脱胶对丝素纳米颗粒特性的影响

G. Carissimi, A. A. Lozano-Pérez, G. Mercedes, Montalbán, S. Aznar-Cervantes, J. L. Cénis, G. Víllora
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引用次数: 1

摘要

一些研究表明,从蚕茧中去除丝胶蛋白或脱胶的过程对丝素蛋白的完整性产生了强烈的影响,因此在将其加工成几种生物材料(例如纤维、薄膜或支架)后,其机械或生化特性也受到了强烈的影响,但仍然缺乏对丝素纳米颗粒特征的影响的信息。本研究采用高压灭菌、短碱(na2co3)煮、长碱(na2co3)煮和超声波四种标准方法对蚕茧进行脱胶。将合成的丝素纤维溶解在离子液体1-乙基-3-甲基咪唑乙酸酯中,并在极性有机溶剂中快速脱溶用于纳米颗粒合成。通过质量损失、光学显微镜、热重分析、红外光谱和SDS-PAGE分析了脱胶过程的相对效率和所得丝蛋白纤维的完整性。采用动态光散射和场发射扫描电镜对颗粒大小和形貌进行了分析。结果表明,凝胶电泳证实,不同处理对丝素链完整性有显著影响,其影响与颗粒平均大小和粒径分布变化有关。在碱性溶液(Na 2 CO 3 0.02 eq/L)中长时间煮沸处理(2 h)得到的纳米颗粒最小(156±3 nm),负Z电位最大(- 30.2±1.8 mV)。该研究证实,必须控制该工艺的参数,如溶液的组成和脱胶步骤的时间,以达到纳米颗粒生产的最佳再现性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Degumming in the Characteristics of Silk Fibroin Nanoparticles
Several studies have stated that the process used for sericin removal, or degumming, from silk cocoons has a strong impact on the silk fibroin integrity and consequently in their mechanical or biochemical properties after processing it into several biomaterials (e.g., fibers, films or scaffolds) but still, there is a lack of information of the impact on the features of silk nanoparticles. In this work, silk cocoons were degummed following four standard methods: autoclaving, short alkaline (Na 2 CO 3 ) boiling, long alkaline (Na 2 CO 3 ) boiling, and ultrasounds. The resultant silk fibroin fibers were dissolved in the ionic liquid 1-ethyl-3-methylimidazolium acetate and used for nanoparticle synthesis by rapid desolvation in polar organic solvents. The relative efficiencies of the degumming processes and the integrity of the resulting fibroin fibers obtained were analyzed by mass loss, optical microscopy, thermogravimetric analysis, infrared spectroscopy, and SDS-PAGE. Particle sizes and morphology were analyzed by Dynamic Light Scattering and Field Emission Scanning Electronic Microscopy. The results showed that the different treatments had a remarkable impact on the integrity of the silk fibroin chains, as confirmed by gel electrophoresis, which can be correlated with particle mean size and size distribution changes. The smallest nanoparticles (156 ± 3 nm) and the most negative Z potential (−30.2 ± 1.8 mV) were obtained with the combination of long treatment (2 h) of boiling in alkaline solution (Na 2 CO 3 0.02 eq/L). The study confirms that parameters of the process, such as the composition of the solution and time of the degumming step, must be controlled in order to reach an optimum reproducibility of the nanoparticle production.
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