Bual Ronald, Labares Marionilo, Valle Kit Dominick Don, Pague Job, Bantilan Zesreal Cain, Ducao Princess Grace, Alimasag Johnel, Acibar Catherine
Department of Chemical Engineering and Technology, College of Engineering and Technology, Mindanao State University-Iligan Institute of Technology, Iligan City 9200, Philippines.
Center for Sustainable Polymers (CSP), Mindanao State University-Iligan Institute of Technology, Iligan City 9200, Philippines.
Biomimetics (Basel). 2022 Nov 24;7(4):213. doi: 10.3390/biomimetics7040213.
Milkfish () is an abundant fish commodity in the Philippines that generates a large number of wastes such as skin, scales, viscera, and bones, which, upon disposal, cause environmental pollution. The abundance of these wastes, such as fish skin, rich in bioactive natural products such as collagen, elicits interest in their conversion into high-market-value products. The decellularization of milkfish skin waste can extract its extracellular matrix (ECM), a potential raw material for biomedical applications such as the repair of damaged skin tissues. In particular, this study characterized the developed decellularized ECM with different concentrations (0.1%, 1.0%) of the decellularizing agents (Triton X-100, SDS) and temperature (4 °C, room temperature) using milkfish skin. The decellularized ECM structure was better preserved using Triton X-100, while SDS was more effective in cell component removal, especially at 1% concentration and 4 °C temperature. There were significant effects of varying the temperatures and concentrations on the physical and mechanical properties of the decellularized ECM. Future studies could explore more variables to further establish protocols and more analyses to better characterize the decellularized milkfish skin.
遮目鱼()是菲律宾一种产量丰富的鱼类产品,会产生大量废弃物,如鱼皮、鱼鳞、内脏和鱼骨,这些废弃物在处理时会造成环境污染。这些废弃物数量众多,比如富含胶原蛋白等生物活性天然产物的鱼皮,引发了人们将其转化为高市场价值产品的兴趣。遮目鱼皮废弃物的脱细胞处理可以提取其细胞外基质(ECM),这是一种用于生物医学应用(如修复受损皮肤组织)的潜在原材料。特别是,本研究使用遮目鱼皮对不同浓度(0.1%、1.0%)的脱细胞剂(Triton X - 100、SDS)和温度(4℃、室温)下所制备的脱细胞ECM进行了表征。使用Triton X - 100能更好地保留脱细胞ECM的结构,而SDS在去除细胞成分方面更有效,尤其是在1%浓度和4℃温度条件下。改变温度和浓度对脱细胞ECM的物理和力学性能有显著影响。未来的研究可以探索更多变量以进一步建立方案,并进行更多分析以更好地表征脱细胞遮目鱼皮。