可生物降解抗菌活性包装膜在动物源性食品中的应用研究进展

  • 谢兆华 ,
  • 李洪军 ,
  • 李敏涵 ,
  • 程成鹏 ,
  • 余思洁 ,
  • 贺稚非
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  • 1(西南大学 食品科学学院,重庆,400715)
    2(重庆市特色食品工程技术研究中心,重庆,400715)
第一作者:硕士研究生(贺稚非教授为通信作者,E-mail:2628576386@qq.com)

收稿日期: 2021-09-11

  修回日期: 2021-10-10

  网络出版日期: 2022-05-26

基金资助

“十三五”国家重点研发计划重点专项(2016YFD0401503);重庆市特色食品工程技术研究中心能力提升项目(cstc2014pt-gc8001)

Research progress on the application of biodegradable antibacterial packaging film in animal-derived food

  • XIE Zhaohua ,
  • LI Hongjun ,
  • LI Minhan ,
  • CHENG Chengpeng ,
  • YU Sijie ,
  • HE Zhifei
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  • 1(College of Food Science, Southwest University, Chongqing 400715, China)
    2(Chongqing Engineering Research Center of Regional Food, Chongqing 400715, China)

Received date: 2021-09-11

  Revised date: 2021-10-10

  Online published: 2022-05-26

摘要

动物源性食品营养丰富,是蛋白质和锌、铁、镁等矿物质的主要来源,但同时,动物源性食品容易发生腐败变质。动物源性食品包装是食品运输、贮藏、销售过程的重要组成部分,在保护动物源性食品安全性中发挥重要作用。合成聚合物材料是最常见的包装材料,但其不可降解特性,对环境威胁极大。利用可生物降解材料并在其中加入抗菌剂是活性食品包装技术的一个重大进步,其在抑制或杀死食品中的致病或腐败微生物方面极其有效。该文探讨了可生物降解抗菌活性包装膜现阶段所使用的材料及抗菌活性物质,同时分析了可生物降解抗菌活性包装膜在动物源性食品中的应用现状,并对此类薄膜的发展方向进行展望,以期为可生物降解膜在包装行业的进一步发展提供参考。

本文引用格式

谢兆华 , 李洪军 , 李敏涵 , 程成鹏 , 余思洁 , 贺稚非 . 可生物降解抗菌活性包装膜在动物源性食品中的应用研究进展[J]. 食品与发酵工业, 2022 , 48(9) : 295 -302 . DOI: 10.13995/j.cnki.11-1802/ts.029359

Abstract

Animal-derived food is rich in nutrients.It is the main source of protein and minerals such as zinc, iron, and magnesium.It is prone to spoilage and deterioration.Animal-derived food packaging is an important part of the process of food transportation, storage, and sale.It plays an important role in protecting the safety of animal-derived food.Synthetic polymer materials are the most common packaging materials.However, synthetic polymer materials have the non-degradable property and pose a great threat to the environment.Therefore, the use of biodegradable materials with antibacterial agents is a major advancement in active food packaging technology, which is seriously effective in inhibiting pathogenic or spoilage microorganisms in food.This article discusses the materials and antibacterial active substances used in the biodegradable antibacterial active packaging film at this stage.At the same time, the current situation and application of biodegradable antibacterial active packaging film in animal-derived food are analyzed, and the future development direction of the film prospected.It provides a reference for the further development of biodegradable films in the packaging industry.

参考文献

[1] BOHRER B M.Review:Nutrient density and nutritional value of meat products and non-meat foods high in protein[J].Trends in Food Science & Technology, 2017, 65:103-112.
[2] JORGE A A, MIGUEL A D, OLGA B A, et al.Chapter 1-Basic and Applied Concepts of Edible Packaging for Foods//Food Packaging and Preservation[M].Amsterdam:Elsevier, 2018:1-61.
[3] SINGH N, HUI D, SINGH R, et al.Recycling of plastic solid waste:A state of art review and future applications[J].Composites Part B:Engineering, 2017,115:409-422.
[4] ABDOLLAHZADEH E, NEMATOLLAHI A, HOSSEINI H.Composition of antimicrobial edible films and methods for assessing their antimicrobial activity:A review[J].Trends in Food Science & Technology, 2021, 110:291-303.
[5] DEHGHANI S, HOSSEINI S V, REGENSTEIN J M.Edible films and coatings in seafood preservation:A review[J].Food Chemistry, 2018, 240:505-513.
[6] ZHONG Y J, GODWIN P, JIN Y C, et al.Biodegradable polymers and green-based antimicrobial packaging materials:A mini-review[J].Advanced Industrial and Engineering Polymer Research, 2020, 3(1):27-35.
[7] 聂志妍, 张赟彬, 魏蒙月.壳聚糖肉桂精油复合膜对酱牛肉储藏品质的影响[J].食品工业, 2021, 42(6):208-211.
NIE Z Y, ZHANG Y B, WEI M Y.Research on preservation effect of chitosan-cinnamon oil edible film on spiced beef[J].The Food Industry, 2021, 42(6):208-211.
[8] COSTA S M, FERREIRA D P, TEIXEIRA P, et al.Active natural-based films for food packaging applications:The combined effect of chitosan and nanocellulose[J].International Journal of Biological Macromolecules, 2021, 177:241-251.
[9] SHAO J J, WANG L L, WANG X, et al.Enhancing microbial management and shelf life of shrimp Penaeus vannamei by using nanoparticles of metallic oxides as an alternate active packaging tool to synthetic chemicals[J].Food Packaging and Shelf Life, 2021, 28:100652.
[10] WANG H S, GUO L, LIU L, et al.Composite chitosan films prepared using nisin and Perilla frutescense essential oil and their use to extend strawberry shelf life[J].Food Bioscience, 2021, 41:101037.
[11] ZHANG B, LIU Y, WANG H H, et al.Effect of sodium alginate-agar coating containing ginger essential oil on the shelf life and quality of beef[J].Food Control, 2021, 130:108216.
[12] JAFARZADEH S, SALEHABADI A, MOHAMMADI NAFCHI A, et al.Cheese packaging by edible coatings and biodegradable nanocomposites;improvement in shelf life, physicochemical and sensory properties[J].Trends in Food Science & Technology, 2021, 116:218-231.
[13] PATTANAYAIYING R, SANE A, PHOTJANATAREE P, et al.Thermoplastic starch/polybutylene adipate terephthalate film coated with gelatin containing nisin Z and lauric arginate for control of foodborne pathogens associated with chilled and frozen seafood[J].International Journal of Food Microbiology, 2019, 290:59-67.
[14] DU H Y, LIU C, UNSALAN O, et al.Development and characterization of fish myofibrillar protein/chitosan/rosemary extract composite edible films and the improvement of lipid oxidation stability during the grass carp fillets storage[J].International Journal of Biological Macromolecules, 2021, 184:463-475.
[15] TRAJKOVSKA PETKOSKA A, DANILOSKI D, D’CUNHA N M, et al.Edible packaging:Sustainable solutions and novel trends in food packaging[J].Food Research International, 2021, 140:109981.
[16] CHAWLA R, SIVAKUMAR S, KAUR H.Antimicrobial edible films in food packaging:Current scenario and recent nanotechnological advancements- A review[J].Carbohydrate Polymer Technologies and Applications, 2021, 2:100024.
[17] 秦丹丹, 吴琼, 白洋, 等.黑木耳多糖/壳聚糖可食性复合膜的制备及对鲜牛肉的保鲜效果[J].食品科学, 2021, 42(5):246-251.
QIN D D, WU Q, BAI Y, et al.Preparation of Auricularia auricular polysaccharide/chitosan edible composite film and its preservative effect on fresh beef[J].Food Science, 2021, 42(5):246-251.
[18] 肖力源, 张淑瑶, 周湘媛, 等.肉桂精油-玉米淀粉基抗菌膜的制备及其性能[J].食品科学, 2019, 40(2):40-45.
XIAO L Y, ZHANG S Y, ZHOU X Y, et al.Preparation and properties of corn starch-based antimicrobial films incorporated with cinnamon essential oil[J].Food Science, 2019, 40(2):40-45.
[19] HUANG M Y, WANG H H, XU X L, et al.Effects of nanoemulsion-based edible coatings with composite mixture of rosemary extract and ε-poly-L-lysine on the shelf life of ready-to-eat carbonado chicken[J].Food Hydrocolloids, 2020, 102:105576.
[20] SINGH P, MAGALHÃES S, ALVES L, et al.Cellulose-based edible films for probiotic entrapment[J].Food Hydrocolloids, 2019, 88:68-74.
[21] ARCIELLO A, PANZELLA L, DELL’OLMO E, et al.Development and characterization of antimicrobial and antioxidant whey protein-based films functionalized with pecan (Carya illinoinensis) nut shell extract[J].Food Packaging and Shelf Life, 2021, 29:100710.
[22] SÁNCHEZ-ORTEGA I, GARCÍA-ALMENDÁREZ B E, SANTOS-LÓPEZ E M, et al.Antimicrobial edible films and coatings for meat and meat products preservation[J].The Scientific World Journal, 2014, 2014:248935.
[23] CORTÉS-RODRÍGUEZ M, VILLEGAS-YÉPEZ C, GIL GONZÁLEZ J H, et al.Development and evaluation of edible films based on cassava starch, whey protein, and bees wax[J].Heliyon, 2020, 6(9):e04884.
[24] DAWSON P, CARL G, ACTON J, et al.Effect of lauric acid and nisin-impregnated soy-based films on the growth of Listeria monocytogenes on Turkey bologna[J].Poultry Science, 2002, 81(5):721-726.
[25] EL-SABER BATIHA G, HUSSEIN D E, ALGAMMAL A M, et al.Application of natural antimicrobials in food preservation:Recent views[J].Food Control, 2021, 126:108066.
[26] TAWAKKAL I S M A, CRAN M J, MILTZ J, et al.A review of poly(lactic acid)-based materials for antimicrobial packaging[J].Journal of Food Science, 2014, 79(8):R1477-R1490.
[27] YANG C X, TANG H B, WANG Y F, et al.Development of PLA-PBSA based biodegradable active film and its application to salmon slices[J].Food Packaging and Shelf Life, 2019, 22:100393.
[28] GANESH SARATALE R, CHO S K, DATTATRAYA SARATALE G, et al.A comprehensive overview and recent advances on polyhydroxyalkanoates (PHA) production using various organic waste streams[J].Bioresource Technology, 2021, 325:124685.
[29] ANJANA, RATURI G, SHREE S, et al.Recent approaches for enhanced production of microbial polyhydroxybutyrate:Preparation of biocomposites and applications[J].International Journal of Biological Macromolecules, 2021, 182:1 650-1 669.
[30] GARRIDO-MIRANDA K A, RIVAS B L, PÉREZ -RIVERA M A, et al.Antioxidant and antifungal effects of eugenol incorporated in bionanocomposites of poly(3-hydroxybutyrate)-thermoplastic starch[J].LWT, 2018, 98:260-267.
[31] KUMAR S, MUKHERJEE A, DUTTA J.Chitosan based nanocomposite films and coatings:Emerging antimicrobial food packaging alternatives[J].Trends in Food Science & Technology, 2020, 97:196-209.
[32] SHARMA R, JAFARI S M, SHARMA S.Antimicrobial bio-nanocomposites and their potential applications in food packaging[J].Food Control, 2020, 112:107086.
[33] TAVASSOLI M, SANI M A, KHEZERLOU A, et al.Multifunctional nanocomposite active packaging materials:Immobilization of quercetin, lactoferrin, and chitosan nanofiber particles in gelatin films[J].Food Hydrocolloids, 2021, 118:106747.
[34] BI F Y, ZHANG X, LIU J, et al.Development of antioxidant and antimicrobial packaging films based on chitosan, D-α-tocopheryl polyethylene glycol 1000 succinate and silicon dioxide nanoparticles[J].Food Packaging and Shelf Life, 2020, 24:100503.
[35] OUATTARA B, GIROUX M, YEFSAH R, et al.Microbiological and biochemical characteristics of ground beef as affected by gamma irradiation, food additives and edible coating film[J].Radiation Physics and Chemistry, 2002, 63(3-6):299-304.
[36] MOHAN C C, KRISHNAN K R, BABUSKIN S, et al.Active compound diffusivity of particle size reduced S.aromaticum and C.Cassia fused starch edible films and the shelf life of mutton (Capra aegagrus hircus) meat[J].Meat Science, 2017, 128:47-59.
[37] SUN Y N, ZHANG M, BHANDARI B, et al.Nanoemulsion-based edible coatings loaded with fennel essential oil/cinnamaldehyde:Characterization, antimicrobial property and advantages in pork meat patties application[J].Food Control, 2021, 127:108151.
[38] DINI H, FALLAH A A, BONYADIAN M, et al.Effect of edible composite film based on chitosan and cumin essential oil-loaded nanoemulsion combined with low-dose gamma irradiation on microbiological safety and quality of beef loins during refrigerated storage[J].International Journal of Biological Macromolecules, 2020, 164:1 501-1 509.
[39] QIU Y T, WANG B J, WENG Y M.Preparation and characterization of genipin cross-linked and lysozyme incorporated antimicrobial sodium caseinate edible films[J].Food Packaging and Shelf Life, 2020, 26:100601.
[40] AZMANA M, MAHMOOD S, HILLES A R, et al.A review on chitosan and chitosan-based bionanocomposites:Promising material for combatting global issues and its applications[J].International Journal of Biological Macromolecules, 2021, 185:832-848.
[41] NIAZ B, SAEED F, AHMED A, et al.Lactoferrin (LF):A natural antimicrobial protein[J].International Journal of Food Properties, 2019, 22(1):1 626-1 641.
[42] SHAHRAMPOUR D, KHOMEIRI M, RAZAVI S M A, et al.Development and characterization of alginate/pectin edible films containing Lactobacillus plantarum KMC 45[J].LWT, 2020, 118:108758.
[43] KHAN I, OH D H.Integration of nisin into nanoparticles for application in foods[J].Innovative Food Science & Emerging Technologies, 2016, 34:376-384.
[44] 昝梦莹. 我国畜禽肉类产品市场分析与对策建议[J].西北农林科技大学学报(社会科学版), 2021, 21(3):149-155.
ZAN M Y.Market situation analysis and countermeasure proposals of livestock and poultry meat products in China[J].Journal of Northwest A&F University (Social Science Edition), 2021, 21(3):149-155.
[45] YE M, NEETOO H, CHEN H Q.Control of Listeria monocytogenes on ham steaks by antimicrobials incorporated into chitosan-coated plastic films[J].Food Microbiology, 2008, 25(2):260-268.
[46] VARGAS M, ALBORS A, CHIRALT A.Application of chitosan-sunflower oil edible films to pork meat hamburgers[J].Procedia Food Science, 2011, 1:39-43.
[47] ZHOU X, ZONG X X, ZHANG M, et al.Effect of konjac glucomannan/carrageenan-based edible emulsion coatings with Camellia oil on quality and shelf-life of chicken meat[J].International Journal of Biological Macromolecules, 2021, 183:331-339.
[48] CHEN X, CHEN W W, LU X, et al.Effect of chitosan coating incorporated with oregano or cinnamon essential oil on the bacterial diversity and shelf life of roast duck in modified atmosphere packaging[J].Food Research International, 2021, 147:110491.
[49] 谢晶, 谭明堂, 杨大章, 等.我国渔业仓储保鲜和冷链物流发展现状[J].包装工程, 2021, 42(11):1-10.
XIE J, TAN M T, YANG D Z, et al.Development status of fisheries storage-preservation and cold chain logistics in China[J].Packaging Engineering, 2021, 42(11):1-10.
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