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首页> 外文期刊>Biomacromolecules >Micelles Based on Biodegradable Poly(L-glutamic acid)-b-Polylactide with Paramagnetic Gd Ions Chelated to the Shell Layer as a Potential Nanoscale MRI-Visible Delivery System
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Micelles Based on Biodegradable Poly(L-glutamic acid)-b-Polylactide with Paramagnetic Gd Ions Chelated to the Shell Layer as a Potential Nanoscale MRI-Visible Delivery System

机译:基于可生物降解的聚(L-谷氨酸)-b-聚交酯的胶束与顺磁性Gd离子螯合在壳层上作为潜在的纳米MRI可见递送系统

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摘要

There is much interest in the development of a nanoscale drug delivery system with MRI visibility to optimize the delivery efficiency and therapeutic efficacy under image guidance.Here we report on the successful fabrication of nanoscale micelles based on biodegradable poly(L-glutamic acid)-b-polylactide(PG-b-PLA)block copolymer with paramagnetic Gd~(3+)ions chelated to their shell.PG-b-PLA was synthesized by sequential polymerization reactions:anionic polymerization of L-lactide followed by ring-opening polymerization of benzyl glutamate N-carboxylic anhydride.The metal chelator p-aminobenzyldiethylenetriaminepenta(acetic acid)(DTPA)was readily conjugated to the side chain carboxylic acids of poly(L-glutamic acid).The resulting copolymer formed spherical micelles in aqueous solution with an average diameter of 230 nm at pH 7.4.The size of PG(DTPA)-b-PLA micelles decreased with increasing pH value.DTPA-Gd chelated to the shell layer of the micelles exhibited significantly higher spin-lattice relaxivity(r_1)than a small-molecular-weight MRI contrast agent,indicating that water molecules could readily access the Gd ions in the micelles.Because of the presence of multiple carboxylic acid functional groups in the shell layer,polymeric micelles based on biodegradable PG(DTPA-Gd)-b-PLA may be a suitable platform for the development of MRI-visible,targeted nanoscale drug delivery systems.
机译:人们对开发具有MRI可见性的纳米级药物递送系统非常感兴趣,以在图像指导下优化递送效率和治疗效果。在此,我们报道了基于可生物降解的聚(L-谷氨酸)-b的纳米级胶束的成功制备顺磁性的Gd〜(3+)离子螯合在壳中的聚-丙交酯(PG-b-PLA)嵌段共聚物.PG-b-PLA通过顺序聚合反应合成:L-丙交酯的阴离子聚合反应,然后L-丙交酯的开环聚合反应谷氨酸苄酯N-羧酸酐金属螯合剂对氨基苄基二乙烯三胺五乙酸(DTPA)易于与聚L-谷氨酸的侧链羧酸共轭共聚物在水溶液中平均形成球形胶束pH 7.4时230 nm的直径.PG(DTPA)-b-PLA胶束的尺寸随pH值的增加而减小.DTPA-Gd螯合到胶束的壳层表现出明显更高的自旋-l比小分子MRI造影剂具有更大的弛豫性(r_1),表明水分子可以很容易地进入胶束中的Gd离子。由于壳层中存在多个羧酸官能团,基于生物可降解的聚合物胶束PG(DTPA-Gd)-b-PLA可能是开发MRI可见的靶向纳米级药物递送系统的合适平台。

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