Varga Viktória, Smeller László, Várdai Róbert, Kocsis Bence, Zsoldos Ibolya, Cruciani Sara, Pala Renzo, Hornyák István
Institute of Translational Medicine, Semmelweis University, 1094 Budapest, Hungary.
Department of Materials Science and Technology, University of Győr, 9026 Győr, Hungary.
Int J Mol Sci. 2024 Apr 14;25(8):4336. doi: 10.3390/ijms25084336.
In this present study, the material science background of crosslinked gelatin (GEL) was investigated. The aim was to assess the optimal reaction parameters for the production of a water-insoluble crosslinked gelatin matrix suitable for heat sterilization. Matrices were subjected to enzymatic degradation assessments, and their ability to withstand heat sterilization was evaluated. The impact of different crosslinkers on matrix properties was analyzed. It was found that matrices crosslinked with butanediol diglycidyl ether (BDDE) and poly(ethylene glycol) diglycidyl ether (PEGDE) were resistant to enzymatic degradation and heat sterilization. Additionally, at 1 / % crosslinker concentration, the crosslinked weight was lower than the starting weight, suggesting simultaneous degradation and crosslinking. The crosslinked weight and swelling ratio were optimal in the case of the matrices that were crosslinked with 3% and 5% / BDDE and PEGDE. FTIR analysis confirmed crosslinking, and the reduction of free primary amino groups indicated effective crosslinking even at a 1% / crosslinker concentration. Moreover, stress-strain and compression characteristics of the 5% / BDDE crosslinked matrix were comparable to native gelatin. Based on material science measurements, the crosslinked matrices may be promising candidates for scaffold development, including properties such as resistance to enzymatic degradation and heat sterilization.
在本研究中,对交联明胶(GEL)的材料科学背景进行了研究。目的是评估生产适用于热灭菌的水不溶性交联明胶基质的最佳反应参数。对基质进行了酶降解评估,并评价了它们耐受热灭菌的能力。分析了不同交联剂对基质性能的影响。发现用丁二醇二缩水甘油醚(BDDE)和聚乙二醇二缩水甘油醚(PEGDE)交联的基质对酶降解和热灭菌具有抗性。此外,在1%交联剂浓度下,交联重量低于起始重量,表明存在同时降解和交联的情况。在用3%和5%的BDDE和PEGDE交联的基质中,交联重量和溶胀率最佳。傅里叶变换红外光谱(FTIR)分析证实了交联,并且游离伯氨基的减少表明即使在1%交联剂浓度下也发生了有效交联。此外,5%BDDE交联基质的应力-应变和压缩特性与天然明胶相当。基于材料科学测量,交联基质可能是用于支架开发的有前景的候选材料,包括抗酶降解和热灭菌等特性。