Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique
Complex coacervation is an encapsulation technique used to preserve the bio functionality of essential oils as well as provide controlled release. In this present work, encapsulation of Citrus Hystrix essential oil (CHEO) was formed by a complex coacervation technique with Gelatin-B (Gel B) and Chit...
Published in: | Pertanika Journal of Science and Technology |
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Universiti Putra Malaysia Press
2024
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2-s2.0-85188923966 Murtadza S.A.‘.; Zaki N.A.M.; Jai J.; Hamzah F.; Ashaari N.S.; Fardhyanti D.S.; Megawati; Imani N.A.C. Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique 2024 Pertanika Journal of Science and Technology 32 2 10.47836/pjst.32.2.07 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188923966&doi=10.47836%2fpjst.32.2.07&partnerID=40&md5=a1956be53d3ce0bb564eb9ec6bfd213c Complex coacervation is an encapsulation technique used to preserve the bio functionality of essential oils as well as provide controlled release. In this present work, encapsulation of Citrus Hystrix essential oil (CHEO) was formed by a complex coacervation technique with Gelatin-B (Gel B) and Chitosan (Chi) as the capping materials. The suitable encapsulation formulation was investigated as a function of pH and wall ratio using Zeta Potential analysis. Turbidity measurement and coacervate yield were carried out to confirm the suitable condition. Total Phenolic Content (TPC) was used to obtain the encapsulation efficiency (EE%) of the process. Results show that the suitable condition for coacervate formation between Gel B and Chi ratio of 5:1 was at pH 5.8, which produced a high encapsulation efficiency of 94.81% ± 2.60. FTIR analysis validates the formation of coacervate as well as the encapsulated CHEO. The encapsulates obtained were spherical and dominated by 194.557 um particles. The CHEO was successfully encapsulated by a complex coacervation method. © Universiti Putra Malaysia Press. Universiti Putra Malaysia Press 1287680 English Article All Open Access; Hybrid Gold Open Access |
author |
Murtadza S.A.‘.; Zaki N.A.M.; Jai J.; Hamzah F.; Ashaari N.S.; Fardhyanti D.S.; Megawati; Imani N.A.C. |
spellingShingle |
Murtadza S.A.‘.; Zaki N.A.M.; Jai J.; Hamzah F.; Ashaari N.S.; Fardhyanti D.S.; Megawati; Imani N.A.C. Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique |
author_facet |
Murtadza S.A.‘.; Zaki N.A.M.; Jai J.; Hamzah F.; Ashaari N.S.; Fardhyanti D.S.; Megawati; Imani N.A.C. |
author_sort |
Murtadza S.A.‘.; Zaki N.A.M.; Jai J.; Hamzah F.; Ashaari N.S.; Fardhyanti D.S.; Megawati; Imani N.A.C. |
title |
Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique |
title_short |
Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique |
title_full |
Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique |
title_fullStr |
Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique |
title_full_unstemmed |
Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique |
title_sort |
Microencapsulation of Citrus Hystrix Essential Oil by Gelatin B/Chitosan Complex Coacervation Technique |
publishDate |
2024 |
container_title |
Pertanika Journal of Science and Technology |
container_volume |
32 |
container_issue |
2 |
doi_str_mv |
10.47836/pjst.32.2.07 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188923966&doi=10.47836%2fpjst.32.2.07&partnerID=40&md5=a1956be53d3ce0bb564eb9ec6bfd213c |
description |
Complex coacervation is an encapsulation technique used to preserve the bio functionality of essential oils as well as provide controlled release. In this present work, encapsulation of Citrus Hystrix essential oil (CHEO) was formed by a complex coacervation technique with Gelatin-B (Gel B) and Chitosan (Chi) as the capping materials. The suitable encapsulation formulation was investigated as a function of pH and wall ratio using Zeta Potential analysis. Turbidity measurement and coacervate yield were carried out to confirm the suitable condition. Total Phenolic Content (TPC) was used to obtain the encapsulation efficiency (EE%) of the process. Results show that the suitable condition for coacervate formation between Gel B and Chi ratio of 5:1 was at pH 5.8, which produced a high encapsulation efficiency of 94.81% ± 2.60. FTIR analysis validates the formation of coacervate as well as the encapsulated CHEO. The encapsulates obtained were spherical and dominated by 194.557 um particles. The CHEO was successfully encapsulated by a complex coacervation method. © Universiti Putra Malaysia Press. |
publisher |
Universiti Putra Malaysia Press |
issn |
1287680 |
language |
English |
format |
Article |
accesstype |
All Open Access; Hybrid Gold Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677773880426496 |