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Gelation of dilute collagen solutions by ultraviolet light

机译:通过紫外线对稀释的胶原蛋白溶液进行凝胶化

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AbstractDilute collagen and collagen–polymer solutions were irradiated at 4°C with UV light (254 nm) under a nitrogen atmosphere. The collagen had been recovered from native tissue by a process of simultaneous acid solubilization together with proctase treatment to remove telopeptides. In the range of concentrations studied (0.1 to 0.9 collagen), gelation occurs after a few minutes, and the dynamic mechanical properties are followed thereafter using a freely oscillating torsion pendulum. During the irradiation, crosslinking and scission reactions compete. Initially crosslinking reactions dominate and the storage modulus increases. However, with extensive irradiation, scission reactions become important, and the storage modulus passes through a maximum and finally decreases. Furthermore, the time for incipient gelation decreases with concentration and the maximum storage modulus increases with concentration to the 2.5 power for collagen solutions. As an example, the maximum storage modulus for a 0.5 solution is 1.1×104dynes/cm2. The modulus–dose behavior can be reduced to a single relationship in which the ratio of modulus to maximum modulus is a function of dose divided by dose to reach the maximum mo
机译:摘要 在氮气气氛下,用紫外光(254 nm)在4°C下照射稀释胶原蛋白和胶原聚合物溶液。胶原蛋白通过同时酸溶解和直肠酶处理以去除端肽的过程从天然组织中回收。在所研究的浓度范围内(0.1%至0.9%胶原蛋白),几分钟后发生凝胶化,然后使用自由摆动的扭转摆来跟踪动态机械性能。在辐照过程中,交联和剪切反应相互竞争。最初交联反应占主导地位,储能模量增加。然而,随着广泛辐照,剪切反应变得重要,储能模量达到最大值并最终降低。此外,初期凝胶化的时间随着浓度的增加而减少,胶原溶液的最大储能模量随浓度的增加而增加,达到2.5的幂。例如,0.5% 溶液的最大储能模量为 1.1×104dynes/cm2。模量-剂量行为可以简化为单一关系,其中模量与最大模量的比率是剂量除以剂量以达到最大 mo 的函数

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