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Injectable nano-network for glucose-mediated insulin delivery

机译:用于葡萄糖介导的胰岛素递送的可注射纳米网络

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摘要

Diabetes mellitus, a disorder of glucose regulation, is a global burden affecting 366 million people across the world. An artificial "closed-loop" system able to mimic pancreas activity and release insulin in response to glucose level changes has the potential to improve patient compliance and health. Herein we develop a glucose-mediated release strategy for the self-regulated delivery of insulin using an injectable and acid-degradable polymeric network. Formed by electrostatic interaction between oppositely charged dextran nanoparticles loaded with insulin and glucose-specific enzymes, the nanocomposite-based porous architecture can be dissociated and subsequently release insulin in a hyperglycemic state through the catalytic conversion of glucose into gluconic acid. In vitro insulin release can be modulated in a pulsatile profile in response to glucose concentrations. In vivo studies validated that these formulations provided improved glucose control in type 1 diabetic mice subcutaneously administered with a degradable nano-network. A single injection of the developed nano-network facilitated stabilization of the blood glucose levels in the normoglycemic state (<200 mg/dL) for up to 10 days.
机译:糖尿病是一种葡萄糖调节异常,是一种全球性负担,影响着全球3.66亿人。能够模拟胰腺活动并响应于葡萄糖水平变化释放胰岛素的人工“闭环”系统具有改善患者依从性和健康的潜力。本文中,我们开发了一种葡萄糖介导的释放策略,用于使用可注射和可酸降解的聚合物网络自我调节胰岛素的释放。由装载有胰岛素和葡萄糖特异性酶的带相反电荷的右旋糖酐纳米颗粒之间的静电相互作用形成的基于纳米复合材料的多孔结构可被解离,随后通过葡萄糖催化转化为葡萄糖酸以高血糖状态释放胰岛素。响应于葡萄糖浓度,体外胰岛素的释放可以以脉动模式进行调节。体内研究证实,这些制剂可改善皮下注射可降解纳米网络的1型糖尿病小鼠的血糖控制。单次注射已开发的纳米网络有助于在正常血糖状态(<200 mg / dL)的血糖水平稳定长达10天。

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