哈卡特
明胶
伤口愈合
化学
挤压
食品科学
细胞生长
生物化学
材料科学
生物
免疫学
体外
冶金
作者
Chun-Yung Huang,Tien-Chiu Wu,Yong‐Han Hong,Shu‐Ling Hsieh,Hui-Ru Guo,Ren-Han Huang
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2018-09-20
卷期号:23 (10): 2406-2406
被引量:26
标识
DOI:10.3390/molecules23102406
摘要
Gelatin has been broadly utilized in the food, pharmaceutical, photographic, cosmetic and packaging industries, and there is also huge potential for novel applications of gelatin in the fields of biotechnology and biomedicine. In the present study, we extracted gelatin from fish processing waste, i.e., scale of tilapia, by a combined method of extrusion-pretreatment and hot water extraction. The extrusion-pretreatment process increases the extraction yield of gelatin. Three gelatins (FS2: preconditioning with double-distilled water (ddH₂O) before extrusion; FS12: preconditioning with citric acid solution before extrusion; FS14: preconditioning with acetic acid solution before extrusion) were obtained and all of them enhanced cell adhesion, cell growth, and wound healing in HaCaT cells and protected HaCaT cells from H₂O₂-induced cellular damage. Among FS2, FS12, and FS14, FS12 exhibited the most pronounced enhancement of cell adhesion, cell growth, and wound healing in HaCaT cells, and thus it may have potential as an effective natural raw material in cell therapies for cutaneous wounds and for reducing H₂O₂-induced oxidative damage of cells. In additional experiments, it was found that phosphorylations of Akt and mTOR are involved in the signaling pathway activated by FS2, FS12, and FS14 in HaCaT cells.
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