Sato Katsuhiko
Graduate School of Pharmaceutical Sciences, Tohoku Unicersity.
Yakugaku Zasshi. 2015;135(9):1029-35. doi: 10.1248/yakushi.15-00182.
Functional multilayer thin films have been prepared by layer-by-layer (LbL) deposition for the development of sensors, separators, and drug delivery systems. In particular, glucose-sensitive LbL films have been widely studied for use as glucose sensors and in glucose-triggered drug delivery systems. In this work, I report on glucose-sensitive LbL films that consist of concanavalin A (ConA), phenylboronic acid (PBA), and glucose oxidase (GOx). ConA/glycogen LbL films were prepared by LbL deposition of ConA and glycogen through a lectin-sugar interaction. Similarly, PBA-modified poly(amidoamine) dendrimer/poly(vinyl alcohol) (PVA) LbL films were prepared through cyclic boronate ester bonds. Both types of films decomposed in the presence of glucose, by the competitive binding of glucose, although these LbL films did not show a satisfactory response to millimolar concentrations of glucose under physiological conditions. PBA-modified poly(allylamine hydrochloride) and PVA films were prepared on a GOx-modified quartz slide. The LbL film was stable over a wide pH range, from 3.0 to 9.0, in the absence of glucose. In contrast, the film decomposed upon exposure to 0.1-10 mM glucose solutions for 60 min at pH 7.4. The glucose-induced decomposition of the film can be explained by the scission of the carbon-boron bond of the PBA residues by hydrogen peroxide, which was produced through the GOx-catalyzed oxidation of glucose. These results suggest this multilayer film may be useful for the development of glucose-sensitive drug delivery systems.
通过层层(LbL)沉积制备了功能性多层薄膜,用于传感器、分离器和药物递送系统的开发。特别是,对葡萄糖敏感的LbL薄膜已被广泛研究用作葡萄糖传感器以及用于葡萄糖触发的药物递送系统。在这项工作中,我报道了由伴刀豆球蛋白A(ConA)、苯硼酸(PBA)和葡萄糖氧化酶(GOx)组成的对葡萄糖敏感的LbL薄膜。ConA/糖原LbL薄膜是通过ConA和糖原通过凝集素-糖相互作用的层层沉积制备的。同样,通过环状硼酸酯键制备了PBA修饰的聚(酰胺胺)树枝状大分子/聚乙烯醇(PVA)LbL薄膜。尽管这些LbL薄膜在生理条件下对毫摩尔浓度的葡萄糖没有显示出令人满意的响应,但两种类型的薄膜在葡萄糖存在下都会因葡萄糖的竞争性结合而分解。在GOx修饰的石英载玻片上制备了PBA修饰的聚烯丙基氯化铵和PVA薄膜。在没有葡萄糖的情况下,LbL薄膜在3.0至9.0的宽pH范围内是稳定的。相反,在pH 7.4下,该薄膜在暴露于0.1 - 10 mM葡萄糖溶液60分钟后会分解。薄膜的葡萄糖诱导分解可以通过葡萄糖经GOx催化氧化产生的过氧化氢切断PBA残基的碳-硼键来解释。这些结果表明这种多层薄膜可能对葡萄糖敏感药物递送系统的开发有用。