Encapsulation of Jujube Extract in Electrospun Nanofiber: Release Profile, Functional Effectiveness, and Application for Active Packaging
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E. Ansarifar | A. Zarban | T. Zeinali | Ayub E. Fathabad | Sara Hedayati | Amin Mousavi Khaneghah | K. Marszałek
[1] Marjan Ghorbani,et al. Development of a Novel Antimicrobial Electrospun Nanofiber Based on Polylactic Acid/Hydroxypropyl Methylcellulose Containing Pomegranate Peel Extract for Active Food Packaging , 2021, Food and Bioprocess Technology.
[2] E. Ansarifar,et al. Fabrication and characterization of jujube extract‐loaded electrospun polyvinyl alcohol nanofiber for strawberry preservation , 2021, Food science & nutrition.
[3] Masoud Aman Mohammadi,et al. Electrospun Antibacterial and Antioxidant Zein/Polylactic Acid/Hydroxypropyl Methylcellulose Nanofibers as an Active Food Packaging System , 2021, Food and Bioprocess Technology.
[4] E. Ansarifar,et al. Preservation of strawberry fruit quality via the use of active packaging with encapsulated thyme essential oil in zein nanofiber film , 2021, International Journal of Food Science & Technology.
[5] S. Sahin,et al. Encapsulation of Grape Seed Extract in Rye Flour and Whey Protein–Based Electrospun Nanofibers , 2021, Food and Bioprocess Technology.
[6] Z. Emam-djomeh,et al. Antibacterial and Antioxidant Gelatin Nanofiber Scaffold Containing Ethanol Extract of Pomegranate Peel: Design, Characterization and In Vitro Assay , 2021, Food and Bioprocess Technology.
[7] N. Shariatifar,et al. Nanocomposite active packaging based on chitosan biopolymer loaded with nano-liposomal essential oil: Its characterizations and effects on microbial, and chemical properties of refrigerated chicken breast fillet. , 2021, International journal of food microbiology.
[8] R. Shaddel,et al. Antioxidant, antimicrobial, and cytotoxic activities of extracts from the seed and pulp of Jujube (Ziziphus jujuba) grown in Iran , 2020, Food science & nutrition.
[9] R. Djaziri,et al. Phenolic Compounds and Antimicrobial Activity of Ziziphus jujuba Mill. Fruit from Tlemcen , 2021 .
[10] M. Fathi,et al. Nanoencapsulation of cinnamic aldehyde using zein nanofibers by novel needle-less electrospinning: Production, characterization and their application to reduce nitrite in sausages , 2021 .
[11] B. Ghorani,et al. Multilayered electrospinning strategy for increasing the bioaccessibility of lycopene in gelatin-based sub-micron fiber structures , 2020 .
[12] M. Bagues,et al. Bioactive compounds, antioxidant and antimicrobial activities of extracts from different plant parts of two Ziziphus Mill. species , 2020, PloS one.
[13] Cen Zhang,et al. Electrospinning of nanofibers: Potentials and perspectives for active food packaging. , 2020, Comprehensive reviews in food science and food safety.
[14] P. Chaiprasart,et al. Anthocyanin content, bioactive compounds and physico-chemical characteristics of potential new strawberry cultivars rich in-anthocyanins , 2020 .
[15] C. Ritzoulis,et al. Preparation of zein nanofibers with cinnamaldehyde encapsulated in surfactants at critical micelle concentration for active food packaging , 2019 .
[16] M. Yılmaz,et al. Fabrication and characterization of thymol-loaded nanofiber mats as a novel antimould surface material for coating cheese surface , 2019, Food Packaging and Shelf Life.
[17] Xiaochen Jia,et al. Alginate oligosaccharide postharvest treatment preserve fruit quality and increase storage life via Abscisic acid signaling in strawberry. , 2019, Food chemistry.
[18] M. Khorram,et al. Evaluation of electrospun poly (vinyl alcohol)-based nanofiber mats incorporated with Zataria multiflora essential oil as potential wound dressing. , 2019, International journal of biological macromolecules.
[19] Wen Qin,et al. Electrospun Polyvinyl Alcohol/d-Limonene Fibers Prepared by Ultrasonic Processing for Antibacterial Active Packaging Material , 2019, Molecules.
[20] S. Goyanes,et al. Release kinetics of rosemary (Rosmarinus officinalis) polyphenols from polyvinyl alcohol (PVA) electrospun nanofibers in several food simulants , 2018, Food Packaging and Shelf Life.
[21] Ruplal Choudhary,et al. Efficacy of limonene nano coatings on post-harvest shelf life of strawberries , 2018, LWT.
[22] Pedro Henrique Hermes de Araújo,et al. Use of encapsulated natural compounds as antimicrobial additives in food packaging: A brief review , 2018, Trends in Food Science & Technology.
[23] Y. Shahbazi. Application of carboxymethyl cellulose and chitosan coatings containing Mentha spicata essential oil in fresh strawberries. , 2018, International journal of biological macromolecules.
[24] S. A. H. Goli,et al. Encapsulation of Orange Essential Oil Using Cross-linked Electrospun Gelatin Nanofibers , 2018, Food and Bioprocess Technology.
[25] R. Linhardt,et al. Electrospinning: A novel nano-encapsulation approach for bioactive compounds , 2017 .
[26] W. Choo,et al. Folate, ascorbic acid, anthocyanin and colour changes in strawberry (Fragaria × annanasa) during refrigerated storage , 2017 .
[27] Feng Dong,et al. Effects of carboxymethyl cellulose incorporated with garlic essential oil composite coatings for improving quality of strawberries. , 2017, International journal of biological macromolecules.
[28] Ruplal Choudhary,et al. Integrity of edible nano-coatings and its effects on quality of strawberries subjected to simulated in-transit vibrations , 2017 .
[29] D. Ekinci,et al. Green Synthesis of Gold Nanoparticles Using Aqueous Extracts of Ziziphus jujuba and Gum arabic , 2017, Journal of Cluster Science.
[30] F. Shahidi,et al. Novel multilayer microcapsules based on soy protein isolate fibrils and high methoxyl pectin: Production, characterization and release modeling. , 2017, International journal of biological macromolecules.
[31] Sarika,et al. Antioxidant activity and phenolic content in genotypes of Indian jujube (Zizyphus mauritiana Lamk.) , 2016 .
[32] J. L. Castro-Mayorga,et al. Use of Electrospinning to Develop Antimicrobial Biodegradable Multilayer Systems: Encapsulation of Cinnamaldehyde and Their Physicochemical Characterization , 2016, Food and Bioprocess Technology.
[33] Peng Wen,et al. Encapsulation of cinnamon essential oil in electrospun nanofibrous film for active food packaging , 2016 .
[34] M. Hemmati,et al. A preliminary evaluation of effects of high doses of Jujube and Saffron on biochemical and hematological parameters in rats , 2016, Clinical Phytoscience.
[35] O. Mehrpour,et al. Anti-atherogenic potential of jujube, saffron and barberry: anti-diabetic and antioxidant actions , 2015, EXCLI journal.
[36] Sun-ah Park,et al. Extraction optimization and nanoencapsulation of jujube pulp and seed for enhancing antioxidant activity. , 2015, Colloids and surfaces. B, Biointerfaces.
[37] M. Noshad,et al. Quantification of enzymatic browning kinetics of quince preserved by edible coating using the fractal texture Fourier image , 2015, Journal of Food Measurement and Characterization.
[38] A. Afolayan,et al. Phenolic content and antioxidant property of the bark extracts of Ziziphus mucronata Willd. subsp. mucronata Willd , 2011, BMC complementary and alternative medicine.