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通过静电纺丝从水溶液中制备超细鱼明胶纳米纤维网。

Fabrication of an ultrafine fish gelatin nanofibrous web from an aqueous solution by electrospinning.

作者信息

Kwak Hyo Won, Shin Munju, Lee Jeong Yun, Yun Haesung, Song Dae Woong, Yang Yesol, Shin Bong-Seob, Park Young Hwan, Lee Ki Hoon

机构信息

Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul 151-921, Republic of Korea.

Department of Biosystems & Biomaterials Science and Engineering, Seoul National University, Seoul 151-921, Republic of Korea.

出版信息

Int J Biol Macromol. 2017 Sep;102:1092-1103. doi: 10.1016/j.ijbiomac.2017.04.087. Epub 2017 Apr 25.

Abstract

Electrospinning of aqueous gelatin solution obtained from bovine or porcine sources has been difficult to achieve without additional facilities, such as a temperature control oven or heating cover. Gelatin from cold-water fish has low contents of proline (Pro) and hydroxyproline (Hyp) compared with mammalian-derived gelatin. For this reason, the fish-derived gelatin maintains a sol state without showing gelation behavior at room temperature. In the present study, we prepared an ultrafine fish gelatin nanofibrous web by electrospinning from aqueous solutions without any additive polymers or temperature control facilities. The concentration and viscosity of fish gelatin are the most important factor in determining the electrospinnability and fiber diameter. Electrospinning of aqueous fish gelatin has the highest nanofiber productivity compared to other organic solvent systems. Using glutaraldehyde vapor (GTA), the water stability was improved and substantial enhancement was achieved in the mechanical properties. Finally, the cytotoxicity of a fish gelatin nanofibrous scaffold was evaluated based on a cell proliferation study by culturing human dermal fibroblasts (HDFs) compared with a fish gelatin film and nanofibrous mat from mammalian gelatin. The result shows better initial cell attachment and proliferation compared with the fish gelatin film and no significant difference compared with mammalian-derived gelatin nanofibrous mat. We expect that electrospinning of aqueous fish gelatin could be an effective alternative mammalian gelatin source.

摘要

如果没有额外的设备,如温度控制烘箱或加热罩,从牛或猪源获得的明胶水溶液进行静电纺丝一直很难实现。与哺乳动物来源的明胶相比,冷水鱼明胶的脯氨酸(Pro)和羟脯氨酸(Hyp)含量较低。因此,鱼源明胶在室温下保持溶胶状态,不表现出凝胶行为。在本研究中,我们通过静电纺丝从水溶液中制备了一种超细鱼明胶纳米纤维网,无需任何添加剂聚合物或温度控制设备。鱼明胶的浓度和粘度是决定静电纺丝性能和纤维直径的最重要因素。与其他有机溶剂体系相比,鱼明胶水溶液的静电纺丝具有最高的纳米纤维生产率。使用戊二醛蒸汽(GTA),提高了水稳定性,并显著增强了机械性能。最后,通过培养人皮肤成纤维细胞(HDFs),基于细胞增殖研究评估了鱼明胶纳米纤维支架的细胞毒性,并与鱼明胶膜和哺乳动物明胶纳米纤维垫进行了比较。结果表明,与鱼明胶膜相比,初始细胞附着和增殖更好,与哺乳动物来源的明胶纳米纤维垫相比无显著差异。我们期望鱼明胶水溶液的静电纺丝可以成为一种有效的替代哺乳动物明胶来源。

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