Fang Wenzhuo, Yang Ming, Liu Meng, Jin Yangwang, Wang Yuhui, Yang Ranxing, Wang Ying, Zhang Kaile, Fu Qiang
Department of Urology, Affiliated Sixth People's Hospital, Shanghai Jiaotong University, No. 600 Yi-Shan Road, Shanghai 200233, China.
Pharmaceutics. 2023 Jun 9;15(6):1700. doi: 10.3390/pharmaceutics15061700.
The regeneration of biological tissues in medicine is challenging, and 3D bioprinting offers an innovative way to create functional multicellular tissues. One common way in bioprinting is bioink, which is one type of the cell-loaded hydrogel. For clinical application, however, the bioprinting still suffers from satisfactory performance, e.g., in vascularization, effective antibacterial, immunomodulation, and regulation of collagen deposition. Many studies incorporated different bioactive materials into the 3D-printed scaffolds to optimize the bioprinting. Here, we reviewed a variety of additives added to the 3D bioprinting hydrogel. The underlying mechanisms and methodology for biological regeneration are important and will provide a useful basis for future research.
医学中生物组织的再生具有挑战性,而3D生物打印提供了一种创新方法来创建功能性多细胞组织。生物打印中一种常见的方式是生物墨水,它是一种负载细胞的水凝胶。然而,对于临床应用而言,生物打印仍存在诸如血管化、有效抗菌、免疫调节和胶原蛋白沉积调节等方面性能不尽人意的问题。许多研究将不同的生物活性材料纳入3D打印支架以优化生物打印。在此,我们综述了添加到3D生物打印水凝胶中的各种添加剂。生物再生的潜在机制和方法很重要,将为未来的研究提供有用的基础。