Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning

In this study, three EOs, namely cinnamaldehyde (CEO), limonene (LEO) and eugenol (EEO), together with ²-cyclodextrins (²CD) were encapsulated in the core of nanofibers via coaxial electrospinning to improve the functional properties of fish gelatin mat. The successful fabrication of nanofibers was...

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Main Authors: Mahmood, Kaiser, Kamilah, Hanisah, A Karim, Alias, Ariffin, Fazilah
Format: Article
Published: Elsevier 2023
Online Access:http://psasir.upm.edu.my/id/eprint/107709/
https://linkinghub.elsevier.com/retrieve/pii/S0268005X2200844X
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spelling my.upm.eprints.1077092024-10-28T02:36:39Z http://psasir.upm.edu.my/id/eprint/107709/ Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning Mahmood, Kaiser Kamilah, Hanisah A Karim, Alias Ariffin, Fazilah In this study, three EOs, namely cinnamaldehyde (CEO), limonene (LEO) and eugenol (EEO), together with ²-cyclodextrins (²CD) were encapsulated in the core of nanofibers via coaxial electrospinning to improve the functional properties of fish gelatin mat. The successful fabrication of nanofibers was verified by transmission electron microscopy (TEM) and an average fiber diameter of 251“378 nm was observed by scanning electron microscopy (SEM). Attenuated Fourier-transform infrared (ATR-FTIR) indicated a physical type of interaction between gelatin and EOs. Melting temperature (Tm) of nanofiber mats was improved with the incorporation of EOs-²CD while reduced mechanical strength was noticed. The encapsulation efficiency (EE) of EOs in nanofiber mats ranged from 69.7 to 93.2. A significantly enhanced antioxidant activity was noticed for nanofiber mats as evaluated through 2,2-diphenyl-1-picrylhydrazyl (DPPH) and ferric reducing antioxidant power (FRAP) assay. Similarly, nanofiber mats presented strong antifungal activity when tested against Aspergillus niger. The developed nanofibers provided decent functional stability for 60 days by preserving the activity of dually encapsulated EOs. Finally, the nanofiber mats offered good control against the microbial spoilage of wheat bread stored for 10 days at ambient conditions. Thus, the developed nanofiber mats could be suitable for potential application as active packaging for low-to-intermediate moisture foods. Elsevier 2023-04-25 Article PeerReviewed Mahmood, Kaiser and Kamilah, Hanisah and A Karim, Alias and Ariffin, Fazilah (2023) Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning. Food Hydrocolloids, 137. ISSN 0268-005X https://linkinghub.elsevier.com/retrieve/pii/S0268005X2200844X 10.1016/j.foodhyd.2022.108324
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description In this study, three EOs, namely cinnamaldehyde (CEO), limonene (LEO) and eugenol (EEO), together with ²-cyclodextrins (²CD) were encapsulated in the core of nanofibers via coaxial electrospinning to improve the functional properties of fish gelatin mat. The successful fabrication of nanofibers was verified by transmission electron microscopy (TEM) and an average fiber diameter of 251“378 nm was observed by scanning electron microscopy (SEM). Attenuated Fourier-transform infrared (ATR-FTIR) indicated a physical type of interaction between gelatin and EOs. Melting temperature (Tm) of nanofiber mats was improved with the incorporation of EOs-²CD while reduced mechanical strength was noticed. The encapsulation efficiency (EE) of EOs in nanofiber mats ranged from 69.7 to 93.2. A significantly enhanced antioxidant activity was noticed for nanofiber mats as evaluated through 2,2-diphenyl-1-picrylhydrazyl (DPPH) and ferric reducing antioxidant power (FRAP) assay. Similarly, nanofiber mats presented strong antifungal activity when tested against Aspergillus niger. The developed nanofibers provided decent functional stability for 60 days by preserving the activity of dually encapsulated EOs. Finally, the nanofiber mats offered good control against the microbial spoilage of wheat bread stored for 10 days at ambient conditions. Thus, the developed nanofiber mats could be suitable for potential application as active packaging for low-to-intermediate moisture foods.
format Article
author Mahmood, Kaiser
Kamilah, Hanisah
A Karim, Alias
Ariffin, Fazilah
spellingShingle Mahmood, Kaiser
Kamilah, Hanisah
A Karim, Alias
Ariffin, Fazilah
Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning
author_facet Mahmood, Kaiser
Kamilah, Hanisah
A Karim, Alias
Ariffin, Fazilah
author_sort Mahmood, Kaiser
title Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning
title_short Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning
title_full Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning
title_fullStr Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning
title_full_unstemmed Enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning
title_sort enhancing the functional properties of fish gelatin mats by dual encapsulation of essential oils in β-cyclodextrins/fish gelatin matrix via coaxial electrospinning
publisher Elsevier
publishDate 2023
url http://psasir.upm.edu.my/id/eprint/107709/
https://linkinghub.elsevier.com/retrieve/pii/S0268005X2200844X
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score 13.214268