Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells

The objective of this study was to compare the charge effect of methyl myristate loaded in neutral (Brij 72/cholesterol at 7:3), cationic (Brij 72/cholesterol/dimethyl dioctadecyl ammonium bromide at 7:3:0.65) and anionic niosomes (Brij 72/cholesterol/dicetyl phosphate at 7:3:0.65) for physicochemic...

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Main Authors: Manosroi A., Chaikul P., Abe M., Manosroi W., Manosroi J.
Format: Article
Language:English
Published: 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-84876540015&partnerID=40&md5=b1781c99a76272e6f4c26e61cae334ce
http://cmuir.cmu.ac.th/handle/6653943832/4082
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-40822014-08-30T02:35:39Z Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells Manosroi A. Chaikul P. Abe M. Manosroi W. Manosroi J. The objective of this study was to compare the charge effect of methyl myristate loaded in neutral (Brij 72/cholesterol at 7:3), cationic (Brij 72/cholesterol/dimethyl dioctadecyl ammonium bromide at 7:3:0.65) and anionic niosomes (Brij 72/cholesterol/dicetyl phosphate at 7:3:0.65) for physicochemical characteristics, cytotoxicity in fibroblasts and B16F10 melanoma cells as well as melanogenesis induction activity. The maximum loading and percentage entrapment of methyl myristate were 4.5, 90.68±7.95 in neutral; 11.0, 92.54±6.32 in cationic and 0.1% w/w, 74.43±1.86% in anionic niosomes, respectively. All methyl myristate loaded niosomes were in unilamellar structure under transmission electron microscope and in nanosize at initial and after 3-month storage. The percentages of methyl myristate remaining in all niosomes kept at 4±2, 30±2 and 45±2 °C for 3 months were about 82, 74 and 72%, respectively, while the dry free methyl myristate indicated 97.82±1.74, 96.56±2.91 and 91.39±4.32%, respectively. Blank neutral, blank cationic and methyl myristate loaded neutral and cationic niosomes exhibited moderate cytotoxicity in fibroblasts and B16F10 melanoma cells at 56.64±3.19, 59.72±1.51; 73.81±2.86, 82.51±0.20; 47.34±2.13, 52.67±2.78 and 73.20±3.49, 84.34±2.75% cell viability, respectively. Blank anionic and methyl myristate loaded anionic niosomes indicated no cytotoxicity in both cells. Cytotoxic ratio of cell viability in normal and cancer cells of all niosomes indicated no toxic effect to normal cells. Methyl myristate loaded cationic niosomes demonstrated the highest melanin induction with tyrosinase activity of 1.42 and 1.70 folds of the control and 1.14 and 1.59 folds higher than theophylline, respectively. This study has suggested the potential of methyl myristate loaded cationic niosomes for canities treatment. Copyright © 2013 American Scientific Publishers All rights reserved. 2014-08-30T02:35:39Z 2014-08-30T02:35:39Z 2013 Article 15507033 10.1166/jbn.2013.1565 23621022 http://www.scopus.com/inward/record.url?eid=2-s2.0-84876540015&partnerID=40&md5=b1781c99a76272e6f4c26e61cae334ce http://cmuir.cmu.ac.th/handle/6653943832/4082 English
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
description The objective of this study was to compare the charge effect of methyl myristate loaded in neutral (Brij 72/cholesterol at 7:3), cationic (Brij 72/cholesterol/dimethyl dioctadecyl ammonium bromide at 7:3:0.65) and anionic niosomes (Brij 72/cholesterol/dicetyl phosphate at 7:3:0.65) for physicochemical characteristics, cytotoxicity in fibroblasts and B16F10 melanoma cells as well as melanogenesis induction activity. The maximum loading and percentage entrapment of methyl myristate were 4.5, 90.68±7.95 in neutral; 11.0, 92.54±6.32 in cationic and 0.1% w/w, 74.43±1.86% in anionic niosomes, respectively. All methyl myristate loaded niosomes were in unilamellar structure under transmission electron microscope and in nanosize at initial and after 3-month storage. The percentages of methyl myristate remaining in all niosomes kept at 4±2, 30±2 and 45±2 °C for 3 months were about 82, 74 and 72%, respectively, while the dry free methyl myristate indicated 97.82±1.74, 96.56±2.91 and 91.39±4.32%, respectively. Blank neutral, blank cationic and methyl myristate loaded neutral and cationic niosomes exhibited moderate cytotoxicity in fibroblasts and B16F10 melanoma cells at 56.64±3.19, 59.72±1.51; 73.81±2.86, 82.51±0.20; 47.34±2.13, 52.67±2.78 and 73.20±3.49, 84.34±2.75% cell viability, respectively. Blank anionic and methyl myristate loaded anionic niosomes indicated no cytotoxicity in both cells. Cytotoxic ratio of cell viability in normal and cancer cells of all niosomes indicated no toxic effect to normal cells. Methyl myristate loaded cationic niosomes demonstrated the highest melanin induction with tyrosinase activity of 1.42 and 1.70 folds of the control and 1.14 and 1.59 folds higher than theophylline, respectively. This study has suggested the potential of methyl myristate loaded cationic niosomes for canities treatment. Copyright © 2013 American Scientific Publishers All rights reserved.
format Article
author Manosroi A.
Chaikul P.
Abe M.
Manosroi W.
Manosroi J.
spellingShingle Manosroi A.
Chaikul P.
Abe M.
Manosroi W.
Manosroi J.
Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells
author_facet Manosroi A.
Chaikul P.
Abe M.
Manosroi W.
Manosroi J.
author_sort Manosroi A.
title Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells
title_short Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells
title_full Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells
title_fullStr Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells
title_full_unstemmed Melanogenesis of methyl myristate loaded niosomes in B16F10 melanoma cells
title_sort melanogenesis of methyl myristate loaded niosomes in b16f10 melanoma cells
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-84876540015&partnerID=40&md5=b1781c99a76272e6f4c26e61cae334ce
http://cmuir.cmu.ac.th/handle/6653943832/4082
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