Polymer Chemistry and Biomaterials Group, Centre of Macromolecular Chemistry, Ghent University, Krijgslaan 281 S4, 9000, Ghent, Belgium.
Department of Applied Physics and Photonics, Brussels Photonics, Flanders Make and Vrije Universiteit Brussel, Pleinlaan 2, 1050, Elsene, Belgium.
Macromol Rapid Commun. 2018 Jul;39(14):e1800181. doi: 10.1002/marc.201800181. Epub 2018 Jun 10.
In the present work, gelatin type B is modified with highly reactive norbornene functionalities (Gel-NB) following a one-pot synthesis approach to enable subsequent thiol-ene photo-click crosslinking. The modification strategy displays close control over the amount of introduced functionalities. Additionally, Gel-NB exhibits considerably improved processing capabilities in terms of two-photon polymerization when benchmarked to earlier-reported crosslinkable gelatin derivatives (e.g., gelatin-methacrylamide (Gel-MOD) and gelatin-methacrylamide-aminoethylmethacrylate (Gel-MOD-AEMA)). The improvement is especially apparent in terms of minimally required laser power (20 mW vs ≥60 mW (Gel-MOD) vs ≥40 mW (Gel-MOD-AEMA) at 100 mm s scan speed) and processable concentration range (≥5 w/v% vs ≥10 w/v% (Gel-MOD/Gel-MOD-AEMA)). Furthermore, the proposed functionalization scheme maintains the excellent biocompatibility and cell interactivity of gelatin. Additionally, the norbornene functionalities have potential for straightforward postprocessing "thiol-ene" surface grafting of active molecules. As a consequence, a very promising material toward tissue engineering applications and more specifically, biofabrication, is presented.
在本工作中,通过一锅合成方法对明胶 B 型进行了高反应性降冰片烯官能团的修饰(Gel-NB),以实现随后的硫醇-烯光点击交联。修饰策略对引入的官能团的数量具有紧密的控制。此外,与以前报道的可交联明胶衍生物(例如明胶-甲基丙烯酰胺(Gel-MOD)和明胶-甲基丙烯酰胺-氨乙基甲基丙烯酸酯(Gel-MOD-AEMA))相比,Gel-NB 在双光子聚合方面表现出相当大的改进的加工能力。在 100mm/s 扫描速度下,最小激光功率(20mW 与≥60mW(Gel-MOD)与≥40mW(Gel-MOD-AEMA))和可加工浓度范围(≥5w/v%与≥10w/v%(Gel-MOD/Gel-MOD-AEMA))方面的改进尤其明显。此外,所提出的功能化方案保持了明胶的优异的生物相容性和细胞相互作用性。此外,降冰片烯官能团具有用于简单的后处理“硫醇-烯”表面接枝活性分子的潜力。因此,提出了一种非常有前途的用于组织工程应用的材料,特别是生物制造。