Optimization of Citrus aurantifolia peel extract encapsulation in alginate-gelatin hydrogel microbeads for antibacterial wound dressing applications

The extract of Citrus aurantifolia peel has been encapsulated into alginate-gelatin-based microbeads using an external ionotropic gelation method to apply antibacterial wound dressings. Such variables, like the alginate-gelatin ratio, extract quantity, and CaCl2 cross-linkers, were optimized to prod...

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Published in:Carbohydrate polymer technologies and applications Vol. 7; p. 100406
Main Authors: Julaeha, Euis, Puspita, Winda Rian, Permadi, Nandang, Harja, Asep, Nurjanah, Sarifah, Wahyudi, Tatang, Al-Anshori, Jamaludin
Format: Journal Article
Language:English
Published: Elsevier Ltd 01-06-2024
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Abstract The extract of Citrus aurantifolia peel has been encapsulated into alginate-gelatin-based microbeads using an external ionotropic gelation method to apply antibacterial wound dressings. Such variables, like the alginate-gelatin ratio, extract quantity, and CaCl2 cross-linkers, were optimized to produce a good yield, well-distributed size, and encapsulation efficiency. Antibacterial efficacy was tested against both S. aureus and E. coli. Optimal microbead characteristics were obtained at alginate:gelatin concentration ratio of 1.75 %:0.25 % (w/v), with 15 mg of extract and a 2 % CaCl2 cross-linker. These conditions resulted in the microbeads with 82.94 ± 1.056 % yield, particle sizes between 1.080–1.244 µm, and encapsulation efficiency of 79.127 ± 0.186 %. The microbeads exhibited an almost spherical morphology with a slightly rough surface. The extract release mechanism out of the microbeads was governed by both diffusion and erosion of the shells following the Korsmeyer-Peppas kinetic model (k = 1.014 ± 0.007/min). Upon immobilizing the microbeads on gauze, an add-on percentage of 73.98 % was observed. Moreover, the gauze-immobilized microbeads inhibited S. aureus and E. coli growth with inhibition zones of 11±1.48 and 12.56±4.89 mm, respectively. In conclusion, the antibacterial alginate-gelatin-based microbeads have demonstrated optimal characteristics and exhibited effective inhibition against S. aureus and E. coli, showcasing their potential as antibacterial wound dressings.
AbstractList The extract of Citrus aurantifolia peel has been encapsulated into alginate-gelatin-based microbeads using an external ionotropic gelation method to apply antibacterial wound dressings. Such variables, like the alginate-gelatin ratio, extract quantity, and CaCl2 cross-linkers, were optimized to produce a good yield, well-distributed size, and encapsulation efficiency. Antibacterial efficacy was tested against both S. aureus and E. coli. Optimal microbead characteristics were obtained at alginate:gelatin concentration ratio of 1.75 %:0.25 % (w/v), with 15 mg of extract and a 2 % CaCl2 cross-linker. These conditions resulted in the microbeads with 82.94 ± 1.056 % yield, particle sizes between 1.080–1.244 µm, and encapsulation efficiency of 79.127 ± 0.186 %. The microbeads exhibited an almost spherical morphology with a slightly rough surface. The extract release mechanism out of the microbeads was governed by both diffusion and erosion of the shells following the Korsmeyer-Peppas kinetic model (k = 1.014 ± 0.007/min). Upon immobilizing the microbeads on gauze, an add-on percentage of 73.98 % was observed. Moreover, the gauze-immobilized microbeads inhibited S. aureus and E. coli growth with inhibition zones of 11±1.48 and 12.56±4.89 mm, respectively. In conclusion, the antibacterial alginate-gelatin-based microbeads have demonstrated optimal characteristics and exhibited effective inhibition against S. aureus and E. coli, showcasing their potential as antibacterial wound dressings.
ArticleNumber 100406
Author Harja, Asep
Al-Anshori, Jamaludin
Julaeha, Euis
Wahyudi, Tatang
Puspita, Winda Rian
Nurjanah, Sarifah
Permadi, Nandang
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  surname: Julaeha
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  organization: Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Jatinangor 45363, Indonesia
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  givenname: Winda Rian
  surname: Puspita
  fullname: Puspita, Winda Rian
  organization: Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Jatinangor 45363, Indonesia
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  givenname: Nandang
  surname: Permadi
  fullname: Permadi, Nandang
  organization: Doctorate Program in Biotechnology, Graduate School, Universitas Padjadjaran, Bandung 40132, Indonesia
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  givenname: Asep
  surname: Harja
  fullname: Harja, Asep
  organization: Department of Geophysics, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Jatinangor 45363, Indonesia
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  givenname: Jamaludin
  surname: Al-Anshori
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  organization: Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Jatinangor 45363, Indonesia
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Keywords Microbeads
C. aurantifolia
Antibacterial
External ionotropic gelation
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Snippet The extract of Citrus aurantifolia peel has been encapsulated into alginate-gelatin-based microbeads using an external ionotropic gelation method to apply...
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StartPage 100406
SubjectTerms Antibacterial
C. aurantifolia
External ionotropic gelation
Microbeads
Title Optimization of Citrus aurantifolia peel extract encapsulation in alginate-gelatin hydrogel microbeads for antibacterial wound dressing applications
URI https://dx.doi.org/10.1016/j.carpta.2023.100406
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