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Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle

Green synthesis of metal nanoparticles from medicinal plants has provided a broad scope in biomedical research and functional food formulations due to low toxicity. Dendropanax morbifera (DM) is a versatile traditional medicine used for various inflammatory diseases due to its extensive antioxidant...

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Autores principales: You, Wenying, Ahn, Jong Chan, Boopathi, Vinothini, Arunkumar, Lakshminarayanan, Rupa, Esrat Jahan, Akter, Reshmi, Kong, Byoung Man, Lee, Geun Sik, Yang, Deok Chun, Kang, Se Chan, Liu, Jingjing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914509/
https://www.ncbi.nlm.nih.gov/pubmed/33572189
http://dx.doi.org/10.3390/ma14040824
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author You, Wenying
Ahn, Jong Chan
Boopathi, Vinothini
Arunkumar, Lakshminarayanan
Rupa, Esrat Jahan
Akter, Reshmi
Kong, Byoung Man
Lee, Geun Sik
Yang, Deok Chun
Kang, Se Chan
Liu, Jingjing
author_facet You, Wenying
Ahn, Jong Chan
Boopathi, Vinothini
Arunkumar, Lakshminarayanan
Rupa, Esrat Jahan
Akter, Reshmi
Kong, Byoung Man
Lee, Geun Sik
Yang, Deok Chun
Kang, Se Chan
Liu, Jingjing
author_sort You, Wenying
collection PubMed
description Green synthesis of metal nanoparticles from medicinal plants has provided a broad scope in biomedical research and functional food formulations due to low toxicity. Dendropanax morbifera (DM) is a versatile traditional medicine used for various inflammatory diseases due to its extensive antioxidant activity. We investigated DM as a natural capping agent for Zn(2+) ions and coloaded it with tryptophan for its penetration and antiobesity behavior. DM zinc oxide nanoparticles (DM-ZnO NPs) were prepared and then entrapped with tryptophan (DM-ZnO-Try nanoemulsion (NE)) for stable formulation using the O/W nanoemulsion method. The hydrodynamic sizes measured by dynamic light scattering for DM-ZnO NPs and DM-ZnO-Try NE are about 146.26 ± 3.31 and 151.16 ± 3.59 nm, respectively. TEM and SEM reveal its morphology. In vitro analysis on both NPs and NE was non-toxic to RAW 264.7 and 3T3-L1 preadipocyte cell line. It significantly reduced the accumulated lipids through lipolysis performed at 10 ug/mL in 3T3-L1 preadipocyte cells. NE suppresses the differentiation of 3T3-L1 adipocytes and lowers triglycerides. Further, the substantial reduction of lipid content is evident with Oil Red O staining and OD measurement. In this present study, the synergetic effect of DM-ZnO NPs and tryptophan is reported, which provides a way for more detailed research on its efficacy for obesity and obesity-associated disorders.
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spelling pubmed-79145092021-03-01 Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle You, Wenying Ahn, Jong Chan Boopathi, Vinothini Arunkumar, Lakshminarayanan Rupa, Esrat Jahan Akter, Reshmi Kong, Byoung Man Lee, Geun Sik Yang, Deok Chun Kang, Se Chan Liu, Jingjing Materials (Basel) Article Green synthesis of metal nanoparticles from medicinal plants has provided a broad scope in biomedical research and functional food formulations due to low toxicity. Dendropanax morbifera (DM) is a versatile traditional medicine used for various inflammatory diseases due to its extensive antioxidant activity. We investigated DM as a natural capping agent for Zn(2+) ions and coloaded it with tryptophan for its penetration and antiobesity behavior. DM zinc oxide nanoparticles (DM-ZnO NPs) were prepared and then entrapped with tryptophan (DM-ZnO-Try nanoemulsion (NE)) for stable formulation using the O/W nanoemulsion method. The hydrodynamic sizes measured by dynamic light scattering for DM-ZnO NPs and DM-ZnO-Try NE are about 146.26 ± 3.31 and 151.16 ± 3.59 nm, respectively. TEM and SEM reveal its morphology. In vitro analysis on both NPs and NE was non-toxic to RAW 264.7 and 3T3-L1 preadipocyte cell line. It significantly reduced the accumulated lipids through lipolysis performed at 10 ug/mL in 3T3-L1 preadipocyte cells. NE suppresses the differentiation of 3T3-L1 adipocytes and lowers triglycerides. Further, the substantial reduction of lipid content is evident with Oil Red O staining and OD measurement. In this present study, the synergetic effect of DM-ZnO NPs and tryptophan is reported, which provides a way for more detailed research on its efficacy for obesity and obesity-associated disorders. MDPI 2021-02-09 /pmc/articles/PMC7914509/ /pubmed/33572189 http://dx.doi.org/10.3390/ma14040824 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
You, Wenying
Ahn, Jong Chan
Boopathi, Vinothini
Arunkumar, Lakshminarayanan
Rupa, Esrat Jahan
Akter, Reshmi
Kong, Byoung Man
Lee, Geun Sik
Yang, Deok Chun
Kang, Se Chan
Liu, Jingjing
Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle
title Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle
title_full Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle
title_fullStr Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle
title_full_unstemmed Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle
title_short Enhanced Antiobesity Efficacy of Tryptophan Using the Nanoformulation of Dendropanax morbifera Extract Mediated with ZnO Nanoparticle
title_sort enhanced antiobesity efficacy of tryptophan using the nanoformulation of dendropanax morbifera extract mediated with zno nanoparticle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914509/
https://www.ncbi.nlm.nih.gov/pubmed/33572189
http://dx.doi.org/10.3390/ma14040824
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