Luo Yang, Xu Rong, Hu Zeming, Ni Renhao, Zhu Tong, Zhang Hua, Zhu Yabin
Health Science Center, Ningbo University, Ningbo 315211, China.
Research Institute of Smart Medicine and Biological Engineering, Ningbo University, Ningbo 315211, China.
Gels. 2024 Oct 10;10(10):644. doi: 10.3390/gels10100644.
Constructing tissue/organ analogs with natural structures and cell types in vitro offers a valuable strategy for the in situ repair of damaged tissues/organs. Three-dimensional (3D) bioprinting is a flexible method for fabricating these analogs. However, extrusion-based 3D bioprinting faces the challenge of balancing the use of soft bioinks with the need for high-fidelity geometric shapes. To address these challenges, recent advancements have introduced various suspension mediums based on gelatin, agarose, and gellan gum microgels. The emergence of these gel-based suspension mediums has significantly advanced the fabrication of tissue/organ constructs using 3D bioprinting. They effectively stabilize and support soft bioinks, enabling the formation of complex spatial geometries. Moreover, they provide a stable, cell-friendly environment that maximizes cell viability during the printing process. This minireview will summarize the properties, preparation methods, and potential applications of gel-based suspension mediums in constructing tissue/organ analogs, while also addressing current challenges and providing an outlook on the future of 3D bioprinting.
在体外构建具有天然结构和细胞类型的组织/器官类似物,为受损组织/器官的原位修复提供了一种有价值的策略。三维(3D)生物打印是制造这些类似物的一种灵活方法。然而,基于挤出的3D生物打印面临着在使用柔软生物墨水与需要高保真几何形状之间取得平衡的挑战。为应对这些挑战,最近的进展引入了各种基于明胶、琼脂糖和结冷胶微凝胶的悬浮介质。这些基于凝胶的悬浮介质的出现显著推动了使用3D生物打印制造组织/器官构建体的进程。它们有效地稳定和支撑柔软生物墨水,使复杂空间几何形状的形成成为可能。此外,它们提供了一个稳定、对细胞友好的环境,在打印过程中最大限度地提高细胞活力。本综述将总结基于凝胶的悬浮介质在构建组织/器官类似物中的特性、制备方法和潜在应用,同时也探讨当前面临的挑战并展望3D生物打印的未来。