State Key Laboratory of Fluid Power and Mechatronic Systems, School of Mechanical Engineering, Zhejiang University, Hangzhou, 310027, China.
Key Laboratory of 3D Printing Process and Equipment of Zhejiang Province, School of Mechanical Engineering, Zhejiang University, Hangzhou, 310027, China.
Small. 2018 Nov;14(45):e1802368. doi: 10.1002/smll.201802368. Epub 2018 Oct 11.
Hydrogel structures equipped with internal microchannels offer more in vivo-relevant models for construction of tissues and organs in vitro. However, currently used microfabrication methods of constructing microfluidic devices are not suitable for the handling of hydrogel. This study presents a novel method of fabricating hydrogel-based microfluidic chips by combining the casting and bonding processes. A twice cross-linking strategy is designed to obtain a bonding interface that has the same strength with the hydrogel bulk, which can be applied to arbitrary combinations of hydrogels. It is convenient to achieve the construction of hydrogel structures with channels in branched, spiral, serpentine, and multilayer forms. The experimental results show that the combination of gelatin and gelatin methacrylate (GelMA) owns the best biocompatibility and can promote cell functionalization. Based on these, a vessel-on-a-chip system with vascular function in both physiological and pathological situations is established, providing a promising model for further investigations such as vascularization, vascular inflammation, tissue engineering, and drug development. Taken together, a facile and cytocompatible approach is developed for engineering a user-defined hydrogel-based chip that can be potentially useful in developing vascularized tissue or organ models.
水凝胶结构配备内部微通道,为体外构建组织和器官提供了更接近体内的模型。然而,目前用于构建微流控器件的微加工方法并不适用于水凝胶的处理。本研究提出了一种通过结合浇铸和键合工艺制造基于水凝胶的微流控芯片的新方法。设计了一种两次交联策略,以获得与水凝胶本体相同强度的键合界面,该界面可适用于任意水凝胶的组合。方便地实现了具有分支、螺旋、蛇形和多层形式通道的水凝胶结构的构建。实验结果表明,明胶和甲基丙烯酰化明胶(GelMA)的组合具有最佳的生物相容性,并能促进细胞功能化。在此基础上,建立了具有生理和病理状态下血管功能的芯片上血管系统,为血管化、血管炎症、组织工程和药物开发等进一步研究提供了有前途的模型。总之,开发了一种简单且细胞相容性好的方法,用于工程设计用户定义的基于水凝胶的芯片,该芯片可能对开发血管化组织或器官模型有用。