Application of chitosan nanoparticles in quality and preservation of postharvest fruits and vegetables: A review

被引:22
作者
Wang, Su-Yan [1 ]
Herrera-Balandrano, Daniela D. D. [1 ]
Jiang, Yong-Hui [1 ]
Shi, Xin-Chi [1 ]
Chen, Xin [1 ]
Liu, Feng-Quan [2 ]
Laborda, Pedro [1 ]
机构
[1] Nantong Univ, Sch Life Sci, Nantong 226001, Peoples R China
[2] Minist Sci & Technol, Jiangsu Acad Agr Sci, Inst Plant Protect, Jiangsu Key Lab Food Qual & Safety,State Key Lab C, Nanjing 210014, Peoples R China
基金
中国国家自然科学基金;
关键词
chitosan coating; essential oils; nanotechnology; packaging; postharvest decay; SHELF-LIFE EXTENSION; NANOSTRUCTURED CHITOSAN; THYMOL NANOPARTICLES; STRAWBERRY FRUIT; EDIBLE COATINGS; IN-VITRO; ANTIOXIDANT; OIL; FILMS; FABRICATION;
D O I
10.1111/1541-4337.13128
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Chitosan is an interesting alternative material for packaging development due to its biodegradability. However, its poor mechanical properties and low permeability limit its actual applications. Chitosan nanoparticles (CHNPs) have emerged as a suitable solution to overcome these intrinsic limitations. In this review, all studies regarding the use of CHNPs to extend the shelf life and improve the quality of postharvest products are covered. The characteristics of CHNPs and their combinations with essential oils and metals, along with their effects on postharvest products, are compared and discussed throughout the manuscript. CHNPs enhanced postharvest antioxidant capacity, extended shelf life, increased nutritional quality, and promoted tolerance to chilling stress. Additionally, the CHNPs reduced the incidence of postharvest phytopathogens. In most instances, smaller CHNPs (<150 nm) conferred higher benefits than larger ones (>150 nm). This was likely a result of the greater plant tissue penetrability and surface area of the smaller CHNPs. The CHNPs were either applied after preparing an emulsion or incorporated into a film, with the latter often exhibiting greater antioxidant and antimicrobial activities. CHNPs were used to encapsulate essential oils, which could be released over time and may enhance the antioxidant and antimicrobial properties of the CHNPs. Even though most applications were performed after harvest, preharvest application had longer lasting effects.
引用
收藏
页码:1722 / 1762
页数:41
相关论文
共 50 条
[41]   Application of Cold Plasma Technology on the Postharvest Preservation of In-Packaged Fresh Fruit and Vegetables: Recent Challenges and Development [J].
Nikzadfar, Mehrad ;
Kazemi, Amirali ;
Abooei, Reyhane ;
Abbaszadeh, Rouzbeh ;
Firouz, Mahmoud Soltani ;
Akbarnia, Abbas ;
Rashvand, Mahdi .
FOOD AND BIOPROCESS TECHNOLOGY, 2024, 17 (12) :4473-4505
[42]   Recent advances in activated water systems for the postharvest management of quality and safety of fresh fruits and vegetables [J].
Malahlela, Harold K. ;
Belay, Zinash A. ;
Mphahlele, Rebogile R. ;
Sigge, Gunnar O. ;
Caleb, Oluwafemi J. .
COMPREHENSIVE REVIEWS IN FOOD SCIENCE AND FOOD SAFETY, 2024, 23 (02)
[43]   Advantages and Disadvantages of Using Emerging Technologies to Increase Postharvest Life of Fruits and Vegetables [J].
Meneses-Espinosa, Erik ;
Galvez-Lopez, Didiana ;
Rosas-Quijano, Raymundo ;
Adriano-Anaya, Lourdes ;
Vazquez-Ovando, Alfredo .
FOOD REVIEWS INTERNATIONAL, 2024, 40 (05) :1348-1373
[44]   Chitosan/cellulose nanocrystal biocomposite coating for fruit postharvest preservation [J].
Du, Yuzhen ;
Shi, Baoying ;
Luan, Xiayu ;
Wang, Yufeng ;
Song, Haiyan .
INDUSTRIAL CROPS AND PRODUCTS, 2023, 205
[45]   Evaluation of chitosan coatings enriched with turmeric and green tea extracts on postharvest preservation of strawberries [J].
Yang, Chun ;
Lu, Jia-Hao ;
Xu, Mei-Ting ;
Shi, Xin-Chi ;
Song, Zhi-Wei ;
Chen, Tang-Min ;
Herrera-Balandrano, Daniela D. ;
Zhang, Yun-Jiao ;
Laborda, Pedro ;
Shahriar, Mahdi ;
Wang, Su-Yan .
LWT-FOOD SCIENCE AND TECHNOLOGY, 2022, 163
[46]   High-adhesion antimicrobial composite coating incorporating quaternary chitosan and tea tree oil for enhanced preservation of fruits and vegetables [J].
Liu, Ying ;
Ding, Yi ;
Wang, Chao ;
Luo, Jian ;
Yao, Huanhuan ;
Zhang, Huili ;
Xu, Long ;
Niu, Junfan .
FOOD CHEMISTRY, 2025, 465
[47]   Effect of chitosan/Nano-TiO2 composite coatings on the postharvest quality and physicochemical characteristics of mango fruits [J].
Xing, Yage ;
Yang, Hua ;
Guo, Xunlian ;
Bi, Xiufang ;
Liu, Xiaocui ;
Xu, Qinglian ;
Wang, Qin ;
Li, Wenxiu ;
Li, Xuanlin ;
Shui, Yuru ;
Chen, Cunkun ;
Zheng, Yi .
SCIENTIA HORTICULTURAE, 2020, 263
[48]   Chitosan and GRAS Substances: An Alternative for the Control of Neofusicoccum parvum In Vitro, Elicitor and Maintenance of the Postharvest Quality of Avocado Fruits [J].
Herrera-Gonzalez, Juan Antonio ;
Ramos-Bell, Surelys ;
Bautista-Banos, Silvia ;
Velazquez-Estrada, Rita Maria ;
Rayon-Diaz, Edson ;
Martinez-Batista, Estefania ;
Gutierrez-Martinez, Porfirio .
HORTICULTURAE, 2024, 10 (07)
[49]   Effect of chitosan-Aloe vera coating on postharvest quality of blueberry (Vaccinium corymbosum) fruit [J].
Vieira, Jorge M. ;
Flores-Lopez, Maria L. ;
Jasso de Rodriguez, Diana ;
Sousa, Maria C. ;
Vicente, Antonio A. ;
Martins, Joana T. .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 2016, 116 :88-97
[50]   Molecular Hydrogen: The Postharvest Use in Fruits, Vegetables and the Floriculture Industry [J].
Hancock, John T. ;
Russell, Grace ;
Stratakos, Alexandros Ch .
APPLIED SCIENCES-BASEL, 2022, 12 (20)