Dpto. Química Orgánica y Farmacéutica, Universidad de Sevilla, 41012-Sevilla, Spain.
Biomacromolecules. 2010 Jan 11;11(1):269-76. doi: 10.1021/bm9011216.
The synthesis, characterization, and some properties of new glutathione-mediated biodegradable sugar-based copolyurethanes are described. These copolyurethanes were obtained by polyaddition reaction of mixtures of 2,2'-dithiodiethanol (DiT) and 2,3,4-tri-O-benzyl-L-arabinitol (ArBn) or 2,3,4-tri-O-methyl-L-arabinitol (ArMe) to 1,6-hexamethylene diisocyanate (HMDI). The copolymer compositions were studied by elemental microanalyses and (1)H NMR, revealing that the content of the copolymer units is in all cases very similar to that of their corresponding feed. The PU(DiT-HMDI) homopolymer exhibited a high crystallinity, but the introduction of the arabinitol-based diols led to a reduction in the crystallinity of the copolymers. In their TG curves, the copolymers exhibited a mixed trend of the related homopolymers, and all of them were thermally stable, with degradation temperatures above 220 degrees C. The degradation properties of the macromolecules under physiological conditions in the presence of glutathione were tested. All the copolyurethanes proved to be biodegradable under the experimental conditions (pH = 7.02 and 37 degrees C). The degradation pattern of the copolymers depended not only on the dithiodiethanol (DiT) reactive units ratio in the polymer backbone, but also on the crystallinity of the macromolecule.
新的谷胱甘肽介导的可生物降解糖基共聚型聚氨酯的合成、表征及部分性能研究。这些共聚型聚氨酯是通过 2,2'-二硫二乙醇(DiT)和 2,3,4-三-O-苄基-L-阿拉伯糖醇(ArBn)或 2,3,4-三-O-甲基-L-阿拉伯糖醇(ArMe)与 1,6-己二异氰酸酯(HMDI)混合物的加成反应得到的。通过元素微量分析和(1)H NMR 研究了共聚物的组成,结果表明共聚物单元的含量在所有情况下都与相应的进料非常相似。PU(DiT-HMDI)均聚物表现出较高的结晶度,但引入基于阿拉伯糖醇的二醇导致共聚物的结晶度降低。在它们的 TG 曲线中,共聚物表现出与其相关均聚物的混合趋势,所有共聚物都具有热稳定性,降解温度高于 220°C。在谷胱甘肽存在下,在生理条件下对大分子的降解性能进行了测试。所有的共聚型聚氨酯在实验条件下(pH=7.02 和 37°C)均被证明是可生物降解的。共聚物的降解模式不仅取决于聚合物主链中二硫二乙醇(DiT)反应性单元的比例,还取决于大分子的结晶度。