组织工程与重建外科杂志 ›› 2025, Vol. 21 ›› Issue (2): 188-.

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生物3D 打印中的雕刻刀:牺牲式墨水的研究与应用进展

  

  • 出版日期:2025-04-01 发布日期:2025-05-13

Carving knife in biological 3D printing: Research and application of sacrificial ink

  • Online:2025-04-01 Published:2025-05-13

摘要: 生物3D打印技术的核心在于生物墨水的开发与优化。长期以来,相关研究一直致力于寻找能够平衡可打印 性和细胞活性之间关系的生物墨水。然而,传统的生物墨水往往存在局限性,限制了可打印结构的复杂性和规模。近 年来,牺牲式墨水的出现为该领域带来了重大突破,使得原本不太适合打印的生物墨水能够精确地构建出体积更大、更 复杂的结构。这种墨水的独特之处在于其被用来支撑和定位生物墨水,但打印完成后会被移除,不作为最终打印结构 的一部分,且状态转换和去除条件的温和性,使得在墨水“牺牲”时能够最大限度地减少对细胞的损伤。通过牺牲式墨 水的应用,生物3D打印技术不仅能够制造出更加逼真和复杂的组织结构,还有望在未来的临床治疗和再生医学领域提 供更广阔的应用前景。

关键词: 生物打印,  牺牲式墨水,  生物材料,  再生医学

Abstract: The core of bio-3D printing technology lies in the development and optimization of bio-ink. For a long time, researchers have been looking for bio-inks that can balance printability and cell function. However, traditional bio-inks often have limitations in meeting this balance, limiting the complexity and scale of printable structures. In recent years, the emergence of sacrifice inks has brought a major breakthrough in this field, allowing bio-inks that were originally not very suitable for printing to accurately construct larger and more complex structures. This ink is unique in that it is used to support and position the bio-ink, but is removed after printing is complete, not as part of the final printed structure, and the mild nature of the state transition and removal conditions allows for minimal damage to cell viability and print structure when the ink is“ sacrificed”. By the application of sacrifice inks, bioprinting technology can not only produce more realistic and complex tissue structures, but also is expected to provide broader application prospects for clinical treatment and regenerative medicine in the future.

Key words: Bioprinting,  Sacrifice inks,  Biomaterials,  Regenerative medicine