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带有新型苯基硼酸衍生物作为葡萄糖传感部分的葡萄糖响应性聚合物,该聚合物在生理pH条件下发挥作用。

Glucose-responsive polymer bearing a novel phenylborate derivative as a glucose-sensing moiety operating at physiological pH conditions.

作者信息

Matsumoto Akira, Ikeda Syuhei, Harada Atsushi, Kataoka Kazunori

机构信息

Department of Materials Science and Engineering, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Biomacromolecules. 2003 Sep-Oct;4(5):1410-6. doi: 10.1021/bm034139o.

Abstract

This study is devoted to the development of novel glucose-responsive polymers that operate under physiological conditions (pH 7.4, 37 degrees C), aiming for future use in a self-regulated insulin delivery system to treat diabetes mellitus. The approach involves the use of a newly synthesized phenylborate derivative [4-(1,6-dioxo-2,5-diaza-7-oxamyl) phenylboronic acid, DDOPBA] possessing an appreciably low pK(a) ( approximately 7.8) as a glucose-sensing moiety, as well as the adoption of poly(N-isopropylmethacrylamide), PNIPMAAm, as the main chain that exhibits critical solution behavior in the range close to physiological temperature. Glucose- and pH-dependent changes in the critical solution behavior of the resultant copolymers were investigated at varying temperatures, revealing definite glucose sensitivities near the physiological conditions. Furthermore, DDOPBA moieties in the copolymers maintained constant apparent pK(a) values even when the temperature approaches the critical solution points of the main chain, indicating that spacing of the phenylborate moiety from the polymer backbone is a feasible way to minimize the microenvironment effect caused by a temperature-induced change in the hydration state of the polymer strands.

摘要

本研究致力于开发在生理条件(pH 7.4,37摄氏度)下运行的新型葡萄糖响应聚合物,旨在未来用于自我调节胰岛素递送系统以治疗糖尿病。该方法涉及使用一种新合成的硼酸苯酯衍生物[4-(1,6-二氧代-2,5-二氮杂-7-氧杂庚基)苯硼酸,DDOPBA]作为葡萄糖传感部分,其pK(a)值相当低(约7.8),同时采用聚(N-异丙基甲基丙烯酰胺),PNIPMAAm,作为主链,该主链在接近生理温度的范围内表现出临界溶液行为。在不同温度下研究了所得共聚物临界溶液行为的葡萄糖和pH依赖性变化,发现在生理条件附近具有明确的葡萄糖敏感性。此外,即使温度接近主链的临界溶液点,共聚物中的DDOPBA部分仍保持恒定的表观pK(a)值,这表明硼酸苯酯部分与聚合物主链的间距是最小化由聚合物链水化状态的温度诱导变化引起的微环境效应的可行方法。

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