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通过静电纺丝法制备明胶纳米纤维——明胶与聚乙烯醇的混合物

Fabrication of Gelatin Nanofibers by Electrospinning-Mixture of Gelatin and Polyvinyl Alcohol.

作者信息

Chi Hsiu Yu, Chang Nai Yun, Li Chuan, Chan Vincent, Hsieh Jang Hsin, Tsai Ya-Hui, Lin Tingchao

机构信息

Division of Cardiovascular Surgery, Department of Surgery, Taoyuan Armed Forces General Hospital, Taoyuan 32551, Taiwan.

Department of Biomedical Engineering, National Yang Ming Chiao Tung University, Taipei 11221, Taiwan.

出版信息

Polymers (Basel). 2022 Jun 27;14(13):2610. doi: 10.3390/polym14132610.

Abstract

Gelatin, one of the most abundant, naturally derived biomacromolecules from collagen, is widely applicable in food additives, cosmetic ingredients, drug formulation, and wound dressing based on their non-toxicity and biodegradability. In parallel, polyvinyl alcohol (PVA), a synthetic polymer, has been commonly applied as a thickening agent for coating processes in aqueous systems and a major component in healthcare products for cartilage replacements, eye lubrication, and contact lenses. In this study, a new type of mixed hydrogel nanofiber was fabricated from gelatin and polyvinyl alcohol by electrospinning under a feasible range of polymer compositions. To determine the optimal composition of gelatin and polyvinyl alcohol in nanofiber fabrication, several key physicochemical properties of mixed polymer solutions such as viscosity, surface tension, pH, and electrical conductance were thoroughly characterized by a viscometer, surface tensiometer, water analyzer, and carbon electron probe. Moreover, the molecular structures of polymeric chains within mixed hydrogel nanofibers were investigated with Fourier-transform infrared spectroscopy. The morphologies and surface elemental compositions of the mixed hydrogel nanofibers were examined by the scanning electron microscope and energy-dispersive X-ray spectroscopy, respectively. The measurement of water contact angles was performed for measuring the hydrophilicity of nanofiber surfaces. Most importantly, the potential cytotoxicity of the electrospun nanofibers was evaluated by the in vitro culture of 3T3 fibroblasts. Through our extensive study, it was found that a PVA-rich solution (a volumetric ratio of gelatin/polyvinyl alcohol <1) would be superior for the efficient production of mixed hydrogel nanofibers by electrospinning techniques. This result is due to the appropriate balance between the higher viscosity (420−4300 10−2 poise) and slightly lower surface tension (35.12−32.68 mN/m2) of the mixed polymer solution. The regression on the viscosity data also found a good fit by the Lederer−Rougier’s model for a binary mixture. For the hydrophilicity of nanofibers, the numerical analysis estimates that the value of interfacial energy for the water contact on nanofibers is around ~−0.028 to ~−0.059 J/m2.

摘要

明胶是从胶原蛋白中提取的最丰富的天然生物大分子之一,因其无毒且可生物降解,在食品添加剂、化妆品成分、药物制剂和伤口敷料等领域有着广泛应用。与此同时,聚乙烯醇(PVA)作为一种合成聚合物,通常被用作水体系涂层工艺的增稠剂,以及软骨替代、眼部润滑和隐形眼镜等医疗保健产品的主要成分。在本研究中,通过静电纺丝在聚合物组成的可行范围内,由明胶和聚乙烯醇制备了一种新型混合水凝胶纳米纤维。为了确定纳米纤维制备中明胶和聚乙烯醇的最佳组成,用粘度计、表面张力仪、水分分析仪和碳电子探针全面表征了混合聚合物溶液的几个关键物理化学性质,如粘度、表面张力、pH值和电导率。此外,用傅里叶变换红外光谱研究了混合水凝胶纳米纤维内聚合物链的分子结构。分别用扫描电子显微镜和能量色散X射线光谱检查了混合水凝胶纳米纤维的形态和表面元素组成。通过测量水接触角来测定纳米纤维表面的亲水性。最重要的是,通过3T3成纤维细胞的体外培养评估了静电纺纳米纤维的潜在细胞毒性。通过我们广泛的研究发现,富含PVA的溶液(明胶/聚乙烯醇的体积比<1)通过静电纺丝技术高效生产混合水凝胶纳米纤维更具优势。这一结果是由于混合聚合物溶液较高的粘度(约420−约4300×10−2泊)和略低的表面张力(约35.12−约32.68 mN/m2)之间达到了适当的平衡。对粘度数据的回归分析还发现,二元混合物的Lederer−Rougier模型与之拟合良好。对于纳米纤维的亲水性,数值分析估计纳米纤维上水接触的界面能值约为−0.028至−0.059 J/m2。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89d1/9269508/7a47f57a360d/polymers-14-02610-g001.jpg

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