Ulset Ann-Sissel T, Mori Hideki, Dalheim Marianne Ø, Hara Masayuki, Christensen Bjørn E
NOBIPOL, Department of Biotechnology, Norwegian University of Science and Technology (NTNU) , N-7491 Trondheim, Norway.
Biomacromolecules. 2014 Dec 8;15(12):4590-7. doi: 10.1021/bm501386n. Epub 2014 Nov 20.
Alginate-based biomaterials and medical devices are commonly subjected to γ-irradiation as a means of sterilization, either in the dry state or the gel (hydrated) state. In this process the alginate chains degrade randomly in a dose-dependent manner, altering alginates' material properties. The addition of free radical scavenging amino acids such as histidine and phenylalanine protects the alginate significantly against degradation, as shown by monitoring changes in the molecular weight distributions using SEC-MALLS and determining the pseudo first order rate constants of degradation. Tris buffer (0.5 M), but not acetate, citrate, or phosphate buffers had a similar effect on the degradation rate. Changes in pH itself had only marginal effects on the rate of alginate degradation and on the protective effect of amino acids. Contrary to previous reports, the chemical composition (M/G profile) of the alginates, including homopolymeric mannuronan, was unaltered following irradiation up to 10 kGy.
基于藻酸盐的生物材料和医疗器械通常会接受γ射线辐照,作为一种灭菌手段,无论是在干燥状态还是凝胶(水合)状态下。在此过程中,藻酸盐链会以剂量依赖的方式随机降解,从而改变藻酸盐的材料特性。添加组氨酸和苯丙氨酸等自由基清除氨基酸可显著保护藻酸盐不被降解,这通过使用尺寸排阻色谱-多角度激光光散射(SEC-MALLS)监测分子量分布变化以及测定降解的伪一级速率常数得以证明。三羟甲基氨基甲烷缓冲液(0.5M),而非乙酸盐、柠檬酸盐或磷酸盐缓冲液,对降解速率有类似影响。pH值本身的变化对藻酸盐降解速率和氨基酸的保护作用仅有微小影响。与先前报道相反,在高达10kGy的辐照后,包括均聚甘露糖醛酸在内的藻酸盐的化学组成(M/G分布)未发生改变。