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Enzymatic degradation of poly(L-lactide) treated with supercritical carbon dioxide

机译:超临界二氧化碳处理的聚(L-丙交酯)的酶促降解

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摘要

To investigate the factors that affect the physical properties of poly (L-lactide) [poly (L-LA)] processed with supercritical carbon dioxide (scCO_2), the present work assessed the degradability of poly (L-LA), as well as its thermal and mechanical properties before and after processing. The thermal properties of three types of poly (L-LA) (H100, H440 and REVODE), each having different properties, were examined. Poly (L-LA) films were treated with scCO_2 using a high pressure reaction apparatus at 40 ℃ and 14 MPa for 3 h. The treated samples subsequently underwent enzymatic degradation tests using proteinase K. The poly (L-LA)s processed with scCO_2 degraded more slowly compared to polymers not treated with scCO_2 during the early stages of degradation. Scanning electron microscopy images of the degraded, scCO_2-processed poly (L-LA)s indicated close spacing of the cavities generated by degradation. The melting point (T_m) values of all poly (L-LA)s increased with scCO_2 processing, which influenced the degradability. Although the degradation of processed poly (L-LA) was slower than that of unprocessed poly (L-LA) in the early stages, the degradability of the treated H440 and REVODE samples was identical to that of specimens without scCO_2 processing after 160 h. In addition, the poly (L-LA) treated with scCO_2 was found to be degraded by proteinase K at a constant rate. The relationship between degradability and crystallinity was examined, and untreated H100 was observed to rapidly degrade in contact with proteinase K. The crystallinity indicators X_(c DSC) and X_(c XRD) increased after scCO_2 processing, such that the degradability of the treated sample was reduced. In addition, both the X_(c DSC) and X_(c XRD) values of untreated and treated H100 increased with degradation. Although the degradation curve of the REVODE was similar to that of the H440, the changes in the crystallinity of untreated REVODE were different from the results observed for the H100 and H440. XRD data showed that the diffraction peaks of the untreated H100 and the poly (L-LA)s treated with scCO_2, which were more highly crystalline, shifted to smaller angles as the enzymatic degradation progressed. Examination of the mechanical properties indicated increases in tensile strength and elastic modulus and decreases in elongation after scCO_2 processing, suggesting that the polymer chains were moved closer together. In conclusion, scCO_2 processing appears to uniformly contract polymer chains in both the amorphous and crystalline regions.
机译:为了研究影响用超临界二氧化碳(scCO_2)处理的聚(L-丙交酯)[聚(L-LA)]的物理性能的因素,本工作评估了聚(L-LA)的可降解性,以及加工前后的热和机械性能。检查了三种分别具有不同性质的聚(L-LA)(H100,H440和REVODE)的热性质。用高压反应仪在40℃和14 MPa下用scCO_2处理聚(L-LA)薄膜3小时。随后,使用蛋白酶K对处理过的样品进行酶促降解测试。在降解的早期阶段,与未用scCO_2处理的聚合物相比,用scCO_2处理的聚(L-LA)降解得更慢。降解的,经scCO_2处理的聚(L-LA)的扫描电子显微镜图像表明,降解产生的腔体的间距很小。随着scCO_2处理,所有聚(L-LA)的熔点(T_m)值均增加,这影响了降解性。尽管在早期阶段,加工后的聚(L-LA)的降解比未加工的聚(L-LA)的降解要慢,但是经过处理的H440和REVODE样品的降解性与160 h后未经scCO_2处理的样品的降解性相同。另外,发现用scCO_2处理的聚(L-LA)被蛋白酶K以恒定速率降解。检查了降解性和结晶度之间的关系,观察到未处理的H100与蛋白酶K接触后迅速降解。scCO_2处理后,结晶度指标X_(c DSC)和X_(c XRD)升高,因此处理后的样品的降解性减少了。另外,未经处理和经处理的H100的X_(c DSC)和X_(c XRD)值均随降解而增加。尽管REVODE的降解曲线与H440相似,但未经处理的REVODE的结晶度变化与H100和H440观察到的结果不同。 XRD数据显示,随着酶降解的进行,结晶度更高的未经处理的H100和经scCO_2处理的聚(L-LA)的衍射峰移至较小的角度。对机械性能的检查表明,在scCO_2处理后,拉伸强度和弹性模量增加,而伸长率降低,这表明聚合物链更靠近在一起移动。总之,scCO_2处理似乎可以均匀地收缩非晶和结晶区域中的聚合物链。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2016年第12期|366-375|共10页
  • 作者单位

    Department of Applied Chemistry and Biotechnology, National Institute of Technology, Niihama College, 7-1 Yagumo-cho, Niihama, Ehime 792-8580, Japan;

    Department of Applied Chemistry and Biotechnology, National Institute of Technology, Niihama College, 7-1 Yagumo-cho, Niihama, Ehime 792-8580, Japan;

    Department of Applied Chemistry and Biotechnology, National Institute of Technology, Niihama College, 7-1 Yagumo-cho, Niihama, Ehime 792-8580, Japan;

    Department of Applied Chemistry and Biotechnology, National Institute of Technology, Niihama College, 7-1 Yagumo-cho, Niihama, Ehime 792-8580, Japan;

    Manufacturing Education Support Center, National Institute of Technology, Niihama College, 7-1 Yagumo-cho, Niihama, Ehime 792-8580, Japan;

    Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University, 1-4-1, Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8527, Japan;

    Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University, 1-4-1, Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8527, Japan;

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

    Biodegradable polymer; Poly(L-lactide); Supercritical carbon dioxide; Enzymatic degradation;

    机译:可生物降解的聚合物;聚(L-丙交酯);超临界二氧化碳;酶促降解;

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