Institute of Technical and Macromolecular Chemistry, RWTH Aachen University and Interactive Materials Research - DWI at RWTH Aachen e.V. , Forckenbeckstr. 50, D-52056 Aachen, Germany.
Biomacromolecules. 2013 Nov 11;14(11):3985-96. doi: 10.1021/bm401428b. Epub 2013 Oct 25.
Novel biodegradable materials with tunable hydrolytic degradation rate are prepared by grafting of phosphonoethylated polyglycidols with polyesters. First, the hydrolytically degradable polyester grafts are attached to polyglycidols partially grafted with phosphonoethylated diethyl esters through chemical-catalyzed grafting using tin(II) octanoate, then the diethyl ester groups are chemoselectively converted to the corresponding monoester (mixed phosphonate/phosphonic acid) using alkali metal halides. The products are characterized by means of (1)H, (13)C, and (31)P NMR spectroscopy, as well as size-exclusion chromatography and differential scanning calorimetry. The in vitro degradation of the copolymers is studied in phosphate buffered solution at 55 °C. The copolymers are of the same architecture, molecular weight, and crystallinity, only differing in the pendant phosphonate and mixed phosphonate/phosphonic acid groups, respectively. On the basis of mass loss, decrease of the molecular weight, and morphological analysis of the copolymers, the strong impact of mixed phosphonate/phosphonic acid groups on the hydrolytic degradation rate is demonstrated.
通过聚乙二醇与聚酯的磷酰乙基化接枝,制备了具有可调节水解降解速率的新型可生物降解材料。首先,通过辛酸亚锡的化学催化接枝,将部分磷酰乙基化二乙酯接枝的聚乙二醇与可水解降解的聚酯接枝,然后使用碱金属卤化物将二乙酯基化学选择性转化为相应的单酯(混合膦酸/磷酸)。通过(1)H、(13)C 和(31)P NMR 光谱、凝胶渗透色谱和差示扫描量热法对产物进行了表征。在 55°C 的磷酸盐缓冲溶液中研究了共聚物的体外降解。共聚物具有相同的结构、分子量和结晶度,仅在侧基膦酸酯和混合膦酸/磷酸基团上有所不同。基于质量损失、分子量降低和共聚物的形态分析,证明了混合膦酸/磷酸基团对水解降解速率的强烈影响。