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목초액을 첨가한 하이드로 겔 제제로부터 우르솔릭산의 피부 침적 및 보습에 미치는 영향

The effect on skin deposition and moisturizing of ursolic acid in hydrogel system containing wood vinegar

  • 이계원 (건양대학교 제약공학과 제제 개발실) ;
  • 이주연 (건양대학교 의료 뷰티학과)
  • Lee, Gye-Won (Laboratory of Galenic Technology, Department of Pharmaceutical Engineering, Konyang University) ;
  • Lee, Ju-Yeon (Department of Medicinal Beauty, Konyang University)
  • 발행 : 2008.04.21

초록

Wood vinegar is well known as a softening agent affecting on the stratum corneum that is easy to penetrate into the skin. In this study, we prepared mixed ursolic acid hydrogel with wood vinegar(1, 2, 5%) as a penetration enhancer. The accumulation of ursolic acid in the skin from hydrogels was evaluated in vitro hairless mouse skin and skin moisturizing effect of them was evaluated using the corneometer and the tewermeter. And the role of stratum corneum as a protective barrier was evaluated as well. The hydrogels were retained about 40% of water retention capacity 2hrs and had better effect on the stripped skin than full-thickness skin. The accumulation of ursolic acid through stripped skin from hydrogels with wood vinegar was not change compared to normal skin, which indicated the action site of wood vinegar and the accumulation site of ursolic acid would be stratum corneum. From these result, we could find wood vinegar seems to be a good enhancer for active materials with anti-wrinkle and anti aging effect such as ursolic acid, and can be a developed topical delivery system maintaining excellent water retention capacity.

키워드

참고문헌

  1. J. Liu, Pharmacology of oeanolic and ursolic acid, J. Ethnopharmacol., 49, 57-68 (1995) https://doi.org/10.1016/0378-8741(95)90032-2
  2. T. Mezzetti, G. Orzalesi and V. Bellavita, Chemistry of ursolic acid, Planta Medica, 20, 244-252 (1971) https://doi.org/10.1055/s-0028-1099700
  3. D. Rolf, Chemical and physical methods of enhancing transdermal drug delivery, Pharm. Technol., 130-139 (1988)
  4. O. Wong, Iontophoresis, Fundamentals : In drug permeation enhancement, D.S. Hsieh (Ed.), Marcel Dekker, New York, pp. 219-246 (1994)
  5. D.M. Skauen and G.M. Zenmer, Phonophoresis, Int. J. Pharm., 20, 235-245 (1984) https://doi.org/10.1016/0378-5173(84)90171-6
  6. M. Katz and B.J. Poulsen, In Handbook of experimental pharmacology, B.B. Brodie and J. Gillette (Eds.), Springerverlag, New York, pp. 103 (1971)
  7. E.R. Cooper : Increased skin permeability for lipophilic molecules, J. Pharm. Sci., 73, 1153-1156 (1982) https://doi.org/10.1002/jps.2600730831
  8. M.A. Yamane, A.C. Williams and B.W. Barry, Effect of terpenes and oleic acid as skin penetration ehnaacers towards 5-fluorouracil as assessed with time, permeation partitioning and differential scanning calorimetry, Int. J. Pharm., 116, 237-251 (1995) https://doi.org/10.1016/0378-5173(94)00312-S
  9. K. Sato, K. Sugibayashi and Y. Morimoto, Effect and mode of action of aliphatic esters on the in vitro skin permeation of nicorandil, Int. J. Pharm., 43, 31-40 (1988) https://doi.org/10.1016/0378-5173(88)90055-5
  10. K.I. Seo, K.J. Ha, Y.I. Bae, J.K. Jang and K.H. Shim, Antimicrobial activities of oak smoke flavoring, Korean J. Postharvest Sci. Technol., 7, 337-341 (2000)
  11. A. Yasuhara, et al, Volatile compounds in pyrolingneous liquids from Karamatu and Chisima-sasa, Argric. Bio. Chem., 51, 3049-3060 (1987) https://doi.org/10.1271/bbb1961.51.3049
  12. H. Yoshimura, Promoting effect of wood vinegar compounds on the mycelial growth of two Basidiomycete., Tran. Myco. Soc., Japan, 141-151 (1993)
  13. B.Y. Hwang, J.H. Cho, J. H., Y.M. Chin and S. Yoshihiro, Component Analysis of Softwood Vinegar, J. Kor. For. En., 20, 28-34 (2001)
  14. K.M. Lee, G.T. Jeong and D.H. Park, Study of antimicrobial and DPPH radical scavenger activity of wood vinegar, Korean J. Biotechnol. Bioeng., 19, 381-394 (2004)
  15. Y. Mitsuyoshi and U. Genji, By-products of wood carbonization III., Mokuzai Gakkaishi, 33, 521-529 (1987)
  16. F.Z. Lee, S.H. Choi and J.B. Eun, The nitrite scavenging and electron ability of bamboo smoke distillates made by steel kiln and earth kiln, Korean J. Food Sci. Technol., 34, 719-724 (2002)
  17. Y.H. Kim, S.K. Kim, K.S. Kim and Y.H. Lee, Composition of constituents of commercial wood vinegar liquor in korea, J. Korean Soc. Agric. Chem. Biotechnol., 44, 262-268 (2001)
  18. N.A. Peppas and E.W. Merrill, PVA hydrogels ;Reinforcement of radiation-crosslinked networks by crysatllization, J. Polym. Sci. Polym. Chem., Ed., 14, 441-457 (1976) https://doi.org/10.1002/pol.1976.170140215
  19. Y. Huang, W. Leobandung, A. Foss and N.A. Peppas, Molecular aspects of muco- and bio-adhesion : The structure and site-specific surfaces, J. Controlled Release, 65, 63-71 (2000) https://doi.org/10.1016/S0168-3659(99)00233-3
  20. J. Kost and R. Range, Properties and applications : In hydrogels in medicine and pharmacy, Vol. 3, N.A. Peppas(Eds.), CRC Press, Boca Raton, FL, pp. 95-186 (1986)
  21. S.X. Chen and R.T. Lostritto, Diffusion of benzocaine in poly(ethylene-vinyl acetate membranes: Effects of vehicle ethanol concentration and membrane vinyl acetate content, J. Controlled Release, 38, 185-191 (1996) https://doi.org/10.1016/0168-3659(95)00119-0
  22. B. Hercelin, M. Delauany-Vantrou, F. Alamichel, M. Mazza and J.P. Marty, Pharmacokinetic of cutaneous sulconazole nitrate in the hairless rat: absorption, excretion, tissue concentration, Drug Metab. Pharmacokinet., 18(2), 149-154 (1993) https://doi.org/10.1007/BF03188789