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Chitosan and lactic acid-grafted chitosan nanoparticles as carriers for prolonged drug delivery

机译:壳聚糖和乳酸接枝的壳聚糖纳米粒子作为载体延长药物递送

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摘要

Nanoparticles of ~10 nm in diameter made with chitosan or lactic acid-grafted chitosan were developed for high drug loading and prolonged drug release. A drug encapsulation efficiency of 92% and a release rate of 28% from chitosan nanoparticles over a 4-week period were demonstrated with bovine serum protein. To further increase drug encapsulation, prolong drug release, and increase chitosan solubility in solution of neutral pH, chitosan was modified with lactic acid by grafting D,L-lactic acid onto amino groups in chitosan without using a catalyst. The lactic acid-grafted chitosan nanoparticles demonstrated a drug encapsulation efficiency of 96% and a protein release rate of 15% over 4 weeks. With increased protein concentration, the drug encapsulation efficiency decreased and drug release rate increased. Unlike chitosan, which is generally soluble only in acid solution, the chitosan modified with lactic acid can be prepared from solutions of neutral pH, offering an additional advantage of allowing proteins or drugs to be uniformly incorporated in the matrix structure with minimal or no denaturization.
机译:开发了由壳聚糖或乳酸接枝的壳聚糖制成的直径约10 nm的纳米颗粒,以实现高载药量和延长药物释放。用牛血清蛋白证明了在4周的时间里壳聚糖纳米粒子的药物包封效率为92%,释放率为28%。为了进一步增加药物包封度,延长药物释放时间并增加壳聚糖在中性pH溶液中的溶解度,在不使用催化剂的情况下,通过将D,L-乳酸接枝到壳聚糖的氨基上,用乳酸修饰壳聚糖。乳酸接枝的壳聚糖纳米粒子在4周内显示出96%的药物封装效率和15%的蛋白质释放率。随着蛋白质浓度的增加,药物的包封效率降低,药物的释放速率提高。与通常仅溶于酸溶液的壳聚糖不同,用乳酸改性的壳聚糖可以从中性pH的溶液中制备,提供了另一个优点,即允许蛋白质或药物以最小的变性或不变性而均匀地掺入基质结构中。

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