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Comparative study of physical properties of enzymatic in situ hydrogels based on bovine Achilles tendon collagen and rat tail collagen

机译:基于牛脑肌腱胶原和大鼠尾胶原酶酶原位水凝胶物理性质的对比研究

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Collagen type I, as a biomimetic material, has wide applications in tissue engineering and drug delivery. Still, there are limited comparative studies between different methods of constructing scaffolds or carriers based on different collagen sources. In situ gel through the enzymatic method in the presence of horseradish peroxidase (HRP) as the enzyme and hydrogen peroxide (H2O2) is one of the appealing noninvasive methods due to rapid gelation in a mild condition. In this study, a comparison was made between two in situ gels constructed by HRP/ H2O2 method based on bovine Achilles tendon collagen (Bovine Coll) and rat tail tendon collagen (Rat Coll). After collagen extractions, tyramine was incorporated on the collagen backbones. The extent of modification was 39.95 μg/mg (tyramine per collagen) and 26.94 μg/mg (tyramine per collagen) for Bovine Coll and Rat Coll, respectively. The evaluations of morphology, rheology, and degradation were performed to compare the hydrogels formed. Bovine Coll based hydrogel (BC-hyd) showed smaller average pore size, higher mechanical strength, and longer degradation time in comparison to Rat Coll based hydrogel (RT-hyd).
机译:胶原蛋白I型作为仿真材料,具有广泛的组织工程和药物递送应用。尽管如此,基于不同的胶原源构建支架或载体的不同方法之间存在有限的比较研究。在原位凝胶通过酶法在存在辣根过氧化物酶(HRP)作为酶和过氧化氢(H. 2 O. 2 )是一种吸引人的非侵入性方法之一,导致温和条件的快速凝胶化。在这项研究中,在HRP / H构建的两个原位凝胶之间进行了比较 2 O. 2 基于牛脑肌腱胶原(牛COLL)和大鼠牛腱胶原(大鼠COLL)的方法。在胶原蛋白提取后,将酪胺纳入胶原骨质。改性程度为39.95μg/ mg / mg(酪蛋白,每个胶原蛋白)和26.94μg/ mg(酪蛋白为酪蛋白),用于牛Coll和大鼠Coll。进行形态学,流变学和降解的评估以比较形成的水凝胶。与大鼠Coll基水凝胶(RT-HYD)相比,牛水解水凝胶(BC-HYD)显示出较小的平均孔径,更高的机械强度和更长的降解时间。

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