Lopes Pompilia Mioara, Fechete Radu, Minteuan Felicia, Mare Liviu, Moldovan Dumitrița, Moldovan Marioara, Cuc Stanca, Saroși Codruța Liana, Popescu Violeta
Physics and Chemistry Department, Technical University of Cluj-Napoca, 28 Memorandumului Street, 400114 Cluj-Napoca, Romania.
"SAMUS" Special Vocational School, 17 Ialomiței Street, 400574 Cluj-Napoca, Romania.
Gels. 2024 Mar 28;10(4):229. doi: 10.3390/gels10040229.
Whey and gelatin, natural polymers within the protein category, find widespread use in hydrogel formulations applied across the food, medical, and pharmaceutical industries. This study presents new characteristics of hydrogels based on whey, gelatin, and copper sulfate as a consequence of the additional steps in the preparation method, specifically refrigeration and freezing storage followed by lyophilization. The water state in hydrogels prior to lyophilization impacts the morphological appearance, with refrigerated hydrogels exhibiting a more regular and dense pore distribution, as shown by the Scanning Electron Microscopy (SEM) images. This observation aligns with the higher mobility of polymer chains indicated by distributions in H nuclear magnetic resonance (RMN) relaxometry measurements. Changes in the intensity and amide-specific wavenumbers of the FTIR spectra of whey and gelatin proteins are evident in the Fourier Transformed Infrared (FTIR) spectra of crosslinked and frozen hydrogels before lyophilization. Moreover, the reinforcing effect in the hydrogel matrix, noted in mechanical tests, is attributed to increased polymer chain content and copper sulfate crosslinking.
乳清和明胶属于蛋白质类天然聚合物,在食品、医学和制药行业的水凝胶配方中有着广泛应用。由于制备方法中增加了冷藏、冷冻储存以及随后的冻干等步骤,本研究展示了基于乳清、明胶和硫酸铜的水凝胶的新特性。冻干前水凝胶中的水状态会影响其形态外观,扫描电子显微镜(SEM)图像显示,冷藏后的水凝胶呈现出更规则、更致密的孔隙分布。这一观察结果与氢核磁共振(RMN)弛豫测量中聚合物链更高的流动性相一致。在冻干前交联和冷冻的水凝胶的傅里叶变换红外光谱(FTIR)中,乳清和明胶蛋白的FTIR光谱的强度和酰胺特异性波数发生了明显变化。此外,力学测试中观察到的水凝胶基质中的增强效应归因于聚合物链含量的增加和硫酸铜交联。