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海蜇、牛骨和鳕鱼皮胶原肽的透皮吸收性能研究

刘楚怡 隋海松 车帅 于建伟 王长伟 邹鹏飞

日用化学工业2017,Vol.47Issue(3):164-167,177,5.
日用化学工业2017,Vol.47Issue(3):164-167,177,5.DOI:10.13218/j.cnki.csdc.2017.03.009

海蜇、牛骨和鳕鱼皮胶原肽的透皮吸收性能研究

Investigation of transdermal absorption performance of collagen peptides from jellyfish,bovine bone and cod skin

刘楚怡 1隋海松 2车帅 1于建伟 2王长伟 1邹鹏飞2

作者信息

  • 1. 青岛海洋生物医药研究院,山东青岛 266073
  • 2. 烟台新时代健康产业日化有限公司,山东烟台 264006
  • 折叠

摘要

Abstract

Six kinds of collagen peptide with different molecular weights (<1 kDa and 1 ~3 kDa )were prepared separately by enzymolysis method with collagen obtained from jellyfish,bovine bone and cod skin as starting materials. Effects of time,molecular weight and mass concentration on the transdermal absorption performance of the peptides were examined by transdermal diffusion testing apparatus. Permeation processes of FITC - labeled collagen peptides through mouse skin were observed by fluorescence microscopy. Results showed that,when mass concentration of the six kinds of collagen peptide is 10 g/L,the order (from big to small)of capacity of transdermal absorption at 24 h is as follows:<1 kDa cod skin collagen peptide,<1 kDa bovine bone collagen peptide,<1 kDa jellyfish collagen peptide,1 ~3 kDa jellyfish collagen peptide,1 ~3 kDa bovine bone collagen peptide and 1 ~3 kDa cod skin collagen peptide. The transdermal absorption capacity of <1 kDa collagen peptide is better than that of 1 ~3 kDa collagen peptide. For collagen peptide from bovine bone and jellyfish,the increase of mass concentration will result in enhancing transdermal absorptivity;while for cod skin collagen peptide,the situation is on the contrary. For all the three kinds of source of collagen,the cumulative penetration capacity of collagen peptides per unit area increases with time, while decreases with molecular weight.

关键词

护肤化妆品添加剂/胶原肽/分子量/透皮吸收性能

Key words

additive of skin-care cosmetics/collagen peptide/molecular weight/transdermal absorptivity

分类

化学工程

引用本文复制引用

刘楚怡,隋海松,车帅,于建伟,王长伟,邹鹏飞..海蜇、牛骨和鳕鱼皮胶原肽的透皮吸收性能研究[J].日用化学工业,2017,47(3):164-167,177,5.

基金项目

中国博士后科学基金资助项目(2016M592251) (2016M592251)

日用化学工业

OA北大核心CSCDCSTPCD

1001-1803

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