Characterization and Preparation of the Hydrogel has Excellent Release Effect of the Active Ingredients Using a Radiation Cross-linking Technology

방사선 가교 기술을 이용한 유효성분 방출력이 우수한 하이드로겔 제조 및 특성 분석

  • Hwang, Seung-Hyun (Research Division for Industry & Environment, Korea Atomic Energy Research Institute) ;
  • Ahn, Sung-Jun (Research Division for Industry & Environment, Korea Atomic Energy Research Institute) ;
  • Park, Jong-Seok (Research Division for Industry & Environment, Korea Atomic Energy Research Institute) ;
  • Jeong, Sung In (Research Division for Industry & Environment, Korea Atomic Energy Research Institute) ;
  • Gwon, Hui-Jeong (Research Division for Industry & Environment, Korea Atomic Energy Research Institute) ;
  • Lee, Dong Yun (Department of Bioengineering, Division of Applied Chemical and Bio Engineering, Hanyang University) ;
  • Lim, Youn-Mook (Research Division for Industry & Environment, Korea Atomic Energy Research Institute)
  • 황승현 (한국원자력연구원 첨단방사선연구소 공업환경연구부) ;
  • 안성준 (한국원자력연구원 첨단방사선연구소 공업환경연구부) ;
  • 박종석 (한국원자력연구원 첨단방사선연구소 공업환경연구부) ;
  • 정성린 (한국원자력연구원 첨단방사선연구소 공업환경연구부) ;
  • 권희정 (한국원자력연구원 첨단방사선연구소 공업환경연구부) ;
  • 이동윤 (한양대학교 생명공학과) ;
  • 임윤묵 (한국원자력연구원 첨단방사선연구소 공업환경연구부)
  • Received : 2015.12.10
  • Accepted : 2015.12.15
  • Published : 2015.12.31

Abstract

Typical radiation cross-linked hydrogels has the characteristic that high water content, but low emission efficiency of active ingredients. Therefore, the hydrogel was prepared by the addition to collagen, which is closely related to the formation of skin wrinkles in biocompatibility and highly water-soluble carboxymethyl cellulose sodium salt (CMC) in order to preparation of hydrogels has excellent emission efficiency of active ingredients. Hydrogels were prepared by dissolving CMC and collagen each of 0.5%, 10% concentration in deionized water. Then, prepared hydrogels are performed by gamma-radiation at 1, 3, 5 kGy irradiation dose. The results showed that the gel fraction of after irradiated 3 kGy hydrogel was higher than before irradiated gelation as long as the 55.3%. The swelling rate of irradiated 3 kGy hydrogel was lower than the non-irradiated sample. The compressive strength of 3 kGy irradiated hydrogel was the highest. The visco-elastic did not show any significant differences, even after irradiation. The CMC hydrogel in this study suggested a potential use as a material for the mask pack for improved emission efficiency of the active ingredient and anti-wrinkles.

Keywords

Acknowledgement

Supported by : 한국연구재단