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Insulin Release Dynamics from Poly(diethylaminoethyl methacrylate) Hydrogel Systems

机译:聚(甲基丙烯酸二乙氨基乙酯)水凝胶体系的胰岛素释放动力学

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摘要

Novel glucose-sensitive systems for the release of insulin from poly(diethylaminoethyl methacrylate) (PDEAEM) micro-particles and nanoparticles decorated with glucose oxidase and catalase enzymes have been developed. The effect of polymer composition and loading conditions on the insulin loading efficiency and release was studied. The optimal conditions for loading insulin into PDEAEM microparticles were found to be at a loading pH of 5.6, particle to insulin mass ratio of 7:1, a concentration of 1.0 mg/mL insulin, and a collapsing pH of approximately 9.5. Microparticles exhibited a responsive (pH) or intelligent (glucose) release of insulin from a stimulus. Microparticles that had a nominal crosslinking ratio of 10% released a third of the insulin payload after a single stimulus, compared to nearly 70% for microparticles with a 3% crosslinking ratio. PDEAEM micro particles of 150 µm diameter showed promise as components of a system of automated, intelligent delivery method for insulin to type I diabetics.
机译:已经开发了用于从聚甲基丙烯酸二乙氨基乙酯(PDEAEM)微粒和装饰有葡萄糖氧化酶和过氧化氢酶的纳米颗粒释放胰岛素的新型葡萄糖敏感系统。研究了聚合物组成和负载条件对胰岛素负载效率和释放的影响。发现将胰岛素加载到PDEAEM微粒中的最佳条件是:加载pH为5.6,粒子与胰岛素的质量比为7:1,胰岛素浓度为1.0 mg / mL,并且pH下降约为9.5。微粒显示出刺激中胰岛素的响应性(pH)或智能(葡萄糖)释放。标称交联率为10%的微粒在一次刺激后释放了三分之一的胰岛素有效负载,而交联率为3%的微粒则接近70%。直径为150 µm的PDEAEM微粒有望成为I型糖尿病胰岛素自动智能输送方法系统的组成部分。

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