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Smarter glucose-sensitivity of polymeric micelles formed from phenylborate ester-co-pyrenylboronic ester for insulin delivery at physiological pH

机译:苯硼酸酯-联苯硼酸硼酸酯形成的聚合物胶束在生理pH值下对胰岛素的更灵敏的葡萄糖敏感性

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Exploring an intelligent system capable of releasing insulin in response to glucose level changes would improve the therapeutic potential in diabetes. Herein, we developed a dispersing glucose-responsive group strategy to effectively enhance glucose-sensitivity of the system for the self-regulated delivery of insulin in response to physiological need. One kind of amphiphilic block polymer, which was named poly(ethylene glycol)-block-poly[(2-phenyl boronic esters-1,3-dioxane-5-ethyl) methylacrylate-co-(2-pyrenyl boronic esters-1,3-dioxane-5-ethyl) methylacrylate] MPEG-b-P(PBDEMA-co-PyBDEMA), was fabricated by one-step atom transfer radical polymerization (ATRP) of two monomers PBDEMA and PyBDEMA with MPEG5000-Br as a macroinitiator. These amphiphilic polymers MPEG-b-P(PBDEMA-co-PyBDEMA) were self-assembled to form polymeric micelles with a hydrophobic core composed of both glucose-responsive PPBDEMA and strongly hydrophobic PPyBDEMA. As a result, these polymeric micelles exhibited very slow insulin release at glucose concentration of 1.0 mg mL(-1) (normoglycemia) and relatively rapid release behavior at 3.0 mg mL(-1) (hyperglycemia) at pH 7.4. Moreover, the glucose-triggered on-off release of insulin was further investigated at pH 7.4 with alternate 1.0 and 3.0 mg mL(-1) glucose incubation to exhibit an effective self-regulated insulin delivery in response to physiological glucose level fluctuation. In addition, the encapsulation efficiency (EE) and loading capacity (LC) of insulin were distinctly enhanced to nearly 65% and 20%, respectively. This type of nanocarrier may be a promising candidate for in vivo insulin delivery.
机译:探索能够响应葡萄糖水平变化释放胰岛素的智能系统将提高糖尿病的治疗潜力。在本文中,我们开发了分散葡萄糖反应性组策略,以有效增强系统的葡萄糖敏感性,以响应生理需要自动调节胰岛素的传递。一种两亲性嵌段聚合物,称为聚(乙二醇)-嵌段-聚[(2-苯基硼酸酯-1,3-二恶烷-5-乙基)丙烯酸甲酯-共-(2-苯基硼酸酯-1, MPEG-bP(PBDEMA-co-PyBDEMA)是通过以MPEG5000-Br为大分子引发剂的两种单体PBDEMA和PyBDEMA进行一步原子转移自由基聚合(ATRP)制成的。这些两亲性聚合物MPEG-b-P(PBDEMA-co-PyBDEMA)进行自组装以形成具有由葡萄糖反应性PPBDEMA和强疏水性PPyBDEMA组成的疏水核的聚合物胶束。结果,这些聚合胶束在1.0 mg / mL(-1)的葡萄糖浓度下显示出非常缓慢的胰岛素释放(正常血糖),在pH 7.4下在3.0 mg / mL(-1)(高血糖)下显示出较快的释放行为。此外,进一步研究了在pH 7.4下葡萄糖触发的胰岛素的开-关释放,分别进行1.0和3.0 mg mL(-1)葡萄糖温育,以响应生理性葡萄糖水平波动而显示出有效的自我调节的胰岛素递送。另外,胰岛素的包封效率(EE)和负载量(LC)分别明显提高到近65%和20%。这种类型的纳米载体可能是体内胰岛素递送的有希望的候选者。

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