Burke Gavin, Cao Zhi, Devine Declan M, Major Ian
Materials Research Institute, Athlone Institute of Technology, Dublin Road, Co. Westmeath N37 HD68, Ireland.
Polymers (Basel). 2019 Aug 13;11(8):1339. doi: 10.3390/polym11081339.
Through the control of the molecular weight, water content and monomer concentration, polyethylene glycol dimethacrylate (PEGDMA) based hydrogels have been adapted for numerous applications, including as structural scaffolds, drug delivery vehicles and cell carriers. However, due to the low biodegradability rates, the use of PEGDMA in tissue engineering has been limited. Thiol-based monomers have been shown to improve the degradation rates of several PEG-based hydrogels, though their impact on several material properties has not been as well defined. In this work, several mercaptopropianoates, as well as mercaptoacetates, were mixed with PEGDMA and copolymerized. Following an initial polymerization check, it was determined that mercaptoacetate-based thiol monomers did not polymerize in the presence of PEGDMA, whereas mercaptopropionates were more successful. The wettability, and the compressive and tensile strength, in addition to the thermal properties, were determined for successfully copolymerized samples via a combination of differential scanning calorimetry, dynamic mechanical analysis, unconfined compression, and goniometry. Further study determined that dipentaerythritol hexa(3-mercaptopropionate) (DiPETMP) successfully enhanced the biodegradability of PEGDMA.
通过控制分子量、含水量和单体浓度,聚乙二醇二甲基丙烯酸酯(PEGDMA)基水凝胶已被应用于众多领域,包括作为结构支架、药物递送载体和细胞载体。然而,由于生物降解率较低,PEGDMA在组织工程中的应用受到了限制。基于硫醇的单体已被证明可以提高几种基于PEG的水凝胶的降解率,尽管它们对几种材料性能的影响尚未得到明确界定。在这项工作中,将几种巯基丙酸酯以及巯基乙酸酯与PEGDMA混合并共聚。经过初步的聚合检查,确定基于巯基乙酸酯的硫醇单体在PEGDMA存在下不会聚合,而巯基丙酸酯则更成功。通过差示扫描量热法、动态力学分析、无侧限压缩和测角法相结合的方法,对成功共聚的样品的润湿性、压缩强度和拉伸强度以及热性能进行了测定。进一步的研究确定,二季戊四醇六(3-巯基丙酸酯)(DiPETMP)成功提高了PEGDMA的生物降解性。