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Antibacterial performance of solvent cast polycaprolactone (PCL) films containing essential oils.

机译:含有精油的溶剂流延聚己内酯(PCL)薄膜的抗菌性能。

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The increase of consumer demand for higher quality and longer shelf-life in foods, while reducing the use of non-compostable packaging materials, has encouraged research on biopolymers incorporating natural antimicrobial compounds. Cinnamaldehyde (CNMA) and allyl isothiocyanate (AITC) were incorporated into polycaprolactone (PCL) films by solvent casting. The release study was carried out by means of ATR and transmission FTIR spectroscopy and showed high volatility of the essential oils during the film forming process. While only negligible quantities of AITC were retained in the polymer matrix after film curing, the release of CNMA was prolonged for at least 50 h at room temperature. PCL films incorporating 10 wt.-% and 20 wt.-% CNMA were further investigated using both a macrodilution technique and a vapour diffusion technique. MICs against Salmonella enterica, and Listeria monocytogenes in the liquid phase were determined to be 5.87 and 4.49mM, for films containing 10 and 20 wt.-% of CNMA with regard to the polymer in solution. The influence of relative humidity (RH) and temperature on the antimicrobial performance of the active films was investigated in the vapour phase. RH was not found to play a key role in the release and antimicrobial performance of the films, while decreasing temperatures resulted in a considerable increase in the antimicrobial effect. In a sealed environment, a concentration of less than 5.34 mg CNMA/L air from PCL with 20 wt.-% CNMA was able to cause complete inhibition of bacterial growth at 4 degrees C and 10 degrees C during at least 30 days. These results suggest that the combination of cold storage with biodegradable polyesters incorporating CNMA or other EOs could be an interesting approach in active packaging technologies
机译:消费者对食品更高质量和更长货架期的需求增加,同时减少了不可堆肥包装材料的使用,这鼓励了对掺入天然抗菌化合物的生物聚合物的研究。通过溶剂浇铸将肉桂醛(CNMA)和异硫氰酸烯丙酯(AITC)掺入聚己内酯(PCL)膜中。通过ATR和透射FTIR光谱进行了释放研究,结果表明在成膜过程中香精油具有很高的挥发性。膜固化后,虽然只有微不足道的AITC保留在聚合物基质中,但CNMA的释放在室温下至少延长了50小时。结合使用宏观稀释技术和气相扩散技术,进一步研究了掺入10 wt。%和20 wt。%CNMA的PCL膜。对于包含相对于溶液中聚合物的10重量%和20重量%的CNMA的膜,液相中针对肠沙门氏菌和单核细胞增生李斯特氏菌的MIC确定为5.87和4.49mM。在气相中研究了相对湿度(RH)和温度对活性膜抗菌性能的影响。并未发现RH在薄膜的释放和抗菌性能中起关键作用,而降低温度会导致抗菌效果显着提高。在密封环境中,来自PCL的浓度为5.34 mg的CNMA / L空气中含20 wt%的CNMA能够在至少30天内完全抑制4℃和10℃的细菌生长。这些结果表明,冷藏与结合有CNMA或其他EO的可生物降解聚酯的结合可能是主动包装技术中一种有趣的方法

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