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首页> 外文期刊>Journal of Applied Polymer Science >Chitosan-polyelectrolyte complexation for the preparation of gel beads and controlled release of anticancer drug. I. Effect of phosphorus polyelectrolyte complex and enzymatic hydrolysis of polymer
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Chitosan-polyelectrolyte complexation for the preparation of gel beads and controlled release of anticancer drug. I. Effect of phosphorus polyelectrolyte complex and enzymatic hydrolysis of polymer

机译:壳聚糖-聚电解质络合物用于制备凝胶珠和控制释放的抗癌药物。 I.磷聚电解质配合物和聚合物的酶水解作用

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Enzymic hydrolyzed chitosan was employed to prepare chitosan-tripolyphosphate and chitosan-polyphosphoric acid gel beads using a polyelectrolyte complexation method for the sustained-release of anticancer agent, 6-mercaptopurine (6-MP). pH responsive swelling ability, drug-release characteristics, and morphology of the chitosan gel bead depends on polyelectrolyte complexation mechanism and molecular weight of the enzymic hydrolyzed chitosan. The complexation mechanism of chitosan beads gelled in pentasodium tripolyphosphate or polyphosphoric acid solution was ionotropic crosslinking or interpolymer complex, respectively. The drug-release patterns of all chitosan gel beads in pH 6.8 seemed to be diffusional based, which might be in accordance with the Higuchi model, whereas release profiles of the chitosan-tripolyphosphate gel beads in pH 1.2 medium seemed to be non-Fickian diffusion controlled due to the swelling or matrix erosion of the beads. The rate of 6-MP releasing from chitosan-tripolyphosphate or chitosan-polyphosphoric acid gel matrix were significantly increased with the decreased molecular weight of enzymic hydrolyzed chitosan. However, the dissolution rates of 6-MP entraped in chitosan-tripolyphosphate and chitosan-polyphosphoric acid gel matrix were significantly slower than the dissolution rate of the original drug. These results indicate that the chitosan-polyphosphoric acid gel bead is a better polymer carrier for the sustained release of anticancer drugs in simulated intestinal and gastric juice medium than the chitosan-tripolyphosphate gel beads.
机译:酶水解壳聚糖用于制备壳聚糖-三聚磷酸盐和壳聚糖-多磷酸凝胶珠,采用聚电解质络合方法持续释放抗癌剂6-巯基嘌呤(6-MP)。壳聚糖凝胶珠的pH响应溶胀能力,药物释放特性和形态取决于聚电解质络合机理和酶水解壳聚糖的分子量。在三聚磷酸五钠或多磷酸溶液中凝胶化的壳聚糖微珠的络合机理分别为离子交联或互聚物配合物。 pH 6.8时所有壳聚糖凝胶珠的药物释放模式似乎都是基于扩散的,这可能与Higuchi模型一致,而pH 1.2介质中的壳聚糖三聚磷酸盐凝胶珠的释放曲线似乎是非菲克扩散的。由于珠粒的溶胀或基体侵蚀而受到控制。随着酶水解壳聚糖分子量的降低,从壳聚糖-三聚磷酸酯或壳聚糖-多磷酸凝胶基质释放6-MP的速率显着增加。然而,壳聚糖-三聚磷酸盐和壳聚糖-多磷酸凝胶基质中截留的6-MP的溶出速率明显慢于原始药物的溶出速率。这些结果表明,与壳聚糖-三聚磷酸盐凝胶珠相比,壳聚糖-多磷酸凝胶珠是在模拟的肠和胃液介质中持续释放抗癌药物的更好的聚合物载体。

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