Sustainable Active PET Films by Functionalization With Antimicrobial Bio-Coatings

被引:23
作者
Apicella, Annalisa [1 ]
Scarfato, Paola [1 ]
Di Maio, Luciano [1 ]
Incarnato, Loredana [1 ]
机构
[1] Univ Salerno, Dept Ind Engn, Fisciano, Italy
来源
FRONTIERS IN MATERIALS | 2019年 / 6卷
关键词
antimicrobial packaging; ethyl-N alpha-dodecanoyl-L-arginate (LAE); polylactic acid (PLA); PET; coating; biodegradable film; SACCHAROMYCES-CEREVISIAE CEN.PK113-5D; LAUROYL ARGINATE ETHYL; DODECANOYL-L-ARGINATE; LAE; CHITOSAN; PERFORMANCE; MIGRATION;
D O I
10.3389/fmats.2019.00243
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The realization of antimicrobial films through the incorporation of active agents into a polymer matrix is a promising alternative to the direct addition of antimicrobials into the food matrix. To this aim, the goal of this work was to develop a sustainable, food packaging solution with antimicrobial effectiveness and high functional performance, based on Ethyl-N alpha-dodecanoyl-L-arginate (LAE). Active biodegradable coatings, easy soluble to be removed, were realized by spreading a Polylactic acid/LAE coating solution, at different antimicrobial concentration (from 0 to 20%), on a recyclable Polyethylene-terephthalate substrate. The antimicrobial activity of the multilayer films was tested in vitro against E.Coli CECT 434 strain as pathogenic agent in liquid culture media. Moreover, the LAE chemical interaction with the PLA matrix was investigated, as well as its effect on the adhesion, wetting, optical and barrier properties of the films. The results pointed out that that the minimum LAE concentration incorporated already guarantees an antimicrobial activity comparable to commercial antimicrobial packaging solutions, and that, among the systems investigated, 10% LAE is theminimum concentration guaranteeing total inhibition without significantly altering the functionalities of the developed systems.
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页数:10
相关论文
共 40 条
[1]   Biodegradable and Water Resistant Poly(vinyl) Alcohol (PVA)/Starch (ST)/Glycerol (GL)/Halloysite Nanotube (HNT) Nanocomposite Films for Sustainable Food Packaging [J].
Abdullah, Zainab Waheed ;
Dong, Yu .
FRONTIERS IN MATERIALS, 2019, 6
[2]  
Apicella A., 2019, Chem. Eng. Trans, V75, P85, DOI [10.3303/CET1975015, DOI 10.3303/CET1975015]
[3]   Evaluation of Performance of PET Packaging Films Based on Different Copolyester O2-Scavengers [J].
Apicella, Annalisa ;
Scarfato, Paola ;
Di Maio, Luciano ;
Garofalo, Emilia ;
Incarnato, Loredana .
9TH INTERNATIONAL CONFERENCE ON TIMES OF POLYMERS AND COMPOSITES: FROM AEROSPACE TO NANOTECHNOLOGY, 2018, 1981
[4]   Antimicrobial Biodegradable Coatings Based on LAE for Food Packaging Applications [J].
Apicella, Annalisa ;
Scarfato, Paola ;
D'Arienzo, Lucia ;
Garofalo, Emilia ;
Di Maio, Luciano ;
Incarnato, Loredana .
9TH INTERNATIONAL CONFERENCE ON TIMES OF POLYMERS AND COMPOSITES: FROM AEROSPACE TO NANOTECHNOLOGY, 2018, 1981
[5]   Materials for food packaging applications based on bio-based polymer nanocomposites: A review [J].
Attaran, Seyed Ahmad ;
Hassan, Azman ;
Wahit, Mat Uzir .
JOURNAL OF THERMOPLASTIC COMPOSITE MATERIALS, 2017, 30 (02) :143-173
[6]   Migrants determination and bioaccessibility study of ethyl lauroyl arginate (LAE) from a LAE based antimicrobial food packaging material [J].
Aznar, M. ;
Gomez-Estaca, J. ;
Velez, D. ;
Devesa, V. ;
Nerin, C. .
FOOD AND CHEMICAL TOXICOLOGY, 2013, 56 :363-370
[7]  
Bakal G., 2005, Food Qual, V12, P54
[8]   Effect of BOPET film surface treatments on adhesion performance of biodegradable coatings for packaging applications [J].
Barbaro, Giovanni ;
Galdi, Maria Rosaria ;
Di Maio, Luciano ;
Incarnato, Loredana .
EUROPEAN POLYMER JOURNAL, 2015, 68 :80-89
[9]   Antimicrobial activity of Lauroyl Arginate Ethyl (LAE), against selected food-borne bacteria [J].
Becerril, R. ;
Manso, S. ;
Nerin, C. ;
Gomez-Lus, R. .
FOOD CONTROL, 2013, 32 (02) :404-408
[10]   Valorization of Tomato Processing Residues Through the Production of Active Bio-Composites for Packaging Applications [J].
Bugatti, Valeria ;
Brachi, Paola ;
Viscusi, Gianluca ;
Gorrasi, Giuliana .
FRONTIERS IN MATERIALS, 2019, 6