Novel Application of Natural Anisole Compounds as Enhancers for Transdermal Delivery of Ligustrazine

To improve the transdermal delivery of ligustrazine, Foeniculum vulgare food origin anisole compounds were employed as promoters. Transdermal fluxes of ligustrazine were determined by Franz-type diffusion cells. Fourier transform-infrared (FT-IR) spectra were used to detect the biophysical changes o...

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Published inThe American journal of Chinese medicine (1979) Vol. 43; no. 6; p. 1231
Main Authors Zhang, Wen-Jun, Wang, Jiao-Ying, Li, Hui, He, Xin, Zhang, Run-Qi, Zhang, Chun-Feng, Li, Fei, Yang, Zhong-Lin, Wang, Chong-Zhi, Yuan, Chun-Su
Format Journal Article
LanguageEnglish
Published Singapore 2015
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Abstract To improve the transdermal delivery of ligustrazine, Foeniculum vulgare food origin anisole compounds were employed as promoters. Transdermal fluxes of ligustrazine were determined by Franz-type diffusion cells. Fourier transform-infrared (FT-IR) spectra were used to detect the biophysical changes of the stratum corneum and to explore the mechanism of permeation enhancement. A scanning electron microscope (SEM) was used to monitor the morphological changes of the skin. Among the three anisoles, anisic acid increased the penetration flux of ligustrazine significantly. The ligustrazine flux with anisic acid (11.9 μg/cm(2)/h) was higher than that any other group (p < 0.05). Spectra observations revealed that these anisole enhancers were able to disturb and extract the stratum corneum lipids. In addition, apparent density was used to describe the desquamation extent of the scutella. Multiple mechanisms are involved in the permeation enhancement of ligustrazine, including disturbing and extracting stratum corneum lipid, forming a competitive hydrogen bond. All data suggested that anisole compounds could be a group of safe and active penetration enhancers for transdermal delivery of ligustrazine.
AbstractList To improve the transdermal delivery of ligustrazine, Foeniculum vulgare food origin anisole compounds were employed as promoters. Transdermal fluxes of ligustrazine were determined by Franz-type diffusion cells. Fourier transform-infrared (FT-IR) spectra were used to detect the biophysical changes of the stratum corneum and to explore the mechanism of permeation enhancement. A scanning electron microscope (SEM) was used to monitor the morphological changes of the skin. Among the three anisoles, anisic acid increased the penetration flux of ligustrazine significantly. The ligustrazine flux with anisic acid (11.9 μg/cm(2)/h) was higher than that any other group (p < 0.05). Spectra observations revealed that these anisole enhancers were able to disturb and extract the stratum corneum lipids. In addition, apparent density was used to describe the desquamation extent of the scutella. Multiple mechanisms are involved in the permeation enhancement of ligustrazine, including disturbing and extracting stratum corneum lipid, forming a competitive hydrogen bond. All data suggested that anisole compounds could be a group of safe and active penetration enhancers for transdermal delivery of ligustrazine.
Author Wang, Chong-Zhi
Zhang, Chun-Feng
Wang, Jiao-Ying
Li, Hui
He, Xin
Li, Fei
Zhang, Run-Qi
Yuan, Chun-Su
Zhang, Wen-Jun
Yang, Zhong-Lin
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Issue 6
Keywords Transdermal Mechanism
Ligustrazine
Stratum Corneum
Apparent Density
Anisole Enhancers
Language English
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Snippet To improve the transdermal delivery of ligustrazine, Foeniculum vulgare food origin anisole compounds were employed as promoters. Transdermal fluxes of...
SourceID pubmed
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StartPage 1231
SubjectTerms Administration, Cutaneous
Animals
Anisoles - chemistry
Drug Carriers - chemistry
Drug Delivery Systems - instrumentation
Drug Delivery Systems - methods
Drugs, Chinese Herbal - chemistry
Drugs, Chinese Herbal - pharmacokinetics
Foeniculum - chemistry
Ligusticum - chemistry
Skin - drug effects
Swine
Title Novel Application of Natural Anisole Compounds as Enhancers for Transdermal Delivery of Ligustrazine
URI https://www.ncbi.nlm.nih.gov/pubmed/26446204
Volume 43
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