Davidson School of Chemical Engineering, Purdue University, West Lafayette, IN 47907-2100, United States.
Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN 47907-2032, United States.
J Mech Behav Biomed Mater. 2019 Mar;91:68-75. doi: 10.1016/j.jmbbm.2018.11.015. Epub 2018 Nov 20.
Resilin is an elastomeric protein abundant in insect cuticle. Its exceptional properties, which include high resilience and efficient energy storage, motivate its potential use in tissue engineering and drug delivery applications. Our lab has previously developed recombinant proteins based on the resilin-like sequence derived from Anopheles gambiae and demonstrated their promise as a scaffold for cartilage and vascular engineering. In this work, we describe a more thorough investigation of the physical properties of crosslinked resilin-like hydrogels. The resilin-like proteins rapidly form crosslinked hydrogels in physiological conditions. We also show that the mechanical properties of these resilin-like hydrogels can be modulated simply by varying the protein concentration or the stoichiometric ratio of crosslinker to crosslinking sites. Crosslinked resilin-like hydrogels were hydrophilic and had a high water content when swollen. In addition, these hydrogels exhibited moderate resilience values, which were comparable to those of common synthetic rubbers. Cryo-scanning electron microscopy showed that the crosslinked resilin-like hydrogels at 16 wt% featured a honeycomb-like structure. These studies thus demonstrate the potential to use recombinant resilin-like proteins in a wide variety of applications such as tissue engineering and drug delivery due to their tunable physical properties.
弹性蛋白是一种在昆虫外骨骼中丰富存在的弹性蛋白。其出色的特性,包括高弹性和高效能量储存,激发了其在组织工程和药物输送应用中的潜在用途。我们的实验室之前已经基于来自疟蚊的弹性蛋白样序列开发了重组蛋白,并证明它们作为软骨和血管工程支架的潜力。在这项工作中,我们描述了对交联弹性蛋白样水凝胶的物理性质的更深入研究。弹性蛋白样蛋白在生理条件下迅速形成交联水凝胶。我们还表明,通过改变蛋白质浓度或交联剂与交联点的化学计量比,可以简单地调节这些弹性蛋白样水凝胶的机械性能。交联的弹性蛋白样水凝胶具有亲水性,在溶胀时具有高含水量。此外,这些水凝胶表现出中等的弹性值,与常见的合成橡胶相当。冷冻扫描电子显微镜显示,在 16wt%时交联的弹性蛋白样水凝胶具有蜂窝状结构。因此,由于其可调的物理性质,这些研究表明重组弹性蛋白样蛋白在组织工程和药物输送等各种应用中具有潜力。