Chitosan based nanocomposite films and coatings: Emerging antimicrobial food packaging alternatives

被引:532
作者
Kumar, Santosh [1 ,2 ]
Mukherjee, Avik [2 ]
Dutta, Joydeep [1 ]
机构
[1] KTH Royal Inst Technol, SCI Sch, Dept Appl Phys, Funct Mat, SE-16440 Stockholm, Sweden
[2] Cent Inst Technol, Dept Food Engn & Technol, Kokrajhar 783370, Assam, India
关键词
Food preservation; Shelf-life; Fruit and vegetable; Fish and meat; Natural antimicrobial; Nanoparticle; SHELF-LIFE EXTENSION; COLLOIDAL SILVER NANOPARTICLES; ZINC OXIDE NANOCOMPOSITE; OREGANO ESSENTIAL OIL; GRAPE SEED EXTRACT; EDIBLE FILMS; IN-VITRO; ANTIBACTERIAL ACTIVITY; ANTIOXIDANT PROPERTIES; POSTHARVEST QUALITY;
D O I
10.1016/j.tifs.2020.01.002
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Background: Demand for healthy and safe food with minimal use of synthetic inputs (including synthetic preservatives) is increasing rapidly. Plastic polymers being hazardous to the environment, significant efforts have been devoted to evaluate various bio-based polymers as alternatives to synthetic plastic packaging. Chitin and its deacetylated derivative, chitosan, is primarily a by-product of crustacean, fish and seafood processing and handling. Chitosan possesses antimicrobial activities and film forming property, making them attractive bio-polymers for food packaging and food preservation applications applied through spraying, dipping, coating, or wrapping by films. Scope and approach: This comprehensive review of contemporary research focuses on applications of chitosan and chitosan based nanocomposites in the area of food packaging and preservation. It includes different properties and functionalities of chitosan, various blends and nanocomposites of chitosan, their fabrication techniques, and applications in shelf life extension of fruits, vegetables, meat and fish products. Key findings and conclusions: Chitosan is an attractive alternative to synthetic plastics polymers due to its bio-degradability, antimicrobial activity, and film forming properties. Incorporation of nanomaterials into chitosan based food-packaging systems can prevent the growth of spoilage and pathogenic microorganisms, improve food quality and safety, and extend shelf-life of food. It has been reported that applications of chitosan-based films or coatings or treatments have resulted in shelf life extension of fresh produce, meat products, bread, and dairy products such as cheese which has been highlighted.
引用
收藏
页码:196 / 209
页数:14
相关论文
共 179 条
[21]   Extraction and characterization of acid soluble collagen from fish waste: Development of collagen-chitosan blend as food packaging film [J].
Bhuimbar, Madhuri, V ;
Bhagwat, Prashant K. ;
Dandge, Padma B. .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2019, 7 (02)
[22]   In situ photochemical generation of silver and gold nanoparticles on chitosan [J].
Boufi, Sami ;
Vilar, Manuel Rei ;
Ferraria, Ana Maria ;
Botelho do Rego, Ana Maria .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2013, 439 :151-158
[23]   Preparation and properties of rice starch-chitosan blend biodegradable film [J].
Bourtoom, Thawien ;
Chinnan, Manjeet S. .
LWT-FOOD SCIENCE AND TECHNOLOGY, 2008, 41 (09) :1633-1641
[24]   Effect of chitosan/nisin/gallic acid coating on preservation of pork loin in high oxygen modified atmosphere packaging [J].
Cao, Yu ;
Warner, Robyn Dorothy ;
Fang, Zhongxiang .
FOOD CONTROL, 2019, 101 :9-16
[25]   Annatto-entrapped casein-chitosan complexes improve whey color quality after acid coagulation of milk [J].
Celli, Giovana B. ;
Ravanfar, Raheleh ;
Kaliappan, Siva ;
Kapoor, Rohit ;
Abbaspourrad, Alireza .
FOOD CHEMISTRY, 2018, 255 :268-274
[26]   An investigation on characteristics of rainbow trout coated using chitosan assisted with thyme essential oil [J].
Chamanara, V. ;
Shabanpour, B. ;
Gorgin, S. ;
Khomeiri, M. .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2012, 50 (03) :540-544
[27]   The Combination of Hot Air and Chitosan Treatments on Phytochemical Changes during Postharvest Storage of 'Sanhua' Plum Fruits [J].
Chang, Xiaoxiao ;
Lu, Yusheng ;
Li, Quan ;
Lin, Zhixiong ;
Qiu, Jishui ;
Peng, Cheng ;
Brennan, Charles Stephen ;
Guo, Xinbo .
FOODS, 2019, 8 (08)
[28]  
Clink K., 2017, Ref Rev, V31, P14, DOI DOI 10.1108/RR-08-2016-0213
[29]   Human Consumption of Microplastics [J].
Cox, Kieran D. ;
Covernton, Garth A. ;
Davies, Hailey L. ;
Dower, John F. ;
Juanes, Francis ;
Dudas, Sarah E. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2019, 53 (12) :7068-7074
[30]  
Davidson P.M., 2014, Handbook of Natural Antimicrobials for Food Safety and Quality, P1