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首页> 外文期刊>Biomacromolecules >Mechanistic Studies on the Degradation and Protein Release Characteristics of Poly(lactic-co-glycolic-co-hydroxymethylglycolic acid) Nanospheres
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Mechanistic Studies on the Degradation and Protein Release Characteristics of Poly(lactic-co-glycolic-co-hydroxymethylglycolic acid) Nanospheres

机译:聚(乳酸-共-乙醇-共-羟甲基乙醇酸)纳米球的降解和蛋白质释放特性的机理研究

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The purpose of this study was to gain mechanistic insights into the effect of different formulation parameters on the degradation and release behavior of protein-loaded nanoparticulate carrier systems based on an aliphatic polyester with pendant hydroxyl groups, poly(lactic-co-glycolic-hydroxymethyl glycolic acid) (pLGHMGA). Bovine serum albumin (BSA) was used as a model protein. BSA-loaded pLGHMGA nanospheres of 400-700 nm were prepared using a solvent evaporation method using pLGHMGA of different molecular weights and different compositions. Also, the concentration of pLGHMGA in the organic phase was varied. The nanospheres showed a continuous mass loss accompanied by continuous decrease in number average molecular weight, which indicates that the degradation of the nanospheres is by bulk degradation with a rapid release of water-soluble low molecular weight fragments. On the basis of NMR analysis, it is concluded that intramolecular transesterification precedes extensive hydrolysis of the polymer and degradation of the nanospheres. BSA-loaded freeze-dried nanospheres showed a significant burst release of 40-50% of the BSA loading. In contrast, nonfreeze-dried samples showed a small burst of around 10-20%, indicating that freeze-drying induced pore formation. NOnlyophilized nanospheres prepared from pLGHMGA with 64/18/18 lactic/glycolic/hydroxymethylglycolic acid (L/G/HMG) ratio showed a relatively fast release of BSA for the next 30 days. Nanospheres prepared from a more hydrophobic pLGHMGA (74/13/13, L/G/HMG) showed a two-phase release. Circular dichroism analysis showed that the secondary structure of the released protein was preserved, This study shows a correlation between release behavior and particle erosion rate, which can be modulated by the copolymer composition.
机译:这项研究的目的是获得对不同配方参数对基于具有侧链羟基的脂肪族聚酯,聚(乳酸-共-乙醇-羟甲基羟乙酸)的蛋白质负载的纳米颗粒载体系统的降解和释放行为的影响的力学见解。酸)(pLGHMGA)。牛血清白蛋白(BSA)用作模型蛋白。使用溶剂蒸发法,使用分子量和组成不同的pLGHMGA,制备了400-700 nm的BSA负载的pLGHMGA纳米球。另外,有机相中pLGHMGA的浓度也不同。纳米球显示出连续的质量损失,伴随着数均分子量的连续降低,这表明纳米球的降解是由于本体降解以及水溶性低分子量片段的快速释放。根据NMR分析,可以得出结论,分子内酯交换反应先于聚合物的广泛水解和纳米球的降解。负载BSA的冻干纳米球显示出40-50%BSA负载的显着爆发释放。相反,未冷冻干燥的样品显示约10-20%的小破裂,表明冷冻干燥会诱导孔形成。由pLGHMGA制备的未冻干纳米球具有64/18/18乳酸/乙醇酸/羟甲基乙醇酸(L / G / HMG)的比例,在接下来的30天中,BSA的释放相对较快。由疏水性更高的pLGHMGA(74/13/13,L / G / HMG)制备的纳米球显示出两相释放。圆二色性分析表明,释放的蛋白质的二级结构得以保留,该研究表明释放行为与颗粒侵蚀速率之间存在相关性,可以通过共聚物组成对其进行调节。

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