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水凝胶基 3D 生物打印的最新进展及其在先天性心脏病治疗中的潜在应用。

Recent Advances in Hydrogel-Based 3D Bioprinting and Its Potential Application in the Treatment of Congenital Heart Disease.

机构信息

Bristol Heart Institute, Bristol Medical School, University of Bristol, Bristol BS2 8HW, UK.

Cardiac Surgery, University Hospitals Bristol, NHS Foundation Trust, Bristol BS2 8HW, UK.

出版信息

Biomolecules. 2024 Jul 18;14(7):861. doi: 10.3390/biom14070861.

Abstract

Congenital heart disease (CHD) is the most common birth defect, requiring invasive surgery often before a child's first birthday. Current materials used during CHD surgery lack the ability to grow, remodel, and regenerate. To solve those limitations, 3D bioprinting is an emerging tool with the capability to create tailored constructs based on patients' own imaging data with the ability to grow and remodel once implanted in children with CHD. It has the potential to integrate multiple bioinks with several cell types and biomolecules within 3D-bioprinted constructs that exhibit good structural fidelity, stability, and mechanical integrity. This review gives an overview of CHD and recent advancements in 3D bioprinting technologies with potential use in the treatment of CHD. Moreover, the selection of appropriate biomaterials based on their chemical, physical, and biological properties that are further manipulated to suit their application are also discussed. An introduction to bioink formulations composed of various biomaterials with emphasis on multiple cell types and biomolecules is briefly overviewed. Vasculogenesis and angiogenesis of prefabricated 3D-bioprinted structures and novel 4D printing technology are also summarized. Finally, we discuss several restrictions and our perspective on future directions in 3D bioprinting technologies in the treatment of CHD.

摘要

先天性心脏病(CHD)是最常见的出生缺陷,通常需要在孩子一岁生日前进行侵入性手术。目前在 CHD 手术中使用的材料缺乏生长、重塑和再生的能力。为了解决这些限制,3D 生物打印是一种新兴的工具,具有根据患者自身成像数据创建定制结构的能力,并且一旦植入 CHD 儿童体内,就具有生长和重塑的能力。它有可能将多种生物墨水与几种细胞类型和生物分子整合到 3D 生物打印结构中,这些结构具有良好的结构保真度、稳定性和机械完整性。本综述概述了 CHD 以及 3D 生物打印技术的最新进展,这些技术具有治疗 CHD 的潜力。此外,还讨论了根据其化学、物理和生物学特性选择合适的生物材料,并进一步对其进行处理以适应其应用。简要概述了由各种生物材料组成的生物墨水配方,重点介绍了多种细胞类型和生物分子。还总结了预制 3D 生物打印结构的血管生成和血管生成以及新颖的 4D 打印技术。最后,我们讨论了 3D 生物打印技术在治疗 CHD 方面的一些限制和我们对未来方向的看法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58bc/11274841/7dcedf4abe55/biomolecules-14-00861-g001.jpg

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