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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Novel Poly amide 6,10 Variants Synthesized by Modified Interfacial Polymerization for Application as a Rate-Modulated Monolithic Drug Delivery System
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Novel Poly amide 6,10 Variants Synthesized by Modified Interfacial Polymerization for Application as a Rate-Modulated Monolithic Drug Delivery System

机译:通过改性界面聚合合成的新型聚酰胺6,10变体,用于速率调节的整体药物递送系统

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The aim of this study was to explore and elucidate the possibility of employing an aliphatic polyamide 6,10(PA 6,10)synthesized by a modified interfacial polymerization process as a novel rate-modulated monolithic matrix drug delivery system.A Plackett-Burman experimental design was used to synthesize 14 different PA 6,10 polymers using the interfacial polymerization process of synthesis comprising the monomers namely hexameth-ylenediamine and sebacoyl chloride and the solvents namely hexane(nonpolar phase)and deionized water(polar phase).This process was modified by variations in stoichiometry of monomers,volume ratios of solvents as well as solvent phase modification using cyclohexane and sodium hydroxide for the nonpolar and polar solvent phases,respectively.The micromechanical parameters of the newly synthesized PA 6,10 variants were elucidated in terms of the matrix resilience(MR),matrix hardness and deformation energy,in which case matrix hardness and deformation energy were expressed as second-order polynomial hydration rate constants.The effect of changes in pH of the hydration media on these parameters was also explored as part of the characterization process.Scanning electron microscopy and Fourier transform infrared spectroscopy were used to correlate the effect of synthesis variables on the micromechanical behavior PA 6,10 and its subsequent ability to impact drug release.The micromechanical values revealed that all independent formulation variables had a significant influence on the responses.Furthermore,the applied statistical model was utilized in selecting a combination of reaction variables to produce optional physicomechanical properties.The MR was selected for optimization among other parameters since it had a prominent effect on matrix integrity as well as drug release.The one-way analysis of variance,comparison of experimental versus fitted data,the R~2 and P-values as well as the Durbin-Watson statistic indices were used in ascertaining the accuracy of the model.The rate-modulating drug release ability of synthetic aliphatic PA 6,10 was explored to direct the optimization using a higher resolution Box-Behnken statistical design.Constraints were set to obtain levels of independent variables that optimized the physicomechanical properties and the mean dissolution time fixed at eight hours.
机译:这项研究的目的是探索并阐明将通过改性界面聚合工艺合成的脂肪族聚酰胺6,10(PA 6,10)用作新型的速率调节整体基质药物递送系统的可能性.Plackett-Burman实验该设计采用界面聚合方法合成了14种不同的PA 6,10聚合物,其中包括六甲基亚乙基二胺和癸二酰氯等单体,以及己烷(非极性相)和去离子水(极性相)作为溶剂。通过改变单体的化学计量,溶剂的体积比以及分别使用环己烷和氢氧化钠对非极性和极性溶剂相进行的溶剂相改性。阐明了新合成的PA 6,10变体的微机械参数。基质回弹性(MR),基质硬度和变形能,在这种情况下,基质硬度和变形能为作为二阶多项式水合速率常数,作为表征过程的一部分,还探讨了水合介质pH值的变化对这些参数的影响。使用扫描电子显微镜和傅立叶变换红外光谱法对合成变量的影响进行关联微观力学值表明,所有独立的配方变量均对响应有显着影响。此外,利用应用的统计模型选择反应变量的组合,以分析PA 6,10的微力学行为及其随后影响药物释放的能力。产生可选的物理力学性能。由于MR对基质完整性和药物释放有显着影响,因此选择MR作为其他参数的优化。方差的单向分析,实验数据与拟合数据的比较,R〜2和P值以及Durbin-Watson统计指标用于确定acc利用高分辨率Box-Behnken统计设计探索合成脂族PA 6,10的速率调节药物释放能力,以指导优化过程;设置约束条件以获得独立变量的水平,以优化物理力学性能和平均溶解时间固定为八小时。

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