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双交联甲基纤维素水凝胶在 3D 生物打印中的应用。

Dual-crosslinked methylcellulose hydrogels for 3D bioprinting applications.

机构信息

Department of Organic Materials Engineering, Chungnam National University, Daejeon, 34134, South Korea.

Department of Nature-Inspired Nanoconvergence Systems, Korea Institute of Machinery and Materials, Daejeon, 34103, South Korea.

出版信息

Carbohydr Polym. 2020 Jun 15;238:116192. doi: 10.1016/j.carbpol.2020.116192. Epub 2020 Mar 23.

Abstract

Thermo-sensitive methylcellulose (MC) hydrogel has been widely used as a scaffold material for biomedical applications. However, due to its poor mechanical properties, the MC-based hydrogel has rarely been employed in 3D bioprinting for tissue engineering scaffolds. In this study, the dual crosslinkable tyramine-modified MC (MC-Tyr) conjugate was prepared via a two-step synthesis, and its hydrogel showed excellent mechanical properties and printability for 3D bioprinting applications. The MC-Tyr conjugate formed a dual-crosslinked hydrogel by modulating the temperature and/or visible light. A combination of reversible physical crosslinking (thermal crosslinking) and irreversible chemical crosslinking (photocrosslinking) was used in this dual crosslinked hydrogel. Also, the photocrosslinking of MC-Tyr solution was facilitated by visible light exposure in the presence of biocompatible photoinitiators (riboflavin, RF and riboflavin 5'-monophophate, RFp). The RF and RFp were used to compare the cytotoxicity and salting-out effect of MC-Tyr hydrogel, as well as the initiation ability, based on the difference in chemical structure. Also, the influence of the printing parameters on the printed MC hydrogel was investigated. Finally, the cell-laden MC-Tyr bioink was successfully extruded into stable 3D hydrogel constructs with high resolution via a dual crosslinking strategy. Furthermore, the MC-Tyr scaffolds showed excellent cell viability and proliferation.

摘要

温敏性甲基纤维素(MC)水凝胶已广泛用作生物医学应用的支架材料。然而,由于其机械性能较差,基于 MC 的水凝胶很少用于 3D 生物打印组织工程支架。在这项研究中,通过两步合成制备了双交联性的酪氨酸改性 MC(MC-Tyr)缀合物,其水凝胶具有出色的机械性能和可用于 3D 生物打印的打印性能。MC-Tyr 缀合物通过调节温度和/或可见光形成双交联水凝胶。这种双交联水凝胶采用可逆物理交联(热交联)和不可逆化学交联(光交联)相结合的方式。此外,在存在生物相容性光引发剂(核黄素、RF 和核黄素 5'-单磷酸酯、RFp)的情况下,通过可见光照射促进 MC-Tyr 溶液的光交联。RF 和 RFp 用于比较 MC-Tyr 水凝胶的细胞毒性和盐析效应以及引发能力,这是基于其化学结构的差异。此外,还研究了打印参数对打印 MC 水凝胶的影响。最后,通过双重交联策略,成功地将负载细胞的 MC-Tyr 生物墨水挤出成具有高分辨率的稳定 3D 水凝胶结构。此外,MC-Tyr 支架表现出优异的细胞活力和增殖能力。

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