Synthesis, Characterization and Cosmetic Application of Self-Assembled Sericin-PEG Nanoparticle

  • E. S. Choung (R&D Center, Charmzone Co., Ltd) ;
  • S. Y. Eom (R&D Center, Charmzone Co) ;
  • Kim, J. H. (R&D Center, Charmzone Co) ;
  • Kim, K. S. (R&D Center, Bioland Lt) ;
  • Kim, K. H. (R&D Center, Bioland Lt) ;
  • Lee, K. G. (Applied Entomology Division, National Institute of Agriculture Science Technolog) ;
  • Lee, Y. W. (Applied Entomology Division, National Institute of Agriculture Science Technolog) ;
  • C. S. Cho (College of Agriculture and Life Sciences, Seoul National University)
  • Published : 2003.09.01

Abstract

Silk Sericin(SS) is a natural protein extracted from cocoon of bombix mori and shows moisturizing effect to the skin due to a number of hydroxyl groups in the structure. But its application to cosmetics is limited due to its poor solubility in water. In order to solve this drawback and expand its application to cosmetics, polyethyleneglycol(PEG) was conjugated with sericin by reacting activated polyethyleneglycol(ActPEG). Reaction site of sericin is tyrosine residue, which was determined by using $^1$H-NMR. Random coil structure of sericin was transformed to beta-sheet structure by conjugating polyethyleneglycol. It was confirmed that melting point of sericin-PEG conjugate was lowered compared to that of each sericin and PEG due to the interaction between sericin and PEG in crystalline structure. Self-assembled sericin-PEG nanoparticle was obtained by dialyzing with alcohol solution of sericin-PEG conjugate against water. The particle is spherical and has 200-400nm of size. The moisturizing ability of sericin-PEG nanoparticle was much higher than that of sericin itself. Incorporation of vitamin A into sericin-PEG nanoparticle was carried out by diafiltration method. The content of incorporated Vitamin A in sericin-PEG nanoparticle was 8.9 wt%. Releasing behaviour of vitamin A incorporated into nanoparticle was tested in phosphate buffer, pH 7.4 at 37$^{\circ}C$. and half-life of Vitamin A release was 43hrs. Sericin-PEG nanoparticle exhibited higher moisturing effect than sericin itself and distilled water, respectively. No toxicity and irritation were observed in animal tests. It can be expected that the self-assembled sericin-PEG nanoparticle can be developed for cosmetics.

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