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Charge-switchable polymeric complex for glucose-responsive insulin delivery in mice and pigs

机译:电荷可转换聚合物复合物,可在小鼠和猪中释放葡萄糖反应性胰岛素

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Glucose-responsive insulin delivery systems with robust responsiveness that has been validated in animal models, especially in large animal models, remain elusive. Here, we exploit a new strategy to form a micro-sized complex between a charge-switchable polymer with a glucose-sensing moiety and insulin driven by electrostatic interaction. Both high insulin loading efficiency (95%) and loading capacity (49%) can be achieved. In the presence of a hyperglycemic state, the glucose-responsive phenylboronic acid (PBA) binds glucose instantly and converts the charge of the polymeric moiety from positive to negative, thereby enabling the release of insulin from the complex. Adjusting the ratio of the positively charged group to PBA achieves inhibited insulin release from the complex under normoglycemic conditions and promoted release under hyperglycemic conditions. Through chemically induced type 1 diabetic mouse and swine models, in vivo hyperglycemia-triggered insulin release with fast response is demonstrated after the complex is administrated by either subcutaneous injection or transdermal microneedle array patch.
机译:在动物模型中,尤其是在大型动物模型中已验证的具有强响应性的葡萄糖响应性胰岛素递送系统仍然难以捉摸。在这里,我们利用一种新的策略,在带有葡萄糖感应部分的可电荷转换的聚合物和由静电相互作用驱动的胰岛素之间形成一种微型复合物。既可以实现较高的胰岛素加载效率(95%),又可以实现加载容量(49%)。在高血糖状态下,葡萄糖反应性苯基硼酸(PBA)立即结合葡萄糖,并将聚合物部分的电荷从正电荷转变为负电荷,从而使胰岛素从复合物中释放出来。调节带正电荷的基团与PBA的比例可实现在正常血糖条件下抑制胰岛素从复合物中释放,在高血糖条件下促进胰岛素释放。通过化学诱导的1型糖尿病小鼠和猪模型,通过皮下注射或经皮微针阵列贴片给药后,体内高血糖触发的胰岛素释放具有快速反应。

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