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Transdermal permeation of drugs with differing lipophilicity: Effect of penetration enhancer camphor.
Xie, Feng; Chai, Jia-Ke; Hu, Quan; Yu, Yong-Hui; Ma, Li; Liu, Ling-Ying; Zhang, Xu-Long; Li, Bai-Ling; Zhang, Dong-Hai.
Afiliación
  • Xie F; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China; Henan provincial people's hospital, Zhengzhou 450003,China.
  • Chai JK; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China. Electronic address: chaijiake@sina.com.
  • Hu Q; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China.
  • Yu YH; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China.
  • Ma L; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China.
  • Liu LY; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China.
  • Zhang XL; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China.
  • Li BL; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China.
  • Zhang DH; Research Institute, the First Affiliated Hospital of Chinese PLA General Hospital, Beijing 100037, China.
Int J Pharm ; 507(1-2): 90-101, 2016 Jun 30.
Article en En | MEDLINE | ID: mdl-27154251
ABSTRACT
The aim of the present study was to investigate the potential application of (+)-camphor as a penetration enhancer for the transdermal delivery of drugs with differing lipophilicity. The skin irritation of camphor was evaluated by in vitro cytotoxicity assays and in vivo transdermal water loss (TEWL) measurements. A series of model drugs with a wide span of lipophilicity (logP value ranging from 3.80 to -0.95), namely indometacin, lidocaine, aspirin, antipyrine, tegafur and 5-fluorouracil, were tested using in vitro transdermal permeation experiments to assess the penetration-enhancing profile of camphor. Meanwhile, the in vivo skin microdialysis was carried out to further investigate the enhancing effect of camphor on the lipophilic and hydrophilic model drugs (i.e. lidocaine and tegafur). SC (stratum corneum)/vehicle partition coefficient and Fourier transform infrared spectroscopy (FTIR) were performed to probe the regulation action of camphor in the skin permeability barrier. It was found that camphor produced a relatively low skin irritation, compared with the frequently-used and standard penetration enhancer laurocapram. In vitro skin permeation studies showed that camphor could significantly facilitate the transdermal absorption of model drugs with differing lipophilicity, and the penetration-enhancing activities were in a parabola curve going downwards with the drug logP values, which displayed the optimal penetration-enhancing efficiency for the weak lipophilic or hydrophilic drugs (an estimated logP value of 0). In vivo skin microdialysis showed that camphor had a similar penetration behavior on transdermal absorption of model drugs. Meanwhile, the partition of lipophilic drugs into SC was increased after treatment with camphor, and camphor also produced a shift of CH2 vibration of SC lipid to higher wavenumbers and decreased the peak area of the CH2 vibration, probably resulting in the alteration of the skin permeability barrier. This suggests that camphor might be a safe and effective penetration enhancer for transdermal drug delivery.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Piel / Absorción Cutánea / Alcanfor / Preparaciones Farmacéuticas / Tegafur / Interacciones Hidrofóbicas e Hidrofílicas / Lidocaína Límite: Animals Idioma: En Revista: Int J Pharm Año: 2016 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Piel / Absorción Cutánea / Alcanfor / Preparaciones Farmacéuticas / Tegafur / Interacciones Hidrofóbicas e Hidrofílicas / Lidocaína Límite: Animals Idioma: En Revista: Int J Pharm Año: 2016 Tipo del documento: Article País de afiliación: China
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