用于智能胰岛素输送的 pH 和葡萄糖双响应苯硼酸水凝胶。

IF 2.9 3区 化学 Q3 CHEMISTRY, PHYSICAL Soft Matter Pub Date : 2024-10-22 DOI:10.1039/D4SM01004C
Keke Yang, Hou Bo, Dewei Ma, Mingwei Peng, Qinglong Liu, Ziwen Heng, Zhongwei Gu, Xuhan Liu and Siyuan Chen
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引用次数: 0

摘要

苯硼酸(PBA)是一种广泛使用的葡萄糖敏感元件,可用于构建葡萄糖响应水凝胶,从而实现智能胰岛素输送。然而,其相对较高的固有 pKa 会影响其在生理条件下与葡萄糖的结合,从而限制了其应用。在此,我们将葡萄糖敏感的 3- 氨基苯硼酸(3-PBA)共轭到代谢物衍生的、pH 响应型聚邻苯二胺(PLP)聚合物的骨架上,开发了一系列含硼酸盐的 PLP-PBA 聚合物,该聚合物在不同取代度下的 pKa 值为 4.4。通过用 L-赖氨酸甲酯(LME)交联 PLP-PBA 聚合物,进一步合成了双响应 LME-(PLP-PBA)水凝胶。水凝胶的流变特性和溶胀率可通过 PBA 接枝度和交联比例进行调节。随着 pH 值和葡萄糖浓度的增加,水凝胶的孔径增大,从而促进了负载胰岛素的释放。在生理条件下,最佳配方的水凝胶可以建立急性 pH 响应和葡萄糖响应的胰岛素释放。这种双响应水凝胶的开发为克服与 PBA 相关的高 pKa 问题提供了一种策略,并为智能胰岛素递送提供了一种前景广阔的递送系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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pH and glucose dual-responsive phenylboronic acid hydrogels for smart insulin delivery†

Phenylboronic acid (PBA) is a widely exploited glucose-sensitive element for constructing glucose-responsive hydrogels to enable smart insulin delivery. However, its relatively high intrinsic pKa affects its binding with glucose under physiological conditions and thus limits its application. Herein, we developed a series of boronate-containing PLP–PBA polymers by conjugating glucose-sensitive 3-aminophenylboronic acid (3-PBA) onto the backbone of a metabolite-derived, pH-responsive poly-L-lysine isophthalamide (PLP) polymer with a pKa value of 4.4 at various substitution degrees. Dual-responsive LME–(PLP–PBA) hydrogels were further synthesized by crosslinking the PLP–PBA polymers with L-lysine methyl ester (LME). The rheological properties and swelling ratio of the hydrogel could be manipulated by the PBA grafting degree and crosslinking ratio. With the increase of pH and glucose concentration, the pore size of the hydrogel enhanced, thus promoting the release of loaded insulin. Under physiological conditions, the hydrogel with optimal formulation could establish acute pH-responsive and glucose-responsive insulin release. The development of this dual-responsive hydrogel suggests a strategy to overcome the high pKa problem associated with PBA and provide a promising delivery system for smart insulin delivery.

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来源期刊
Soft Matter
Soft Matter 工程技术-材料科学:综合
CiteScore
6.00
自引率
5.90%
发文量
891
审稿时长
1.9 months
期刊介绍: Where physics meets chemistry meets biology for fundamental soft matter research.
期刊最新文献
Mechanical properties of soft hydrogels: assessment by scanning ion-conductance microscopy and atomic force microscopy. Finite element modelling of atomic force microscopy imaging on deformable surfaces. Interpolyelectrolyte complexes of a biguanide cationic polyelectrolyte: formation of core/corona nanoparticles with double-hydrophilic diblock polyanion. Back cover Correction: Controllable biomolecule release from self-assembled organic nanotubes with asymmetric surfaces: pH and temperature dependence.
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