跳到主要內容區塊

魚鱗膠原胜月太活化纖維母細胞及經皮吸收之探討

  • 出版日期:97-06-30
  • 標題title(英):
    Study on the Fibroblasts Activation and Transdermal Permeation of Collagen Peptides from Fish Scales
  • 作者:蔡慧君・李京樺・吳純衡
  • 作者auther(英):Huey-Jine Chai, Jing-Hua Li and Chung-Heng Wu
  • 卷別:16
  • 期別:1
  • 頁碼:97-106

口服膠原胜肽可提高真皮層纖維母細胞的密度,促進膠原纖維直徑及密度的增生,進而改善膚質。但若採外敷的方式,膠原胜肽須穿越皮膚屏障才能活化真皮層的纖維母細胞,以促進膠原蛋白的合成。然而有關胜肽經皮吸收的相關研究付之闕如,因此本研究先以細胞實驗評估魚鱗膠原蛋白水解胜肽 (魚鱗膠原胜肽) 對纖維母細胞之活化作用,再以裸鼠皮進行胜肽的經皮吸收試驗來探討胜肽對皮膚的穿透量。魚鱗經酵素水解之膠原胜肽在蛋白濃度為200 μg/ml時,對纖維母細胞之賦活作用為150%;對膠原蛋白合成促進作用約達250%。此外,魚鱗膠原胜肽,以超過濾分離成平均分子量分別為4500 Da、3500 Da、2000 Da 和 1300 Da等四種樣品,再以 FRANZ 型擴散管 (Franz type diffusion cell) 及組織切片探討螢光標識膠原胜肽對裸鼠皮的穿透量,結果顯示,所有魚鱗膠原胜肽組皆可以經皮吸收到達真皮層,其中以平均分子量3500 Da和4500 Da 胜肽組之單位面積累積穿透量較高。另將螢光標識魚鱗膠原胜肽所穿透之裸鼠皮,再以雙光子雷射顯微影像觀察裸鼠真皮層中膠原胜肽的穿透形態,在胜肽平均分子量為 4500 Da 和 3500 Da之試驗組其分子形態較長、多皺折並呈現捲曲狀;平均分子量為2000 Da 及1300 Da 之試驗組的分子形態較短、少皺折,而呈現直鏈狀。綜合以上結果顯示,魚鱗膠原胜肽可經皮吸收同時活化真皮層的纖維母細胞並促進膠原蛋白合成,而胜肽的分子構形可能是影響經皮吸收的關鍵因子之ㄧ。

摘要abstract(英)


Oral collagen peptide could raise the density of the fibroblasts and increase the diameter and density of collagen fiber in derma of the skin to improve the skin quality. If the collagen peptide was directly applied to the skin, it must passe through the skin to activate the fibroblasts of dermis and to promote the collagens synthesis. In this study, the bioactivities of collagen peptides including activation ability of the fibroblasts and permeation ability of the skin were investingated. Collagen peptides were extracted and protease hydrolyzed from fish scales. The proliferation activities of the skin fibroblast induced by collagen peptides were evaluated by MTT assay. When the concentration of collagen peptides was 200 µg/mL, the proliferation activities of fibroblasts could be enhanced to 150% and the collagen synthesis ability could be increased to 250%. Four types of molecular weight (Mw) 4500, 3500, 2000 and 1300 Da were used for the investigating of the transdermal permeation ability through the Franz type diffusion cell model. The results showed that all sizes of the peptide samples could permeate into dermis. However, those at average Mw 3500 Da and 4500 Da collagen peptides had the higher amount of transdermal permeation than the others. In order to study the permeation of collagen peptides in the nude mice skin, the collagen peptides were labeled with fluorescence dye and then observed by confocal scanning laser microscopy. The fluorescence images showed that the collagen peptides ranging with Mw 3500 Da and 4500 Da had longer, more folding and coiling shapes, while those at average Mw 2000 Da and 1300 Da showed the shorter, less folding and straight shapes. These results suggested that application of the fish scales collagen peptides on skin could also activate fibroblasts and accelerate the collagen synthesis in the dermis to improve skin quality.