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叶绿素-壳聚糖复合物及可见光处理后的失活及可能的再生长建模

Modelling the Inactivation and Possible Regrowth of Treated with Chlorophyllin-Chitosan Complex and Visible Light.

作者信息

Rodríguez-López María Isabel, Gómez-López Vicente M, Lukseviciute Viktorija, Luksiene Zivile

机构信息

Departamento de Ciencia y Tecnología de Alimentos, Universidad Católica de Murcia (UCAM), Campus de los Jerónimos 135, 30107 Guadalupe, Murcia, Spain.

Cátedra Alimentos para la Salud, Universidad Católica de Murcia (UCAM), Campus de los Jerónimos 135, 30107 Guadalupe, Murcia, Spain.

出版信息

Food Technol Biotechnol. 2020 Mar;58(1):64-70. doi: 10.17113/ftb.58.01.20.6374.

Abstract

The study focuses on predictive modelling of inactivation of after treatment with chlorophyllin-chitosan complex and visible light. cells were incubated with chlorophyllin-chitosan complex (0.001% chlorophyllin and 0.1% chitosan) for different times (5-60 min) and then illuminated with visible light (=405 nm, =38 J/cm). Inactivation curves and post-treatment regrowth curves were built based on microbiological viability tests and data were fitted to ten inactivation and two regrowth models. The photoactivated complex reduced population, which were unable to regrow. Weibull and Baranyi models were the best to describe the inactivation and regrowth kinetics respectively. In conclusion, data from the kinetic analysis and predictive modelling confirmed that photoactivated chlorophyllin-chitosan complex is a promising non-thermal approach for inactivation of Gram-negative pathogens, since no bacterial regrowth after treatment has been predicted.

摘要

该研究聚焦于叶绿素铜钠盐-壳聚糖复合物与可见光处理后细菌灭活的预测模型。将细胞与叶绿素铜钠盐-壳聚糖复合物(0.001%叶绿素铜钠盐和0.1%壳聚糖)孵育不同时间(5 - 60分钟),然后用可见光(波长 = 405纳米,辐照度 = 38焦耳/平方厘米)照射。基于微生物活力测试构建灭活曲线和处理后再生长曲线,并将数据拟合到十种灭活模型和两种再生长模型。光活化复合物减少了细菌数量,这些细菌无法再生长。威布尔模型和巴拉尼模型分别最能描述灭活和再生长动力学。总之,动力学分析和预测模型的数据证实,光活化叶绿素铜钠盐-壳聚糖复合物是一种用于革兰氏阴性病原体灭活的有前景的非热方法,因为预测处理后没有细菌再生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc2f/7365337/e0e45cde0db7/FTB-58-64-f1.jpg

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