Colorful and nutritious abundance: potential of natural pigment application in aquatic products
Ning Ding, Yongjie Zhou, Peipei Dou, Sam K. C. Chang, Ruifang Feng, Hui Hong, Yongkang Luo, Yuqing Tan
Colorful and nutritious abundance: potential of natural pigment application in aquatic products
The promising future of natural colors in the food industry aligns with the shift in consumer preference toward healthier food options. These naturally derived ingredients gradually replace their artificial counterparts and find applications in a wide range of food categories, and aquatic products have emerged as one of them. In this work, we introduced the characteristics and extraction of several main types of natural pigments and also explored the positive outcomes of integrating the pigments, such as carotenoids, curcumin, anthocyanins, and betalains, in aquatic product processing and preservation. Their outstanding antioxidant and dyeing properties contribute to the production and storage of various aquatic products. This review aims to provide a comprehensive understanding of the current state of natural pigment applications in aquatic products and to provide inspiration for future research and industry practices.
Natural pigments / Anthocyanins / Betalains / Carotenoids / Aquatic products
[1] |
Piqueras-Fiszman B, Spence C. Sensory expectations based on product-extrinsic food cues: An interdisciplinary review of the empirical evidence and theoretical accounts Food Quality and Preference. 2015, 40, 165-79
CrossRef
Google scholar
|
[2] |
Burrows, J. D. A. Palette of our palates: a brief history of food coloring and its regulation Comprehensive Reviews in Food Science and Food Safety. 2009, 8, 394-408
CrossRef
Google scholar
|
[3] |
[4] |
Janiszewska-Turak E, Pisarska A, Królczyk JB. Natural food pigments application in food products Nauka Przyroda Technologie. 2016, 10, 51
CrossRef
Google scholar
|
[5] |
Sigurdson GT, Tang P, Giusti MM. Natural colorants: Food colorants from natural sources Annual Review of Food Science and Technology. 2017, 8, 261-80
CrossRef
Google scholar
|
[6] |
Nabi BG, Mukhtar K, Ahmed W, Manzoor MF, Ranjha MMAN, et al. Natural pigments: Anthocyanins, carotenoids, chlorophylls, and betalains as colorants in food products Food Bioscience. 2023, 52, 102403
CrossRef
Google scholar
|
[7] |
Rapoport A, Guzhova I, Bernetti L, Buzzini P, Kieliszek M, et al. Carotenoids and some other pigments from fungi and yeasts Metabolites. 2021, 11, 92
CrossRef
Google scholar
|
[8] |
Akhavan Mahdavi S, Jafari SM, Assadpour E, Ghorbani M. Storage stability of encapsulated barberry’s anthocyanin and its application in jelly formulation Journal of Food Engineering. 2016, 181, 59-66
CrossRef
Google scholar
|
[9] |
Rostamabadi H, Falsafi SR, Jafari SM. Nanoencapsulation of carotenoids within lipid-based nanocarriers Journal of Controlled Release. 2019, 298, 38-67
CrossRef
Google scholar
|
[10] |
Zhang L, Li Q, Bao Y, Tan Y, Lametsch R, et al. Recent advances on characterization of protein oxidation in aquatic products: A comprehensive review Critical Reviews in Food Science and Nutrition. 2024, 64, 1572-91
CrossRef
Google scholar
|
[11] |
Matak KE, Tahergorabi R, Jaczynski J. A review: Protein isolates recovered by isoelectric solubilization/precipitation processing from muscle food by-products as a component of nutraceutical foods Food Research International. 2015, 77, 697-703
CrossRef
Google scholar
|
[12] |
Dehghani S, Hosseini SV, Regenstein JM. Edible films and coatings in seafood preservation: A review Food Chemistry. 2018, 240, 505-513
CrossRef
Google scholar
|
[13] |
Liu Z, Yang W, Wei H, Deng S, Yu X, et al. The mechanisms and applications of cryoprotectants in aquatic products: An overview Food Chemistry. 2023, 408, 135202
CrossRef
Google scholar
|
[14] |
Maqsood S, Benjakul S, Shahidi F. Emerging role of phenolic compounds as natural food additives in fish and fish products Critical Reviews in Food Science and Nutrition. 2013, 53, 162-79
CrossRef
Google scholar
|
[15] |
Eggersdorfer M, Wyss A. Carotenoids in human nutrition and health Archives of Biochemistry and Biophysics. 2018, 652, 18-26
CrossRef
Google scholar
|
[16] |
Shen N, Ren J, Liu Y, Sun W, Li Y, et al. Natural edible pigments: A comprehensive review of resource, chemical classification, biosynthesis pathway, separated methods and application Food Chemistry. 2023, 403, 134422
CrossRef
Google scholar
|
[17] |
[18] |
Ashokkumar V, Flora G, Sevanan M, Sripriya R, Chen WH, et al. Technological advances in the production of carotenoids and their applications – A critical review Bioresource Technology. 2023, 367, 128215
CrossRef
Google scholar
|
[19] |
[20] |
Roca M, Pérez-Gálvez A. Absolute chlorophyll composition of commercial green food colorants and coloring foodstuff by HPLC-ESI-QTOF-MS/MS: Copper chlorophyllins Food Chemistry. 2024, 436, 137728
CrossRef
Google scholar
|
[21] |
Shen Y, Zhang N, Tian J, Xin G, Liu L, et al. Advanced approaches for improving bioavailability and controlled release of anthocyanins Journal of Controlled Release. 2022, 341, 285-99
CrossRef
Google scholar
|
[22] |
Castañeda-Ovando A, Pacheco-Hernández MdL, Páez-Hernández MaE, Rodríguez JA, Galán-Vidal CA. Chemical studies of anthocyanins: A review Food Chemistry. 2009, 113, 859-71
CrossRef
Google scholar
|
[23] |
He J, Giusti MM. Anthocyanins: natural colorants with health-promoting properties Annual Review of Food Science and Technology. 2010, 1, 163-87
CrossRef
Google scholar
|
[24] |
Igwe EO, Charlton KE, Probst YC. Usual dietary anthocyanin intake, sources and their association with blood pressure in a representative sample of Australian adults Journal of Human Nutrition and Dietetics. 2019, 32, 578-90
CrossRef
Google scholar
|
[25] |
Gandía-Herrero F, Escribano J, García-Carmona F. Biological activities of plant pigments betalains Critical Reviews in Food Science and Nutrition. 2016, 56, 937-45
CrossRef
Google scholar
|
[26] |
[27] |
Piattelli M, Minale L, Prota G. Isolation, structure and absolute configuration of indicaxanthin Tetrahedron. 1964, 20, 2325-29
CrossRef
Google scholar
|
[28] |
Zorofchian Moghadamtousi S, Abdul Kadir H, Hassandarvish P, Tajik H, Abubakar S, et al. A review on antibacterial, antiviral, and antifungal activity of curcumin BioMed Research International. 2014, 2014, 186864
CrossRef
Google scholar
|
[29] |
Roy S, Priyadarshi R, Ezati P, Rhim JW. Curcumin and its uses in active and smart food packaging applications - a comprehensive review Food Chemistry. 2022, 375, 131885
CrossRef
Google scholar
|
[30] |
Mamucod HF, Dizon EI. Potential of biopigments from Monascus purpureus went as natural food colorant for Philippine native sausage ( Longganisa) International Proceedings of Chemical, Biological and Environmental Engineering (IPCBEE). 2014, 71, 72-76
|
[31] |
Koh J, Xu Z, Wicker L. Binding kinetics of blueberry pectin-anthocyanins and stabilization by non-covalent interactions Food Hydrocolloids. 2020, 99, 105354
CrossRef
Google scholar
|
[32] |
Weiss V, Okun Z, Shpigelman A. Utilization of hydrocolloids for the stabilization of pigments from natural sources Current Opinion in Colloid & Interface Science. 2023, 68, 101756
CrossRef
Google scholar
|
[33] |
Zhang C, Tan X, Lv C, Zang J, Zhao G. Shrimp ferritin greatly improves the physical and chemical stability of astaxanthin Journal of Food Science. 2021, 86, 5295-306
CrossRef
Google scholar
|
[34] |
Slonimskiy YB, Egorkin NA, Friedrich T, Maksimov EG, Sluchanko NN. Microalgal protein AstaP is a potent carotenoid solubilizer and delivery module with a broad carotenoid binding repertoire The FEBS Journal. 2022, 289, 999-1022
CrossRef
Google scholar
|
[35] |
Karangutkar AV, Ananthanarayan L. Evaluating the effect of additives on stability of betacyanin pigments from Basella rubra in a model beverage system during storage Journal of Food Science and Technology. 2021, 58, 1262-73
CrossRef
Google scholar
|
[36] |
Cao HKN, Dong TAD. Study on the effect of metal salts on chlorophyll pigment extraction from fresh Sauropus androgynus leaves Journal of Agriculture and Food Research. 2023, 14, 100699
CrossRef
Google scholar
|
[37] |
Tachibana N, Kimura Y, Ohno T. Examination of molecular mechanism for the enhanced thermal stability of anthocyanins by metal cations and polysaccharides Food Chemistry. 2014, 143, 452-58
CrossRef
Google scholar
|
[38] |
Li XD, Li J, Wang M, Jiang H. Copigmentation effects and thermal degradation kinetics of purple sweet potato anthocyanins with metal ions and sugars Applied Biological Chemistry. 2016, 59, 15-24
CrossRef
Google scholar
|
[39] |
Luna-Vital D, Cortez R, Ongkowijoyo P, Gonzalez De Mejia E. Protection of color and chemical degradation of anthocyanin from purple corn ( Zea mays L.) by zinc ions and alginate through chemical interaction in a beverage model Food Research International. 2018, 105, 169-77
CrossRef
Google scholar
|
[40] |
Donhowe EG, Flores FP, Kerr WL, Wicker L, Kong F. Characterization and in vitro bioavailability of β-carotene: Effects of microencapsulation method and food matrix LWT - Food Science and Technology. 2014, 57, 42-48
CrossRef
Google scholar
|
[41] |
Álvarez-Henao MV, Saavedra N, Medina S, Jiménez Cartagena C, Alzate LM, et al. Microencapsulation of lutein by spray-drying: Characterization and stability analyses to promote its use as a functional ingredient Food Chemistry. 2018, 256, 181-87
CrossRef
Google scholar
|
[42] |
Zannou O, Oussou KF, Chabi IB, Odouaro OBO, Deli MGEP, et al. A comprehensive review of recent development in extraction and encapsulation techniques of betalains Critical Reviews in Food Science and Nutrition. 2023, 00, 1-18
CrossRef
Google scholar
|
[43] |
Tekin İ, Özcan K, Ersus S. Optimization of ionic gelling encapsulation of red beet ( Beta vulgaris L.) juice concentrate and stability of betalains Biocatalysis and Agricultural Biotechnology. 2023, 51, 102774
CrossRef
Google scholar
|
[44] |
Peng S, Zhou L, Cai Q, Zou L, Liu C, et al. Utilization of biopolymers to stabilize curcumin nanoparticles prepared by the pH-shift method: Caseinate, whey protein, soy protein and gum Arabic Food Hydrocolloids. 2020, 107, 105963
CrossRef
Google scholar
|
[45] |
Shao Z, Lan W, Xie J. Colorimetric freshness indicators in aquatic products based on natural pigments: A review Food Bioscience. 2024, 58, 103624
CrossRef
Google scholar
|
[46] |
Huang Z, Liu X, Jia S, Zhang L, Luo Y. The effect of essential oils on microbial composition and quality of grass carp ( Ctenopharyngodon idellus) fillets during chilled storage International Journal of Food Microbiology. 2018, 266, 52-59
CrossRef
Google scholar
|
[47] |
Ceylan Z, Meral R, Kose S, Sengor G, Akinay Y, et al. Characterized nano-size curcumin and rosemary oil for the limitation microbial spoilage of rainbow trout fillets LWT. 2020, 134, 109965
CrossRef
Google scholar
|
[48] |
Meral R, Alav A, Karakas C, Dertli E, Yilmaz MT, et al. Effect of electrospun nisin and curcumin loaded nanomats on the microbial quality, hardness and sensory characteristics of rainbow trout fillet LWT. 2019, 113, 108292
CrossRef
Google scholar
|
[49] |
Jiao L, Tu C, Mao J, Benjakul S, Zhang B. Impact of theaflavin soaking pretreatment on oxidative stabilities and physicochemical properties of semi-dried large yellow croaker ( Pseudosciaena crocea) fillets during storage Food Packaging and Shelf Life. 2022, 32, 100852
CrossRef
Google scholar
|
[50] |
Ehsani A, Jasour MS, Agh N, Hashemi M, Khodadadi M. Rancidity development of refrigerated rainbow trout ( Oncorhynchus Mykiss) fillets: comparative effects of in vivo and in vitro lycopene Journal of the Science of Food and Agriculture. 2018, 98, 559-65
CrossRef
Google scholar
|
[51] |
Nirmal NP, Benjakul S. Melanosis and quality changes of pacific white shrimp ( Litopenaeus vannamei) treated with catechin during iced storage Journal of Agricultural and Food Chemistry. 2009, 57, 3578-86
CrossRef
Google scholar
|
[52] |
Tagrida M, Benjakul S. Betel ( Piper betle L.) leaf ethanolic extracts dechlorophyllized using different methods: antioxidant and antibacterial activities, and application for shelf-life extension of Nile tilapia ( Oreochromis niloticus) fillets RSC Advances. 2021, 11, 17630-41
CrossRef
Google scholar
|
[53] |
Yavuzer E, Özogul F, Özogul Y. Impact of icing with potato, sweet potato, sugar beet, and red beet peel extract on the sensory, chemical, and microbiological changes of rainbow trout ( Oncorhynchus mykiss) fillets stored at (3 ± 1 °C) Aquaculture International. 2020, 28, 187-97
CrossRef
Google scholar
|
[54] |
El-Beltagi HS, El-Mogy MM, Parmar A, Mansour AT, Shalaby TA, et al. Phytochemical characterization and utilization of dried red beetroot ( Beta vulgaris) peel extract in maintaining the quality of nile tilapia fish fillet Antioxidants. 2022, 11, 906
CrossRef
Google scholar
|
[55] |
Sáez MI, Suárez MD, Alarcón FJ, Martínez TF. Assessing the potential of algae extracts for extending the shelf life of rainbow trout ( Oncorhynchus mykiss) fillets Foods. 2021, 10, 910
CrossRef
Google scholar
|
[56] |
Ekrem Parlak M, Irmak Sahin O, Neslihan Dundar A, Türker Saricaoglu F, Smaoui S, et al. Natural colorant incorporated biopolymers-based pH-sensing films for indicating the food product quality and safety Food Chemistry. 2024, 439, 138160
CrossRef
Google scholar
|
[57] |
Yaashikaa PR, Kamalesh R, Senthil Kumar P, Saravanan A, Vijayasri K, et al. Recent advances in edible coatings and their application in food packaging Food Research International. 2023, 173, 113366
CrossRef
Google scholar
|
[58] |
Alves VLCD, Rico BPM, Cruz RMS, Vicente AA, Khmelinskii I, et al. Preparation and characterization of a chitosan film with grape seed extract-carvacrol microcapsules and its effect on the shelf-life of refrigerated Salmon ( Salmo salar) LWT. 2018, 89, 525-34
CrossRef
Google scholar
|
[59] |
Zhao X, Chen L, Wongmaneepratip W, He Y, Zhao L, et al. Effect of vacuum impregnated fish gelatin and grape seed extract on moisture state, microbiota composition, and quality of chilled seabass fillets Food Chemistry. 2021, 354, 129581
CrossRef
Google scholar
|
[60] |
Gómez-Estaca J, Calvo MM, Sánchez-Faure A, Montero P, Gómez-Guillén MC. Development, properties, and stability of antioxidant shrimp muscle protein films incorporating carotenoid-containing extracts from food by-products LWT - Food Science and Technology. 2015, 64, 189-96
CrossRef
Google scholar
|
[61] |
Arancibia MY, Alemán A, Calvo MM, López-Caballero ME, Montero P, et al. Antimicrobial and antioxidant chitosan solutions enriched with active shrimp ( Litopenaeus vannamei) waste materials Food Hydrocolloids. 2014, 35, 710-17
CrossRef
Google scholar
|
[62] |
Sun X, Guo X, Ji M, Wu J, Zhu W, et al. Preservative effects of fish gelatin coating enriched with CUR/βCD emulsion on grass carp ( Ctenopharyngodon idellus) fillets during storage at 4 °C Food Chemistry. 2019, 272, 643-52
CrossRef
Google scholar
|
[63] |
Biji KB, Ravishankar CN, Mohan CO, Srinivasa Gopal TK. Smart packaging systems for food applications: A review Journal of Food Science and Technology. 2015, 52, 6125-35
CrossRef
Google scholar
|
[64] |
Echegaray N, Guzel N, Kumar M, Guzel M, Hassoun A, et al. Recent advancements in natural colorants and their application as coloring in food and in intelligent food packaging Food Chemistry. 2023, 404, 134453
CrossRef
Google scholar
|
[65] |
Chen HZ, Zhang M, Bhandari B, Yang CH. Novel pH-sensitive films containing curcumin and anthocyanins to monitor fish freshness Food Hydrocolloids. 2020, 100, 105438
CrossRef
Google scholar
|
[66] |
Mohammadalinejhad S, Almasi H, Moradi M. Immobilization of Echium amoenum anthocyanins into bacterial cellulose film: A novel colorimetric pH indicator for freshness/spoilage monitoring of shrimp Food Control. 2020, 113, 107169
CrossRef
Google scholar
|
[67] |
Wang Q, Jiang Y, Chen W, Julian McClements D, Ma C, et al. Development of pH-responsive active film materials based on purple corncob and its application in meat freshness monitoring Food Research International. 2022, 161, 111832
CrossRef
Google scholar
|
[68] |
Tavakoli S, Mubango E, Tian L, Bohoussou ŃDri Y, Tan Y, et al. Novel intelligent films containing anthocyanin and phycocyanin for nondestructively tracing fish spoilage Food Chemistry. 2023, 402, 134203
CrossRef
Google scholar
|
[69] |
Yao X, Hu H, Qin Y, Liu J. Development of antioxidant, antimicrobial and ammonia-sensitive films based on quaternary ammonium chitosan, polyvinyl alcohol and betalains-rich cactus pears ( Opuntia ficus-indica) extract Food Hydrocolloids. 2020, 106, 105896
CrossRef
Google scholar
|
[70] |
Qin Y, Liu Y, Zhang X, Liu J. Development of active and intelligent packaging by incorporating betalains from red pitaya ( Hylocereus polyrhizus) peel into starch/polyvinyl alcohol films Food Hydrocolloids. 2020, 100, 105410
CrossRef
Google scholar
|
[71] |
Baptista RC, Horita CN, Sant’Ana AS. Natural products with preservative properties for enhancing the microbiological safety and extending the shelf-life of seafood: A review Food Research International. 2020, 127, 108762
CrossRef
Google scholar
|
[72] |
[73] |
Sachindra NM, Mahendrakar NS. Stability of carotenoids recovered from shrimp waste and their use as colorant in fish sausage Journal of Food Science and Technology. 2010, 47, 77-83
CrossRef
Google scholar
|
[74] |
El-Bialy HAA, Abd El-Khalek HH. A comparative study on astaxanthin recovery from shrimp wastes using lactic fermentation and green solvents: An applied model on minced Tilapia Journal of Radiation Research and Applied Sciences. 2020, 13, 594-605
CrossRef
Google scholar
|
[75] |
Suryaningrum TD, Irianto HE, Ikasari D. Characteristics of kamaboko from Catfish ( Clarias Gariepinus) surimi processed with carrot and beet root as filler and natural food colorants Squalen Bulletin of Marine and Fisheries Postharvest and Biotechnology. 2015, 10, 99
CrossRef
Google scholar
|
[76] |
Pérez-Ramírez IF, Sotelo-González AM, López-Echevarría G, Martínez-Maldonado MA. Amaranth seeds and sprouts as functional ingredients for the development of dietary fiber, betalains, and polyphenol-enriched minced tilapia meat gels Molecules. 2022, 28, 117
CrossRef
Google scholar
|
[77] |
Pan C, Chen S, Hao S, Yang X. Effect of low-temperature preservation on quality changes in Pacific white shrimp, Litopenaeus vannamei : A review Journal of the Science of Food and Agriculture. 2019, 99, 6121-28
CrossRef
Google scholar
|
[78] |
Wang D, Zhou F, Lai D, Zhang Y, Hu J, et al. Curcumin-mediated sono/photodynamic treatment preserved the quality of shrimp surimi and influenced its microbial community changes during refrigerated storage Ultrasonics Sonochemistry. 2021, 78, 105715
CrossRef
Google scholar
|
[79] |
Xiao L, Xin S, Wei Z, Feng F, Yan Q, et al. Effect of chitosan nanoparticles loaded with curcumin on the quality of Schizothorax prenanti surimi Food Bioscience. 2021, 42, 101178
CrossRef
Google scholar
|
[80] |
Li G, Zhan J, Huang J, Xu E, Yuan C, et al. Enhanced fresh-keeping capacity of printed surimi by Ca 2+-nano starch-lutein and its nondestructive freshness monitoring based on 4D printed anthocyanin International Journal of Biological Macromolecules. 2023, 252, 126543
CrossRef
Google scholar
|
[81] |
Heffernan S, Giblin L, O’Brien N. Assessment of the biological activity of fish muscle protein hydrolysates using in vitro model systems Food Chemistry. 2021, 359, 129852
CrossRef
Google scholar
|
[82] |
Li G, Zhan J, Hu Z, Huang J, Yao Q, et al. Effects of nano starch-lutein on 3D printing properties of functional surimi: Enhancement mechanism of printing effects and anti-oxidation Journal of Food Engineering. 2023, 346, 111431
CrossRef
Google scholar
|
[83] |
Li G, Hu Z, Zhan J, Huang J, Lu Z, et al. 3D printing and controlled release of functional ripening surimi improved by nano starch-xylo-oligosaccharides: Chemical bonds and microstructure influences Innovative Food Science & Emerging Technologies. 2022, 81, 103156
CrossRef
Google scholar
|
/
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