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A glucose-responsive insulin delivery micro device embedded with nanohydrogel particles as “smart valves”

机译:嵌入纳米水凝胶颗粒作为“智能阀”的葡萄糖反应性胰岛素输送微设备

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This paper presents a glucose-responsive micro device capable of modulating drug diffusion rates according to changes in environmental glucose levels. New glucose-responsive composite membranes with enhanced mechanical strength were developed, in which chemically immobilized glucose oxidase and pH-responsive hydrogel nanoparticles were embedded within PDMS micro grids, functioning as intelligent ‘nano-valves’ in response to surrounding glucose concentration variations. Membrane responsive release profiles were quantified by testing model drug diffusion (bovine insulin), with an increase in release rates in response to increasing glucose levels. The composite membranes were integrated with PDMS drug reservoirs to form proof-of-concept devices. Release profiles of the glucose-responsive micro devices were also measured, demonstrating a marked increase in release rates of insulin when glucose levels in the surrounding media increased from 100 to 300 mg/dL.
机译:本文提出了一种葡萄糖反应性微型设备,该设备能够根据环境葡萄糖水平的变化来调节药物扩散速率。开发了具有增强的机械强度的新型葡萄糖响应复合膜,其中化学固定的葡萄糖氧化酶和pH响应水凝胶纳米颗粒嵌入PDMS微网格中,可响应周围的葡萄糖浓度变化,充当智能的“纳米阀”。通过测试模型药物扩散(牛胰岛素)来量化膜反应性释放曲线,并随着葡萄糖水平的增加而释放速率增加。将复合膜与PDMS药物储库整合在一起,以形成概念验证装置。还测量了葡萄糖反应性微型设备的释放曲线,证明了当周围培养基中的葡萄糖水平从100 mg / dL增加到300 mg / dL时,胰岛素的释放速率显着增加。

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