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首页> 外文期刊>Macromolecular Research >Preparation and Characterization of Cisplatin-Incorporated Chitosan Hydrogels,Microparticles,and Nanoparticles
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Preparation and Characterization of Cisplatin-Incorporated Chitosan Hydrogels,Microparticles,and Nanoparticles

机译:含顺铂的壳聚糖水凝胶,微粒和纳米颗粒的制备与表征

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Three different,polymer-platinum conjugates (hydrogels,microparticles,and nanoparticles) were synthesized by complexation of cis-dichlorodiammineplatinum(II) (cisplatin) with partially succinylated glycol chitosan (PSGC).Succinic anhydride was used as a linker to introduce cisplatin to glycol chitosan (GC).Succinylation of GC was investigated systematically as a function of the molar ratio of succinic anhydride to glucosamine,the methanol content in the reaction media,and the reaction temperature.By controlling the reaction conditions,water-soluble,partially water-soluble,and hydrogel-forming PSGCs were synthesized,and then conjugated with cisplatin.The complexation of cisplatin with water-soluble PSGC via a ligand exchange reaction of platinum from chloride to the carboxylates induced the formation of nano-sized aggregates in aqueous media.The hydrodynamic diameters of PSGC/cisplatin complex nano-aggregates,as determined by light scattering,were 180-300 nm and the critical aggregation concentrations (CACs),as determined by a fluorescence technique using pyrene as a probe,were 20-30 mu g/mL.The conjugation of cisplatin with partially water-soluble PSGC,i.e.,borderline between water-soluble and water-insoluble PSGC,produced micro-sized particles <500 mu m.Cisplatin-complexed PSGC hydrogels were prepared from water-insoluble PSGCs.All of the cisplatin-incorporated,polymer matrices released platinum in a sustained manner without any significant initial burst,suggesting that they may all be useful as slow release systems for cisplatin.The release rate of platinum increased with the morphology changes from hydrogel through microparticle to nanoparticle systems.
机译:通过顺-二氯二氨合铂(II)与部分琥珀酰化乙二醇壳聚糖(PSGC)的络合合成了三种不同的聚合物-铂结合物(水凝胶,微粒和纳米粒子)。以琥珀酸酐为连接剂将顺铂引入乙二醇系统地研究了琥珀酸与琥珀酸酐与葡萄糖胺的摩尔比,反应介质中的甲醇含量和反应温度的变化。通过控制反应条件,水溶性,部分水溶性合成了可溶于水并形成水凝胶的PSGC,然后与顺铂偶联。通过氯化铂与羧酸盐之间的铂的配体交换反应,使顺铂与水溶性PSGC络合,从而在水性介质中形成纳米级聚集体。通过光散射确定的PSGC /顺铂复合纳米聚集体的流体动力学直径为180-300 nm和临界聚集体荧光技术以by为探针测定的浓度为20-30μg / mL。顺铂与部分水溶性PSGC(即水溶性和水不溶性PSGC之间的界线)结合,制备的粒径小于500微米的微粒。用不溶于水的PSGC制备顺铂复合的PSGC水凝胶。所有结合有顺铂的聚合物基质均以持续方式释放出铂,而没有任何明显的初始破裂,表明它们可能都是铂的释放速率随水凝胶,微粒,纳米系统的形态变化而增加。

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