TY - JOUR
T1 - Stable ethosome-like catanionic vesicles for transdermal hydrophilic drug delivery with predictable encapsulation efficiency
AU - Wang, Chun Wei
AU - Chuang, Ming Chen
AU - Chang, Chieh Yi
AU - Chang, Chien Hsiang
AU - Yang, Yu Min
N1 - Funding Information:
This work was supported by the Ministry of Science and Technology of Taiwan through Grants MOST 108-2221-E-006-152 and MOST 109-2221-E-006-086.
Publisher Copyright:
© 2021 by Japan Oil Chemists’ Society.
PY - 2021
Y1 - 2021
N2 - Lipid-like pseudo-double-chained catanionic surfactants have emerged as the attractive materials to prepare potential vesicular carriers in drug and gene delivery applications. In particular, the semi-spontaneous process has been developed to fabricate ethosome-like catanionic vesicles for the transdermal drug delivery. In this work, Arbutin (a water-soluble drug) encapsulation efficiency of ethosome-like catanionic vesicles fabricated from decyltrimethylammonium-tetradecylsulfate (DeTMA-TS, CH3 (CH2 )9 N(CH3 )3-CH3 (CH2 )13 SO4 ) and decyltrimethylammonium-dodecylsulfate (DeTMA-DS, CH3 (CH2 )9 N(CH3 )3-CH3(CH2)11SO4) with various amounts of ethanol and cholesterol in tris buffer solution was experimentally determined. A simple unilamellar vesicle (ULV) model, resulting in the theoretical encapsulation efficiency within ±10% error for most vesicle compositions, was also developed. Such agreement indirectly confirmed the formation of unilamellar vesicles by the preparation method. Stable ethosome-like catanionic vesicles by using catanionic surfactants with the aid of suitable amounts of ethanol and cholesterol, which led to polydispersity index (PDI) values of vesicle size distribution less than 0.3, were successfully prepared and their hydrophilic drug encapsulation efficiencies can be accurately predicted. Furthermore, the linear correlations of the trap volume ratio with both vesicle size and concentration of the extra added CHOL also provide important guidelines for controlling the drug loading of ethosome-like catanionic vesicles. The accomplishments reached for the novel vesicles are useful for developing their transdermal drug delivery applications.
AB - Lipid-like pseudo-double-chained catanionic surfactants have emerged as the attractive materials to prepare potential vesicular carriers in drug and gene delivery applications. In particular, the semi-spontaneous process has been developed to fabricate ethosome-like catanionic vesicles for the transdermal drug delivery. In this work, Arbutin (a water-soluble drug) encapsulation efficiency of ethosome-like catanionic vesicles fabricated from decyltrimethylammonium-tetradecylsulfate (DeTMA-TS, CH3 (CH2 )9 N(CH3 )3-CH3 (CH2 )13 SO4 ) and decyltrimethylammonium-dodecylsulfate (DeTMA-DS, CH3 (CH2 )9 N(CH3 )3-CH3(CH2)11SO4) with various amounts of ethanol and cholesterol in tris buffer solution was experimentally determined. A simple unilamellar vesicle (ULV) model, resulting in the theoretical encapsulation efficiency within ±10% error for most vesicle compositions, was also developed. Such agreement indirectly confirmed the formation of unilamellar vesicles by the preparation method. Stable ethosome-like catanionic vesicles by using catanionic surfactants with the aid of suitable amounts of ethanol and cholesterol, which led to polydispersity index (PDI) values of vesicle size distribution less than 0.3, were successfully prepared and their hydrophilic drug encapsulation efficiencies can be accurately predicted. Furthermore, the linear correlations of the trap volume ratio with both vesicle size and concentration of the extra added CHOL also provide important guidelines for controlling the drug loading of ethosome-like catanionic vesicles. The accomplishments reached for the novel vesicles are useful for developing their transdermal drug delivery applications.
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U2 - 10.5650/jos.ess21072
DO - 10.5650/jos.ess21072
M3 - Article
C2 - 34497178
AN - SCOPUS:85117113614
SN - 1345-8957
VL - 70
SP - 1391
EP - 1401
JO - Journal of Oleo Science
JF - Journal of Oleo Science
IS - 10
ER -