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首页> 外文期刊>Macromolecular Research >Development of a pH-Semsitive Polymer Using Poly(aspartic acid-graft-imidazole)-block-Poly(ethylene glycol) for Acidic pH Targeting Systems
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Development of a pH-Semsitive Polymer Using Poly(aspartic acid-graft-imidazole)-block-Poly(ethylene glycol) for Acidic pH Targeting Systems

机译:用聚天冬氨酸接枝咪唑嵌段嵌段聚乙二醇制备酸性pH靶向系统的pH敏感聚合物

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摘要

pH sensitive polymer systems can be utilized as smart nanocarriers to deliver hydrophobic drugs specifically to solid tumors or to acidosis-affected rheumatic joints. In this study, a poly(L-aspartic acid-graft-imidazole)-block-poly(ethylene glycol) (P(Asp-g-Im)-PEG) block copolymer was synthesized as a pH sensitive nanocarrier targeting acidic pH environments. The polypeptide P(Asp), which was used as a backbone for the hydrophobic block, was synthesized by ring opening polymerization with N-carboxylanhydride (NCA) of β-benzyl-aspartic acid. PEG was included as the hydrophilic block and the polymer was functionalized with imidazole groups to confer pH sensitivity. The prepared P(Asp-g-Im)-PEG is zwitterionic with a pI 6.5;;60% of the available carboxyl groups of P(Asp)-PEG were substituted by imidazole groups. Furthermore, the poten-tiometric titration curve of P(Asp-g-Im)-PEG demonstrated a broad buffer zone. The micelles prepared from P(Asp-g-Im)-PEG showed pH dependent critical micelle concentrations (CMC), particle sizes, zeta potentials, and morphologies.
机译:pH敏感的聚合物系统可以用作智能纳米载体,以将疏水性药物专门递送至实体瘤或酸中毒影响的风湿关节。在这项研究中,聚(L-天冬氨酸-接枝-咪唑)-嵌段-聚(乙二醇)(P(Asp-g-Im)-PEG)嵌段共聚物被合成为靶向酸性pH环境的pH敏感纳米载体。通过与β-苄基天冬氨酸的N-羧基丙二酸酐(NCA)进行开环聚合,合成了用作疏水性嵌段骨架的多肽P(Asp)。包括PEG作为亲水性嵌段,聚合物用咪唑基团官能化以赋予pH敏感性。制备的P(Asp-g-Im)-PEG是两性离子,pI为6.5 ;; P(Asp)-PEG的60%可用羧基被咪唑基取代。此外,P(Asp-g-Im)-PEG的电位滴定曲线显示了较宽的缓冲带。由P(Asp-g-Im)-PEG制备的胶束具有pH依赖性的临界胶束浓度(CMC),粒径,ζ电势和形态。

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