首页> 外文期刊>Journal of Applied Polymer Science >Effect of nanoscale confinement on molecular mobility and drug release properties of cellulose acetate/sulindac nanofibers
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Effect of nanoscale confinement on molecular mobility and drug release properties of cellulose acetate/sulindac nanofibers

机译:纳米尺度对醋酸纤维素/舒林酰基纤维纤维素分子迁移率和药物释放性能的影响

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摘要

Polymers confined in the nanoscale exhibit various unusual properties that are not seen in bulk polymers. Here, the effect of nanoscale confinement on the drug release properties of polymer nanofibers is investigated by analyzing the molecular mobility and drug release kinetics of cellulose acetate/sulindac nanofibers (CNs). It is observed that the activation energy, E-a, for molecular motion of both the main chain and side chain tended to increase as the diameter of the CNs decreased from 850 to 260 nm. The increased E-a indicates that the chains confined in ultrathin CNs are closely packed, resulting in a low molecular mobility. With decreasing diameter from 620 to 260 nm, the diffusion coefficient of drug is significantly decreased from 85.3 to 10.3 nm(2) min(-1). Such correlation between E-a and drug diffusion rate indicates that the confinement-induced suppression of the molecular motion could significantly affect the drug release properties of polymer nanofibers. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47863.
机译:纳米级局限于纳米级的聚合物表现出在块状聚合物中未见的各种异常性质。这里,通过分析醋酸纤维素/舒林酰基纳纤维(CNS)的分子迁移率和药物释放动力学来研究纳米尺度对聚合物纳米纤维的药物释放性质的影响。观察到激活能量,E-A,用于随着CNS的直径从850至260nm降低而增加的主要链和侧链的分子运动趋于增加。增加的E-A表明局限于超薄CNS中的链条紧密包装,导致低分子迁移率。随着直径的降低到620至260nm,药物的扩散系数显着降低85.3至10.3nm(2)分钟(-1)。 E-A和药物扩散速率之间的这种相关性表明分子运动的约束诱导的抑制可以显着影响聚合物纳米纤维的药物释放性能。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47863。

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