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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >PLGA based drug delivery systems (DDS) for the sustained release of insulin: Insight into the protein/polyester interactions and the insulin release behavior
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PLGA based drug delivery systems (DDS) for the sustained release of insulin: Insight into the protein/polyester interactions and the insulin release behavior

机译:基于PLGA的胰岛素持续释放药物输送系统(DDS):深入了解蛋白质/聚酯相互作用和胰岛素释放行为

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BACKGROUND: Drug delivery systems (DDS) were designed using insulin as model drug and poly (lactic-co-glycolic) copolymers (PLGA) as polymeric matrix. The carriers were synthesized by direct self-assembly of the insulin and the polyester under mild conditions. RESULTS: The kind and level of association between the protein and the polymer were studied using computational methods (combined MM2/PM3) and spectroscopic tools (Fourier transform infrared (FTIR), energy dispersive X-ray (EDX) and X-ray fluorescence spectroscopy (XFS)). The effect of the number average molecular weight (M_n) of the copolymer on the association efficiency (AE) drug-polymer as well as on the release profile has been explored. Mathematical models were used to predict the insulin release kinetic and mechanism. CONCLUSIONS: Satisfactory protein/PLGA association efficiencies (between 77 and 99%) were registered depending on the M_n of the PLGA. Hydrophobic and hydrophilic interactions were detected between the protein and the polymeric network by computational analysis. In vitro release studies demonstrated that copolyesters of about 8600 and 1500 Da were suitable for the gradual release of insulin while PLGA oligomers of average molecular weight between 700 and 800 Da were unsuitable as DDS. The insulin release kinetics fits well with the Korsmeyer model, following the anomalous transport mechanism.
机译:背景:药物输送系统(DDS)是使用胰岛素作为模型药物,而聚(乳酸-乙醇酸)共聚物(PLGA)作为聚合物基质而设计的。通过在温和条件下胰岛素和聚酯的直接自组装来合成载体。结果:使用计算方法(MM2 / PM3组合)和光谱工具(傅里叶变换红外(FTIR),能量色散X射线(EDX)和X射线荧光光谱法研究了蛋白质与聚合物之间的缔合类型和缔合水平(XFS))。研究了共聚物的数均分子量(M_n)对缔合效率(AE)药物-聚合物以及释放曲线的影响。数学模型用于预测胰岛素释放动力学和机理。结论:根据PLGA的M_n,令人满意的蛋白质/ PLGA缔合效率(介于77%和99%之间)被记录。通过计算分析检测到蛋白质和聚合物网络之间的疏水和亲水相互作用。体外释放研究表明,约8600和1500 Da的共聚酯适合逐步释放胰岛素,而平均分子量在700和800 Da之间的PLGA低聚物不适合用作DDS。遵循异常运输机制,胰岛素释放动力学与Korsmeyer模型非常吻合。

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