首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Conjugation of drug to poly(D,L-lactic-co-glycolic acid) for controlled release from biodegradable microspheres.
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Conjugation of drug to poly(D,L-lactic-co-glycolic acid) for controlled release from biodegradable microspheres.

机译:药物与聚(D,L-乳酸-乙醇酸共聚物)的缀合,可控地从可生物降解的微球中释放。

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摘要

Poly(d,l-lactic-co-glycolic acid) (PLGA) was chemically conjugated to a model drug, N-(9-fluorenylmethoxycarbonyl-N-tert-butoxycarbonyl-l-tryptophan (Fmoc-Trp(Boc)) via an ester linkage. Various coupling reaction conditions were tested to optimize the conjugation process between a hydroxyl terminal group of PLGA and a carboxylic acid group of Fmoc-Trp(Boc). Two different lactic/glycolic acid compositions of PLGA (50/50 and 75/25) were used for the conjugation. The Fmoc-Trp(Boc)-PLGA conjugates were formulated into microspheres by a solvent evaporation technique for controlled release of Fmoc-Trp(Boc) over an one month period. A linear constant release of Fmoc-Trp(Boc) and its water-soluble PLGA oligomer conjugates was observed over an extended period without any initial burst effect, while unconjugated Fmoc-Trp(Boc) encapsulated within microspheres exhibited a rapid release profile. In addition, Fmoc-Trp(Boc) release rate solely depended on the PLGA composition that affected polymer degradation rate. The release rate of Fmoc-Trp(Boc) conjugated with fast degrading 50/50 PLGA was more rapid than that conjugated with relatively slow degrading 75/25 PLGA. This study demonstrates that PLGA-drug conjugation approach is a new and novel strategy to control the drug release rate from PLGA microspheres by utilizing the chemical degradation rate of PLGA backbone.
机译:聚(d,l-乳酸-乙醇酸共聚物)(PLGA)通过N-(9-芴基甲氧基羰基-N-叔丁氧基羰基-1-色氨酸(Fmoc-Trp(Boc))化学偶联到模型药物上测试了各种偶联反应条件,以优化PLGA的羟基末端基团与Fmoc-Trp(Boc)的羧酸基团之间的偶联过程。PLGA的两种不同的乳酸/乙醇酸组成(50/50和75 / 25)进行缀合,通过溶剂蒸发技术将Fmoc-Trp(Boc)-PLGA缀合物配制成微球,以控制Fmoc-Trp(Boc)在一个月内的释放。长时间观察到Trp(Boc)及其水溶性PLGA低聚物结合物,没有任何初始爆发效应,而包裹在微球中的未结合Fmoc-Trp(Boc)表现出快速释放特性。释放速率仅取决于影响聚合物降解的PLGA组成分级率。快速降解50/50 PLGA的Fmoc-Trp(Boc)的释放速率比降解相对较慢的75/25 PLGA的Fmoc-Trp(Boc)释放速率更快。这项研究表明,PLGA-药物偶联方法是通过利用PLGA主链的化学降解速率来控制PLGA微球中药物释放速率的新策略。

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