School of Materials Science and Engineering, Nanyang Technological University, Singapore, Singapore.
Nanyang Environment and Water Research Institute (NEWRI), Singapore, Singapore.
Biomed Mater. 2024 Feb 28;19(2). doi: 10.1088/1748-605X/ad2a3f.
Human hair keratin (HHK) has been extensively explored as a biomaterial for soft tissue regeneration due to their excellent bioactivity and biocompatibility. The possibility to fabricate HHK into three-dimensional (3D) hydrogels with physical properties resembling soft tissues has been well demonstrated. However, conventional keratin hydrogels often exhibit a dense architecture that could hinder cell filtration. In the present study, HHK-based cryogels were fabricated using a freeze-thaw (FT) method, where oxidized dopamine (ODA) was employed to covalently crosslink thiol/amine rich-keratin molecules at sub-zero temperatures. The obtained HHK-ODA cryogels have micron-sized pores ranging between 100 and 200 μm and mechanical properties that can be tuned by varying the crosslinking density between ODA and HHK. Through optimization of the weight content of ODA and the number of FT cycles, the compressive strengths and stiffnesses of these cryogels achieved 15-fold increments from ∼1.5 kPa to ∼22 kPa and ∼300 Pa to ∼5000 Pa, respectively. The HHK-ODA cryogels competently supported human dermal fibroblast spreading and proliferation. Overall, this study exhibited a facile method to fabricate mechanically superior keratin-based cryogels with cell compatible microarchitecture, circumventing the need for complicated chemical modifications and the use of cytotoxic crosslinkers.
人发角蛋白 (HHK) 因其优异的生物活性和生物相容性而被广泛探索作为软组织再生的生物材料。已经很好地证明了将 HHK 制成具有类似于软组织的物理性质的三维 (3D) 水凝胶的可能性。然而,传统的角蛋白水凝胶通常表现出密集的结构,这可能会阻碍细胞过滤。在本研究中,使用冷冻-解冻 (FT) 方法制备了基于 HHK 的冷冻凝胶,其中使用氧化多巴胺 (ODA) 在亚零温度下共价交联富含巯基/胺的角蛋白分子。所获得的 HHK-ODA 冷冻凝胶具有在 100 至 200 μm 之间的微米级孔和可以通过改变 ODA 和 HHK 之间的交联密度来调节的机械性能。通过优化 ODA 的重量含量和 FT 循环次数,这些冷冻凝胶的压缩强度和刚度分别从约 1.5 kPa 增加到约 22 kPa 和从约 300 Pa 增加到约 5000 Pa。HHK-ODA 冷冻凝胶能够支持人真皮成纤维细胞的扩散和增殖。总体而言,该研究展示了一种简便的方法来制造具有细胞相容性微结构的机械性能优越的角蛋白基冷冻凝胶,避免了复杂的化学修饰和使用细胞毒性交联剂的需要。