3D 生物打印系统的出现为该技术的建模提供了新的途径。通过在打印过程中和打印后为生物墨水提供稳定、细胞友好和可灌注的环境,它可以以可控的方式再现天然组织的结构和功能。除了能够自由形式地打印具有复杂空间组织的结构体外,支撑浴还可以为它们的长期维护和筛选提供功能外壳系统。这篇综述总结了该领域的最新进展,并讨论了嵌入式 3D 生物打印技术作为更仿生模型的自动化制造替代方案的巨大潜力。