Nguyen Khai D Q, Dejean Stéphane, Nottelet Benjamin, Gautrot Julien E
Institute of Bioengineering, Queen Mary, University of London, Mile End Road, London E1 4NS, U.K.
School of Engineering and Materials Science, Queen Mary, University of London, Mile End Road, London E1 4NS, U.K.
ACS Appl Polym Mater. 2023 Jan 30;5(2):1364-1373. doi: 10.1021/acsapm.2c01878. eCollection 2023 Feb 10.
The formation of hybrid hydrogel-elastomer scaffolds is an attractive strategy for the formation of tissue engineering constructs and microfabricated platforms for advanced in vitro models. The emergence of thiol-ene coupling, in particular radical-based, for the engineering of cell-instructive hydrogels and the design of elastomers raises the possibility of mechanically integrating these structures without relying on the introduction of additional chemical moieties. However, the bonding of hydrogels (thiol-ene radical or more classic acrylate/methacrylate radical-based) to thiol-ene elastomers and alkene-functional elastomers has not been characterized in detail. In this study, we quantify the tensile mechanical properties of hybrid hydrogel samples formed of two elastomers bonded to a hydrogel material. We examine the impact of radical thiol-ene coupling on the crosslinking of both elastomers (silicone or polyesters) and hydrogels (based on thiol-ene crosslinking or diacrylate chemistry) and on the mechanics and failure behavior of the resulting hybrids. This study demonstrates the strong bonding of thiol-ene hydrogels to alkene-presenting elastomers with a range of chemistries, including silicones and polyesters. Overall, thiol-ene coupling appears as an attractive tool for the generation of strong, mechanically integrated, hybrid structures for a broad range of applications.
形成混合水凝胶-弹性体支架是一种有吸引力的策略,可用于构建组织工程结构以及用于先进体外模型的微制造平台。硫醇-烯偶联反应的出现,特别是基于自由基的反应,用于构建具有细胞指导性的水凝胶和设计弹性体,这增加了在不依赖引入额外化学基团的情况下机械整合这些结构的可能性。然而,水凝胶(硫醇-烯自由基或更经典的基于丙烯酸酯/甲基丙烯酸酯自由基的水凝胶)与硫醇-烯弹性体和烯烃功能化弹性体的键合尚未得到详细表征。在本研究中,我们量化了由两种与水凝胶材料键合的弹性体形成的混合水凝胶样品的拉伸力学性能。我们研究了自由基硫醇-烯偶联对两种弹性体(硅酮或聚酯)和水凝胶(基于硫醇-烯交联或二丙烯酸酯化学)的交联以及对所得混合物的力学性能和失效行为的影响。这项研究证明了硫醇-烯水凝胶与具有多种化学组成的含烯烃弹性体(包括硅酮和聚酯)之间具有强键合。总体而言,硫醇-烯偶联反应似乎是一种有吸引力的工具,可用于生成坚固的、机械整合的混合结构,以用于广泛的应用。