首页> 美国卫生研究院文献>Polymers >Physicochemical Evaluation of Insulin Complexes with QPDMAEMA-b-PLMA-b-POEGMA Cationic Amphiphlic Triblock Terpolymer Micelles
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Physicochemical Evaluation of Insulin Complexes with QPDMAEMA-b-PLMA-b-POEGMA Cationic Amphiphlic Triblock Terpolymer Micelles

机译:QPDMAEMA-b-PLMA-b-POEGMA阳离子两性三嵌段三嵌段三元共聚物胶束对胰岛素复合物的理化评估

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摘要

Herein, poly[quaternized 2-(dimethylamino)ethyl methacrylate- -lauryl methacrylate- -(oligo ethylene glycol)methacrylate] (QPDMAEMA- -PLMA- -POEGMA) cationic amphiphilic triblock terpolymers were used as vehicles for the complexation/encapsulation of insulin (INS). The terpolymers self-assemble in spherical micelles with PLMA cores and mixed QPDMAEMA/POEGMA coronas in aqueous solutions. The cationic micelles were complexed via electrostatic interactions with INS, which contains anionic charges at pH 7. The solutions were colloidally stable in all INS ratios used. Light-scattering techniques were used for investigation of the complexation ability and the size and surface charge of the terpolymer/INS complexes. The results showed that the size of the complexes increases as INS ratio increases, while at the same time the surface charge remains positive, indicating the formation of clusters of micelles/INS complexes in the solution. Fluorescence spectroscopy measurements revealed that the conformation of the protein is not affected after the complexation with the terpolymer micellar aggregates. It was observed that as the solution ionic strength increases, the size of the QPDMAEMA- -PLMA- -POEGMA/INS complexes initially decreases and then remains practically constant at higher ionic strength, indicating further aggregation of the complexes. atomic force microscopy (AFM) measurements showed the existence of both clusters and isolated nanoparticulate terpolymer/protein complexes.
机译:在此,将聚[甲基丙烯酸2-(二甲基氨基)乙基酯-甲基丙烯酸月桂酯-(低聚乙二醇)甲基丙烯酸酯](QPDMAEMA--PLMA--POEGMA)阳离子两亲三嵌段三元共聚物用作胰岛素络合/包封的载体( INS)。三元共聚物在球形胶束中自组装,并带有PLMA核和水溶液中的混合QPDMAEMA / POEGMA电晕。阳离子胶束通过与INS的静电相互作用而络合,而INS在pH 7时含有阴离子电荷。在所有使用的INS比例下,溶液都是胶体稳定的。使用光散射技术研究三元共聚物/ INS配合物的络合能力以及大小和表面电荷。结果表明,配合物的大小随INS比的增加而增加,同时表面电荷仍为正,表明溶液中形成了胶束/ INS配合物簇。荧光光谱测量显示,与三元共聚物胶束聚集体复合后,蛋白质的构象不受影响。观察到,随着溶液离子强度的增加,QPDMAEMA--PLMA--POEGMA / INS复合物的尺寸开始减小,然后在较高的离子强度下实际上保持恒定,表明复合物进一步聚集。原子力显微镜(AFM)测量显示出簇和孤立的纳米颗粒三元共聚物/蛋白质复合物的存在。

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