Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application

© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This study aimed to optimize nanoemulsions loading with Mangifera indica L. kernel extract using response surface methodology for enhancing the stability and skin permeation of the extract. Central composite design was employed for optimizati...

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Main Authors: Worrapan Poomanee, Watcharee Khunkitti, Wantida Chaiyana, Pimporn Leelapornpisid
Format: Journal
Published: 2020
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/71022
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spelling th-cmuir.6653943832-710222020-10-14T08:47:22Z Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application Worrapan Poomanee Watcharee Khunkitti Wantida Chaiyana Pimporn Leelapornpisid Pharmacology, Toxicology and Pharmaceutics © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This study aimed to optimize nanoemulsions loading with Mangifera indica L. kernel extract using response surface methodology for enhancing the stability and skin permeation of the extract. Central composite design was employed for optimization and evaluation of three influencing factors including hydrophile-lipophile balance (HLB), % co-surfactant (PEG-7 glyceryl cocoate), and surfactant-to-oil ratio (SOR) on physical properties of the nanoemulsions. The desired nanoemulsions were then incorporated with the extract and characterized. Physicochemical properties of the extract-loaded nanoemulsions and their antibacterial effects against Propionibacterium acnes were also evaluated after storage at various conditions and compared to those of the initial. Ex vivo skin permeation was also investigated. The factors significantly (p < 0.05) influenced on droplet size, polydispersity index (PDI), and zeta potential, especially HLB of the surfactant and its combined effects with co-surfactant and SOR. The extract-loaded nanoemulsions revealed a very small spherical droplets (size of 26.14 ± 0.22 nm) with narrow size distribution (PDI of 0.16 ± 0.02). The formulation also presented an excellent stability profile and successfully enhanced antibacterial stability of the extract comparing with the extract solution. Ex vivo skin permeation study illustrated that the extract in nanoemulsions could be delivered through a primary skin barrier to reach viable epidermis dermis layers. In conclusion, the affinity of surfactant and hydrophilicity of the system play a crucial role in nanoemulsions’ characteristics. Such results might provide promising anti-acne nanoemulsions with the notable capacities of extract stabilization and permeation enhancing which will be further clinically evaluated. 2020-10-14T08:47:22Z 2020-10-14T08:47:22Z 2020-05-01 Journal 19994923 2-s2.0-85085071746 10.3390/pharmaceutics12050454 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85085071746&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/71022
institution Chiang Mai University
building Chiang Mai University Library
continent Asia
country Thailand
Thailand
content_provider Chiang Mai University Library
collection CMU Intellectual Repository
topic Pharmacology, Toxicology and Pharmaceutics
spellingShingle Pharmacology, Toxicology and Pharmaceutics
Worrapan Poomanee
Watcharee Khunkitti
Wantida Chaiyana
Pimporn Leelapornpisid
Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application
description © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This study aimed to optimize nanoemulsions loading with Mangifera indica L. kernel extract using response surface methodology for enhancing the stability and skin permeation of the extract. Central composite design was employed for optimization and evaluation of three influencing factors including hydrophile-lipophile balance (HLB), % co-surfactant (PEG-7 glyceryl cocoate), and surfactant-to-oil ratio (SOR) on physical properties of the nanoemulsions. The desired nanoemulsions were then incorporated with the extract and characterized. Physicochemical properties of the extract-loaded nanoemulsions and their antibacterial effects against Propionibacterium acnes were also evaluated after storage at various conditions and compared to those of the initial. Ex vivo skin permeation was also investigated. The factors significantly (p < 0.05) influenced on droplet size, polydispersity index (PDI), and zeta potential, especially HLB of the surfactant and its combined effects with co-surfactant and SOR. The extract-loaded nanoemulsions revealed a very small spherical droplets (size of 26.14 ± 0.22 nm) with narrow size distribution (PDI of 0.16 ± 0.02). The formulation also presented an excellent stability profile and successfully enhanced antibacterial stability of the extract comparing with the extract solution. Ex vivo skin permeation study illustrated that the extract in nanoemulsions could be delivered through a primary skin barrier to reach viable epidermis dermis layers. In conclusion, the affinity of surfactant and hydrophilicity of the system play a crucial role in nanoemulsions’ characteristics. Such results might provide promising anti-acne nanoemulsions with the notable capacities of extract stabilization and permeation enhancing which will be further clinically evaluated.
format Journal
author Worrapan Poomanee
Watcharee Khunkitti
Wantida Chaiyana
Pimporn Leelapornpisid
author_facet Worrapan Poomanee
Watcharee Khunkitti
Wantida Chaiyana
Pimporn Leelapornpisid
author_sort Worrapan Poomanee
title Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application
title_short Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application
title_full Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application
title_fullStr Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application
title_full_unstemmed Optimization of mangifera indica L. Kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application
title_sort optimization of mangifera indica l. kernel extract-loaded nanoemulsions via response surface methodology, characterization, stability, and skin permeation for anti-acne cosmeceutical application
publishDate 2020
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85085071746&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/71022
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