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Enhancement of Skin Permeation of Pyrus serotina var Leaf Extract Using Polymer Micelle and Liposome Containing Cell Penetrating Peptide

세포투과 펩티드를 함유한 고분자 미셀 및 리포좀을 이용한 배나무 잎 추출물의 피부 흡수 증진

  • An, Gyu Min (Department of Senior Healthcare, majored in Cosmetic Pharmacology, Eulji University) ;
  • Park, Su In (Department of Senior Healthcare, majored in Cosmetic Pharmacology, Eulji University) ;
  • Kim, Min Gi (Department of Senior Healthcare, majored in Cosmetic Pharmacology, Eulji University) ;
  • Heo, Soo Hyeon (Department of Senior Healthcare, majored in Cosmetic Pharmacology, Eulji University) ;
  • Shin, Moon Sam (Department of Senior Healthcare, majored in Cosmetic Pharmacology, Eulji University)
  • 안규민 (을지대학교 대학원 시니어헬스케어학과 화장품약리학 전공) ;
  • 박수인 (을지대학교 대학원 시니어헬스케어학과 화장품약리학 전공) ;
  • 김민기 (을지대학교 대학원 시니어헬스케어학과 화장품약리학 전공) ;
  • 허수현 (을지대학교 대학원 시니어헬스케어학과 화장품약리학 전공) ;
  • 신문삼 (을지대학교 대학원 시니어헬스케어학과 화장품약리학 전공)
  • Received : 2019.07.17
  • Accepted : 2019.09.17
  • Published : 2019.09.30

Abstract

Antioxidant, antibacterial, and skin penetration tests were conducted to investigate the skin absorption of Pyrus serotina var leaf extracts using polymer micelles and their applicability to cosmetic ingredients. Total polyphenol content was found to be $118.83{\pm}9.39mg/g$ in Pyrus serotina var leaf ethanol extract and $106.89{\pm}4.45mg/g$ in Pyrus serotina var leaf hydrothermal extract. The DPPH radical scavenging activity was found to be the highest radical scavenging activity of $74.39{\pm}7.48%$ of the Pyrus serotina var leaf ethanol extract at the concentration of 500 mg/L. The SOD-like activity was $91.62{\pm}0.43%$, the highest value at the concentration of 1,000 mg/L in the hydrothermal extract. After the experiment, antioxidation, wrinkle improvement and whitening activity were confirmed, and the Pyrus serotina var leaf extract was highly likely to be realized as antioxidant and antibacterial material. In the skin penetration experiment with the Pyrus serotina var leaf ethanol extract, the permeation amount of total accumulated tannic acid was found to be Formulation 2 ($55.45{\mu}g/cm^2$), Formulation 1 ($46.43{\mu}g/cm^2$), Formulation 0 ($34.36{\mu}g/cm^2$). In the liposome's skin penetration experiment containing pear leaf hydrothemal extract, the total amount of accumulated tannic acid permeation was found to be Formulation 5 ($75.01{\mu}g/cm^2$), Formulation 4 ($64.01{\mu}g/cm^2$) and Formulation 3 ($36.60{\mu}g/cm^2$). Through this study, we confirmed the possibility of antioxidant and wrinkle effects of Pyrus serotina var leaf extract. In addition, as a result of skin penetration through the production of polymer micelles and liposome containing Pyrus serotina var leaf extract, It will be more usable in cosmetic industry.

세포투과 펩티드를 함유한 고분자 미셀 및 리포좀을 이용한 배나무 잎 추출물의 피부 흡수 증진 및 화장품 성분으로의 응용가능성에 대해 알아보기 위해 항산화, 항균 실험 및 제형별 피부 침투 실험을 진행하였다. 총 polyphenol 함량은 배나무 잎 에탄올 추출물에서 $118.83{\pm}9.39mg/g$, 배나무 잎 열수 추출물에서 $106.89{\pm}4.45mg/g$로 확인되었다. DPPH radical 소거능 측정 결과, 500 mg/L의 농도에서 배나무 잎 에탄올 추출물이 $74.39{\pm}7.48%$의 가장 높은 라디칼 소거능을 나타냈다. SOD 유사 활성능은 1,000 mg/L의 농도에서 열수 추출물이 $91.62{\pm}0.43%$로 가장 높은 효능을 나타내었다. 이 후 실험으로부터 항산화, 주름 개선, 미백 활성이 확인되어 배나무 잎 추출물이 항산화 및 항균소재로서의 실현가능성이 높다고 판단했다. 배나무 잎 에탄올 추출물을 함유한 고분자 미셀 피부침투 실험에서는 24시간 동안의 실험 결과, 총 축적된 tannic acid의 투과량은 Formulation 2($55.45{\mu}g/cm^2$), Formulation 1($46.43{\mu}g/cm^2$), Formulation 0($34.36{\mu}g/cm^2$)의 순서로 확인되었다. 배나무 잎 열수 추출물을 함유한 리포좀 피부침투 실험에서는 24시간 동안의 실험 결과, 총 축적된 tannic acid의 투과량이 Formulation 5($75.01{\mu}g/cm^2$), Formulation 4($64.01{\mu}g/cm^2$), Formulation 3($36.60{\mu}g/cm^2$)의 순서로 확인되었다. 이 연구를 통해 배나무 잎 추출물이 가지고 있는 항산화, 주름개선의 효능에 대한 가능성을 확인하였고 고분자 미셀 및 리포좀을 이용한 배나무 잎 추출물의 피부침투 결과를 통해 향후 화장품 산업에 긍정적으로 이용될 것이라고 사료된다.

Keywords

References

  1. K. S. Yoon, M. J. Kim, M. H. Kim, "In vitro screening of Jeju island plants for customerized cosmetics", Journal of Oil & Applied Science, Vol. 35, No. 4 pp. 1487-1495 (2018). https://doi.org/10.12925/JKOCS.2018.35.4.1487
  2. G. B. Lee, A. R. Yeom, D. W. Kim, C. M. Park, M. S. Joung, G. Y. Lee, C. S. Jeong, "Evaluation of Alcea rosea L. callus extract as a aatural cosmetic ingredient", Journal of Society of Cosmetic Scientists of Korea, Vol. 44, No. 3 pp. 295-302 (2018). https://doi.org/10.15230/SCSK.2018.44.3.295
  3. G. M. An, S. I. Park, M. G. Kim, M. S. Shin, "Antioxidant, antimicrobial and antiinflammatory effects of Anemarrhena asphodeloides extracts using supercritical extraction", Journal of Investigative Cosmetology, Vol. 14, No. 4 pp. 455-462 (2018).
  4. S. J. Lee, D. W. Park, H. G. Jang, C. Y. Kim, Y. S. Park, T. C. Kim, B. G. Heo, "Total phenol content, electron donating ability, and tyrosinase inhibition activity of Pear Cut Branch extract", Korean Journal of Horticultural Science & Technology, Vol. 24, No. 3 pp. 338-341 (2006).
  5. K. Sepideh, K. Maryam, "Preparation of PCL/PEG superporous hydrogel containing drug-loaded nanoparticles: The effect of hydrophobic-hydrophilic interface on the physical properties", European Polymer Journal, Vol. 58, pp. 180-190 (2014). https://doi.org/10.1016/j.eurpolymj.2014.06.024
  6. R.K. Jain, "Delivery of molecular medicine to solid tumors: lessons from in vivo imaging of gene expression and function", Journal of Controlled Release, Vol. 74, No. 1-3 pp. 7-25 (2001). https://doi.org/10.1016/S0168-3659(01)00306-6
  7. S.J. Park, Y.J. Yang, S.Y. Shim, D.H. Seo, "Preparation and characterization of poly(${\varepsilon}$-caprolactone)/poly(ethylene glycol) microcapsules containing fragrant oil", Applied Chemistry for Engineering, Vol. 13, No. 7 pp. 697-702 (2002).
  8. S. K. Jang, S. K. An, S. H. Jeon, "The moisturizing effect and formulation test of the cosmetics Composed by horse oil liposomes", Korean Journal of Aesthetics and Cosmetics Society, Vol. 12 No. 6 pp. 813-820 (2014).
  9. Wender P.A., Mitchell D.J., Pattabiraman K, Pelkey E.T., Steinman L, Rothbard J.B., "The design, synthesis, and evaluation of molecules that enable or enhance cellular uptake: peptoid molecular transporters", PNAS, Vol. 97, No. 24 pp. 13003-13008 (2000) https://doi.org/10.1073/pnas.97.24.13003
  10. S. H. Lee, "Screening of skin-permeable peptide in thermal stabilizing formulation using phage display", Korean Journal of Microbiology and Biotechnology, Vol. 46 No. 4, pp. 326-333 (2018). https://doi.org/10.4014/mbl.1807.07001
  11. Lundberg P, Langel U, "A brief introduction to cell-penetrating peptides", Journal of Molecular Recognition, Vol. 16, No. 5 pp. 227-233 (2003). https://doi.org/10.1002/jmr.630
  12. Folin O, Denis W, "On phosphotungstic-phosphomolybdic compounds as color reagents, The Journal of Biological Chemistry, Vol. 12, No. 2 pp. 239-243 (1912). https://doi.org/10.1016/S0021-9258(18)88697-5
  13. M.S. Blois, "Antioxidant determinations by the use of a stable free radical", Nature, Vol. 181, pp. 1199-1200 (1958). https://doi.org/10.1038/1811199a0
  14. J. Y. Han, J. H. Sung, D. J. Kim, H. S. Jeong, J. S. Lee, "Inhibitory effect of methanol extract and its fractions from grape seeds on mushroom tyrosinase", Journal of the Korean Society of Food Science and Nutrition, Vol. 37, No. 12 pp. 1679-1683 (2008). https://doi.org/10.3746/jkfn.2008.37.12.1679
  15. S. Marklund, G. Marklund, "Involvement of the superoxide anion radical in the autoxidation of pyrogallol and a convenient assay for superoxide dismutase", European Journal of Biochemistry, Vol. 47, No. 3 pp. 469-474 (1974). https://doi.org/10.1111/j.1432-1033.1974.tb03714.x
  16. K. S. Cho, " Inhibitory effect of DPPH radical scavenging activity and hydroxyl radicals (OH) activity of hydrocotyle sibthorpioides lamarck", Journal of life science, Vol. 26 No. 9 pp. 1022-1026 (2016). https://doi.org/10.5352/JLS.2016.26.9.1022
  17. B. K. Lee, H. I. Kang, K. J. Lee, "Screening and identification of actinomycetes producing novel elastase inhibitor", The Korean journal of microbiology, Vol. 33, No. 4 pp. 225-231 (1997).