自愈水凝胶
光致聚合物
肿胀 的
材料科学
动态力学分析
药剂学
机械强度
弹性(物理)
化学工程
药物输送
杨氏模量
抗压强度
弹性模量
牛血清白蛋白
复合材料
化学
高分子化学
纳米技术
色谱法
聚合物
单体
工程类
药理学
医学
作者
Sandra Haas,Saskia Körner,Laura Zintel,Jürgen Hubbuch
标识
DOI:10.3389/fbioe.2022.1006438
摘要
Hydrogels based on renewable resources are a promising class of materials for future applications in pharmaceutics, drug delivery and personalized medicine. Thus, optional adjustments of mechanical properties such as swelling behavior, elasticity and network strength are desired. In this context, hydrogels based on the biological raw materials bovine serum albumin and casein were prepared by dityrosine-crosslinking of their tyrosine residues through visible light-induced photopolymerization. Changing the tyrosine accessibility by urea addition before photopolymerization increased the storage modulus of the hydrogels by 650% while simultaneously being more elastic. Furthermore, contributions of the buffer system composition, variation of protein concentration and storage medium towards mechanical properties of the hydrogel such as storage moduli, elasticity, fracture strain, compressive strength and relative weight swelling ratio are discussed. It could be shown, that changes in precursor solution and storage medium characteristics are crucial parameters towards tuning the mechanical properties of protein-based hydrogels.
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