Egawa Yuya, Seki Toshinobu
Faculty of Pharmaceutical Sciences, Josai University.
Yakugaku Zasshi. 2013;133(12):1287-95. doi: 10.1248/yakushi.13-00222-4.
Cyclodextrins (CyDs) are cyclic oligosaccharides composed of 6, 7, or 8 glucopyranoside units, named α-, β-, or γ-CD, respectively. CyDs consist of a hydrophobic cavity in which hydrophobic molecules are encapsulated to form an inclusion complex. CyDs are widely used in pharmaceutical applications because they function as nanocapsules to improve the stability and solubility of drugs. Recently, CyDs have attracted much attention as for use as components of supramolecular nanostructures that are particularly attractive because of their unique structures. We modified CyDs with phenylboronic acid (PBA), which forms covalent bonds with the diol groups of sugar, and used the resulting PBA-CyDs to prepare supramolecular nanomachines that undergo structural transformation in the presence of a chemical signal in the form of a sugar. PBA-α-CyD formed a supramolecular polymer that showed consecutive intermolecular interactions between PBA and the cavity of another PBA-α-CyD, whereas PBA-β-CyD formed head-to-head dimers in which one PBA moiety was encapsulated in the other. These supramolecular nanostructures disintegrated in the presence of sugars because of the structural change in the PBA moiety and loss of the driving force of the supramolecular assembly. These features of disintegration can be potentially used to prepare a nanomachine that would act as a sugar-responsive insulin release system. Currently, we are studying sugar-responsive nanomachines composed of PEGylated insulin and PBA-γ-CyD.
环糊精(CyDs)是由6、7或8个吡喃葡萄糖苷单元组成的环状寡糖,分别称为α-、β-或γ-环糊精。环糊精具有一个疏水腔,疏水分子被包封在其中形成包合物。环糊精在药物应用中广泛使用,因为它们起到纳米胶囊的作用,可提高药物的稳定性和溶解性。最近,环糊精作为超分子纳米结构的组成部分引起了广泛关注,因其独特的结构而特别具有吸引力。我们用苯基硼酸(PBA)修饰环糊精,苯基硼酸与糖的二醇基团形成共价键,并使用所得的PBA-环糊精制备超分子纳米机器,该纳米机器在糖形式的化学信号存在下会发生结构转变。PBA-α-环糊精形成一种超分子聚合物,其显示出PBA与另一个PBA-α-环糊精的腔之间的连续分子间相互作用,而PBA-β-环糊精形成头对头二聚体,其中一个PBA部分被包封在另一个中。由于PBA部分的结构变化和超分子组装驱动力的丧失,这些超分子纳米结构在糖存在下会解体。这些解体特征可潜在地用于制备一种纳米机器,该纳米机器将用作糖响应性胰岛素释放系统。目前,我们正在研究由聚乙二醇化胰岛素和PBA-γ-环糊精组成的糖响应性纳米机器。