Guangdong Key Laboratory for Biomedical Measurements and Ultrasound Imaging, School of Biomedical Engineering, Health Science Center, Shenzhen University, Shenzhen, 518060, China.
Macromol Biosci. 2018 Jun;18(6):e1800034. doi: 10.1002/mabi.201800034. Epub 2018 Apr 24.
It is promising that artificial tissues/organs for clinical application can be produced via 3D bioprinting of living cells and biomaterials. The construction of microstructures biomimicking native tissues is crucially important to create artificial tissues with biological functions. For instance, the fabrication of vessel-like networks to supply cells with initial nutrient and oxygen, and the arrangement of multiple types of cells for creating lamellar/complex tissues through 3D bioprinting are widely reported. The current advances in 3D bioprinting of artificial tissues from the view of construction of biomimetic microstructures, especially the fabrication of lamellar, vascular, and complex structures are summarized. In the end, the conclusion and perspective of 3D bioprinting for clinical applications are elaborated.
通过活细胞和生物材料的 3D 生物打印,可以生产出有临床应用前景的人工组织/器官。构建仿生组织的微结构对于创造具有生物功能的人工组织至关重要。例如,通过 3D 生物打印制造类似于血管的网络以向细胞提供初始的营养和氧气,以及排列多种类型的细胞以制造层状/复杂组织的方法已被广泛报道。本文综述了从构建仿生微结构的角度来看,人工组织的 3D 生物打印的最新进展,特别是层状、血管和复杂结构的制造。最后,阐述了 3D 生物打印在临床应用方面的结论和展望。