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首页> 外文期刊>Polymer Degradation and Stability >Air spun poly(lactic acid) nanofiber scaffold degradation for vascular tissue engineering: A ~1H NMR study
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Air spun poly(lactic acid) nanofiber scaffold degradation for vascular tissue engineering: A ~1H NMR study

机译:空气纺丝聚乳酸纳米纤维支架降解用于血管组织工程:〜1H NMR研究

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摘要

Our previous studies demonstrated that poly(lactic acid) (PLA) air spun nanofiber mesh coatings could be advantageously used to promote monolayer endothelial cell growth on poly(ethylene ter-ephtalate) vascular prostheses. PLA is one of the best candidate for this application because it slowly degrades, and could be thereafter gradually replaced by the extracellular matrix components. Thus, the key parameters for a successful replacement are both the mechanism and the rate of the pol-y(lactic acid) hydrolysis. Therefore in this study, the PLA degradation process was investigated using ~1H-NMR spectroscopy. Contrary to classical analyses which are based on the crystallinity change (DSC, XRD) or on the molecular weight loss (GPC), NMR spectroscopy allows assessing the polymer degradation at a molecular level. Indeed, the analysis of ~1H-NMR peak assigned to PLA end-chain unit can be used to measure the polymer average molecular weight and consequently, follow the degradation. Moreover, by using homonuclear decoupled ~1H NMR spectroscopy, stereosequences of the main poly(Iactic acid) linear chain can be identified and isotactic and stereoblock ratios can be evaluated. Accordingly, this study investigated the degradation process of two different commercial poly(lactic acid)s in air, water and physiological serum environments during 90 days. The influence of the PLA initial chemical structure (stereosequences) on the degradation process was clearly evidenced and the time dependence of the relative amount of L-lactic, D-lactic, and meso-lactic units within the PLA structure was estimated. This NMR approach provides a better understanding of the polymer degradation mechanisms.
机译:我们以前的研究表明,聚乳酸(PLA)气纺纳米纤维网状涂层可以有利地用于促进聚对苯二甲酸乙二醇酯人工血管上单层内皮细胞​​的生长。 PLA是该应用的最佳候选者之一,因为它会缓慢降解,并且随后可以逐渐被细胞外基质成分所替代。因此,成功替代的关键参数是多羟基(乳酸)水解的机理和速率。因此,在这项研究中,使用〜1H-NMR光谱研究了PLA降解过程。与基于结晶度变化(DSC,XRD)或基于分子量损失(GPC)的经典分析相反,NMR光谱法可以评估聚合物在分子水平上的降解。实际上,分配给PLA端链单元的〜1H-NMR峰的分析可用于测量聚合物的平均分子量,因此可追踪降解情况。此外,通过使用同核解耦〜1H NMR光谱,可以识别主要聚(乳酸)线性链的立体序列,并可以评估等规和立体嵌段比率。因此,本研究调查了两种不同的商用聚乳酸在90天的空气,水和生理血清环境中的降解过程。清楚地证明了PLA初始化学结构(立体序列)对降解过程的影响,并估算了PLA结构中L乳酸,D乳酸和中乳酸单位的相对量的时间依赖性。这种NMR方法可更好地了解聚合物的降解机理。

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  • 来源
    《Polymer Degradation and Stability 》 |2012年第8期| p.1520-1526| 共7页
  • 作者单位

    Laboratoire de Physique et Mecanique Textile, Universite de Haute Alsace, Ecole Nationale Superieure d'Ingenieurs du Sud Alsace, 11 rue Alfred Werner 68093 Mulhouse cedex, France,Laboratoire d'Ingenierie de Surface, Centre de Recherche sur les Materiaux Avances, Departement de genie des mines, de la metallurgie et des materiaux, Universite Laval, 1065, avenue de la Medecine, Quebec (QC) G1V 0A6, Canada,Centre de recherche du CHUQ, Hopital St Francois d'Assise, 10, rue de I'Espinay, local EO-165, Quebec (QC) G1L 315, Canada;

    Laboratoire de Chimie Organique et Bio-organique, Universite de Haute Alsace, Ecole Nationale Superieure de Chimie de Mulhouse, 3 rue Alfred Werner 68200 Mulhouse cedex, France;

    Laboratoire d'Ingenierie de Surface, Centre de Recherche sur les Materiaux Avances, Departement de genie des mines, de la metallurgie et des materiaux, Universite Laval, 1065, avenue de la Medecine, Quebec (QC) G1V 0A6, Canada,Centre de recherche du CHUQ, Hopital St Francois d'Assise, 10, rue de I'Espinay, local EO-165, Quebec (QC) G1L 315, Canada;

    Laboratoire de Physique et Mecanique Textile, Universite de Haute Alsace, Ecole Nationale Superieure d'Ingenieurs du Sud Alsace, 11 rue Alfred Werner 68093 Mulhouse cedex, France;

    Laboratoire d'Ingenierie de Surface, Centre de Recherche sur les Materiaux Avances, Departement de genie des mines, de la metallurgie et des materiaux, Universite Laval, 1065, avenue de la Medecine, Quebec (QC) G1V 0A6, Canada,Centre de recherche du CHUQ, Hopital St Francois d'Assise, 10, rue de I'Espinay, local EO-165, Quebec (QC) G1L 315, Canada;

    Laboratoire de Physique et Mecanique Textile, Universite de Haute Alsace, Ecole Nationale Superieure d'Ingenieurs du Sud Alsace, 11 rue Alfred Werner 68093 Mulhouse cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    poly(lactic acid); nanofibers; stereosequences; ~1H NMR; vascular prosthesis; air spinning;

    机译:聚乳酸纳米纤维立体序列;约1 H NMR;人工血管气流纺;

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