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血管化组织构建体的嵌入式3D生物打印的最新趋势。

Recent trends in embedded 3D bioprinting of vascularized tissue constructs.

作者信息

Cho Won-Woo, Park Wonbin, Cho Dong-Woo

机构信息

Department of Biomedical Engineering, Yonsei University, Wonju 26493, Republic of Korea.

Department of Mechanical Engineering, Pohang University of Science and Technology, Pohang 37673, Republic of Korea.

出版信息

Biofabrication. 2025 Feb 10;17(2). doi: 10.1088/1758-5090/adafdd.

Abstract

3D bioprinting technology offers significant advantages in the fabrication of tissue and organ structures by allowing precise layer-by-layer patterning of cells and various biomaterials. However, conventional bioinks exhibit poor mechanical properties, which limit their use in the fabrication of large-scale vascularized tissue constructs. To address these limitations, recent studies have focused on the development of rapidly crosslinkable bioinks through chemical modification. These enable rapid crosslinking within minutes, offering substantial advantages for engineering large-scale tissue constructs. Nevertheless, challenges remain in the production of constructs that fully incorporate the complex vascular networks inherent to native tissues. Recently, embedded bioprinting technique, which involves the direct writing of bioink into a support bath that provides physical support, has gained significant attention for enabling the freeform fabrication of 3D structures. This method has been extensively studied and offers the advantage of fabricating structures ranging from tissue constructs with simple vascular channels to complex structures containing multiscale vascular networks. This review presents an overview of the various materials utilized in embedded bioprinting and elucidates the rheological properties of these materials. Furthermore, it examines the current research trends in the biofabrication of vascularized tissue constructs using embedded bioprinting techniques, along with their associated limitations. The review concludes by proposing areas for future improvement, specifically addressing material and biofabrication approaches as well as bioprinting systems.

摘要

3D生物打印技术通过允许对细胞和各种生物材料进行精确的逐层图案化,在组织和器官结构的制造中具有显著优势。然而,传统的生物墨水表现出较差的机械性能,这限制了它们在大规模血管化组织构建物制造中的应用。为了解决这些限制,最近的研究集中在通过化学修饰开发快速可交联的生物墨水。这些生物墨水能够在几分钟内快速交联,为工程大规模组织构建物提供了实质性优势。尽管如此,在生产完全包含天然组织固有的复杂血管网络的构建物方面仍然存在挑战。最近,嵌入式生物打印技术,即将生物墨水直接写入提供物理支撑的支撑浴中,因其能够实现3D结构的自由形式制造而受到了广泛关注。这种方法已经得到了广泛研究,具有制造从具有简单血管通道的组织构建物到包含多尺度血管网络的复杂结构的优势。本文综述了嵌入式生物打印中使用的各种材料,并阐明了这些材料的流变学特性。此外,还研究了使用嵌入式生物打印技术进行血管化组织构建物生物制造的当前研究趋势及其相关限制。综述最后提出了未来改进的领域,特别涉及材料和生物制造方法以及生物打印系统。

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