Institute of Organic Chemistry and Technology, Faculty of Chemical Technology, University of Pardubice, Studentská 573, 532 10 Pardubice, Czech Republic.
Org Biomol Chem. 2010 Dec 7;8(23):5423-30. doi: 10.1039/c0ob00039f. Epub 2010 Sep 22.
The reaction of α-amino-ω-methoxypoly(ethylene glycol) [M = 5000] or star α-amino-poly(ethylene glycol) [M = 20 000] with hemiesters of prednisolone dicarboxylic acids (succinic, glutaric, adipic, phthalic acid) has been used to prepare the corresponding conjugates. The rate of esterase catalyzed hydrolysis of the conjugates is controlled by the molecular mass of poly(ethylene glycol) and the length of the linker between prednisolone and poly(ethylene glycol) (τ(1/2)∼ 5-0.5 h). The enzymatic hydrolysis proceeds most rapidly at conjugates with linkers derived from adipic and phthalic acids. The synthesized conjugates form polypseudorotaxanes with α-cyclodextrin which were characterized by 2D NOESY NMR spectra, powder X-ray diffraction patterns and in one case also by STM microscopy. In the case of the polypseudorotaxane having the linker derived from adipic acid, the enzymatic release proceeds ca. five times slower in comparison with the rate of prednisolone release from the corresponding conjugate. The rate of prednisolone release from the carrier can be controlled by three factors: character of the linker between the polymeric carrier and prednisolone, the molecular mass of poly(ethylene glycol) and complex formation with α-cyclodextrin. The synthesized polypseudorotaxanes represent new promising transport systems intended for targeted release of prednisolone in transplanted liver.
α-氨基-ω-甲氧基聚乙二醇[M = 5000]或星形α-氨基聚乙二醇[M = 20000]与泼尼松龙二羧酸的半酯(琥珀酸、戊二酸、己二酸、邻苯二甲酸)反应,用于制备相应的缀合物。缀合物的酯酶催化水解速率由聚乙二醇的分子量和泼尼松龙与聚乙二醇之间的连接链的长度(τ(1/2)∼ 5-0.5 h)控制。在具有源自己二酸和邻苯二甲酸的连接链的缀合物中,酶促水解进行得最快。合成的缀合物与α-环糊精形成聚假性轮烷,其特征在于二维 NOESY NMR 光谱、粉末 X 射线衍射图案,在一种情况下还通过 STM 显微镜进行表征。在具有源自己二酸的连接链的聚假性轮烷的情况下,与相应缀合物中泼尼松龙的释放速率相比,酶促释放的速度大约慢五倍。载体中泼尼松龙的释放速率可以通过三个因素控制:聚合物载体与泼尼松龙之间的连接链的性质、聚乙二醇的分子量和与α-环糊精的络合。合成的聚假性轮烷是用于在移植肝中靶向释放泼尼松龙的新型有前途的输送系统。