首页> 外文期刊>Journal of Applied Polymer Science >Behavior of alpha- and beta-cyclodextrin-encapsulated allyl isothiocyanate as slow-release additives in polylactide-co-polycaprolactone films
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Behavior of alpha- and beta-cyclodextrin-encapsulated allyl isothiocyanate as slow-release additives in polylactide-co-polycaprolactone films

机译:α-和β-环糊精包封的异硫氰酸烯丙酯在聚丙交酯-聚己内酯薄膜中作为缓释添加剂的行为

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The natural antibacterial agent allyl isothiocyanate (AITC) encapsulated in either alpha- or beta-cyclodextrin (CD) has previously been evaluated as a slow-release additive in polylactide-co-polycaprolactone (PLA-PCL) films designed for use in cheese packaging. In the research described in this article, thermogravimetric analysis (TGA) and thermogravimetric analysis in tandem with mass spectrometry (TGAMS) were used to explore the thermal properties of CD-encapsulated AITC complexes as well as those of PLA-PCL films containing these complexes. To our knowledge, this is the first reported application of the TGA-MS technique to explore the thermal stability of CD-entrapped AITC and the first study to report differences in thermal stability of AITC in a-and P-CD cavities in the solid state. Observed differences in the thermal degradation profile of films containing the CD complexes can be explained if AITC binds more strongly to beta-CD than to alpha-CD. This hypothesis has been reinforced by gas chromatography (GC) and high performance liquid chromatography (HPLC) studies, the results of which suggest that a new covalently bound AITC-CD complex may be formed when incorporating the beta-CD complex of AITC in PLA-PCL films but not when incorporating the alpha-CD complex of AITC. This finding means that the a-CD complex of AITC would be preferred in situations where adequate longterm controlled release of AITC from polymer films is required, as for example in the case of active packaging applications. (C) 2007 Wiley Periodicals, Inc.
机译:封装在α-或β-环糊精(CD)中的天然抗菌剂异硫氰酸烯丙酯(AITC)先前已被评估为设计用于干酪包装的聚丙交酯-聚-己内酯共聚(PLA-PCL)薄膜中的缓释添加剂。在本文所述的研究中,热重分析(TGA)和热重分析与质谱分析(TGAMS)一起用于探索CD封装的AITC复合物以及包含这些复合物的PLA-PCL膜的热性能。据我们所知,这是首次报道的TGA-MS技术用于探索CD包裹的AITC的热稳定性,也是第一个报道固态和a-P-CD腔中AITC的热稳定性差异的研究。 。如果AITC与β-CD的结合比与α-CD的结合更牢固,则可以解释包含CD络合物的薄膜在热降解过程中观察到的差异。气相色谱(GC)和高效液相色谱(HPLC)研究强化了这一假设,其结果表明,当将AITC的β-CD复合物掺入PLA-A中时,可能会形成新的共价结合的AITC-CD复合物。 PCL胶片,但不包括AITC的alpha-CD复合物。这一发现意味着,在需要从聚合物薄膜充分长期控制AITC释放的情况下,例如在主动包装应用中,AITC的a-CD复合物将是首选。 (C)2007 Wiley期刊公司

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