Chen Hongqing, Fei Fei, Li Xinda, Nie Zhenguo, Zhou Dezhi, Liu Libiao, Zhang Jing, Zhang Haitao, Fei Zhou, Xu Tao
Department of Neurosurgery, Xijing Hospital, Fourth Military Medical University, Xi'an 710032, China.
Department of Neurosurgery, Central Theater General Hospital, Wuhan 430010, China.
Regen Biomater. 2021 Jun 14;8(3):rbab026. doi: 10.1093/rb/rbab026. eCollection 2021 Jun.
Both of the long-term fidelity and cell viability of three-dimensional (3D)-bioprinted constructs are essential to precise soft tissue repair. However, the shrinking/swelling behavior of hydrogels brings about inadequate long-term fidelity of constructs, and bioinks containing excessive polymer are detrimental to cell viability. Here, we obtained a facile hydrogel by introducing 1% aldehyde hyaluronic acid (AHA) and 0.375% -carboxymethyl chitosan (CMC), two polysaccharides with strong water absorption and water retention capacity, into classic gelatin (GEL, 5%)-alginate (ALG, 1%) ink. This GEL-ALG/CMC/AHA bioink possesses weak temperature dependence due to the Schiff base linkage of CMC/AHA and electrostatic interaction of CMC/ALG. We fabricated integrated constructs through traditional printing at room temperature and simulation printing at 37°C. The printed cell-laden constructs can maintain subaqueous fidelity for 30 days after being reinforced by 3% calcium chloride for only 20 s. Flow cytometry results showed that the cell viability was 91.38 ± 1.55% on day 29, and the cells in the proliferation plateau at this time still maintained their dynamic renewal with a DNA replication rate of 6.06 ± 1.24%. This work provides a convenient and practical bioink option for 3D bioprinting in precise soft tissue repair.
三维(3D)生物打印构建体的长期保真度和细胞活力对于精确的软组织修复至关重要。然而,水凝胶的收缩/膨胀行为导致构建体的长期保真度不足,并且含有过量聚合物的生物墨水对细胞活力有害。在此,我们通过将1%醛化透明质酸(AHA)和0.375%羧甲基壳聚糖(CMC)(两种具有强吸水和保水能力的多糖)引入经典的明胶(GEL,5%)-海藻酸盐(ALG,1%)墨水中,获得了一种简便的水凝胶。由于CMC/AHA的席夫碱键和CMC/ALG的静电相互作用,这种GEL-ALG/CMC/AHA生物墨水具有较弱的温度依赖性。我们通过在室温下进行传统打印和在37°C下进行模拟打印来制造集成构建体。负载细胞的打印构建体在仅用3%氯化钙强化20秒后,可在水下保持保真度30天。流式细胞术结果显示,在第29天时细胞活力为91.38±1.55%,此时处于增殖平台期的细胞仍保持其动态更新,DNA复制率为6.06±1.24%。这项工作为精确软组织修复中的3D生物打印提供了一种方便实用的生物墨水选择。