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丝-锂蒙脱石纤维膜上两性离子角蛋白涂层用于引导骨再生。

Zwitterionic keratin coating on silk-Laponite fibrous membranes for guided bone regeneration.

机构信息

Department of Materials Engineering, Isfahan University of Technology, Isfahan, Iran.

Department of Textile Engineering, Isfahan University of Technology, Isfahan, Iran.

出版信息

J Tissue Eng Regen Med. 2022 Nov;16(11):1019-1031. doi: 10.1002/term.3350. Epub 2022 Sep 12.

Abstract

Implant-related infection is one of the main challenges in periodontal diseases. According to the zwitterionic properties of keratin, we aim to develop guided bone regeneration (GBR) membrane with antibacterial and bioactivity properties using a keratin coating. In this study, electrospun silk fibroin (SF)-Laponite (LAP) fibrous membranes were developed as GBR membranes, and keratin extracted from sheep wool was electrosprayed on them. Here, the role of electrospraying time (2, 3, and 4h) on the properties of the GBR membranes was investigated. After physicochemical characterization of the keratin-modified membranes, in vitro bioactivity and degradation rate of the membranes were studied in simulated body fluid and phosphate buffer saline, respectively. Moreover, proliferation and differentiation of mesenchymal stem cells were evaluated in contact with the keratin-modified SF-LAP membrane. Finally, the antibacterial activity of membranes against gram-positive bacteria (Staphylococcus aureus) was investigated. Results demonstrated the successful formation of homogeneous wool keratin coating on SF-LAP fibrous membranes using a simple electrospray process. While wool keratin coating significantly enhanced the elongation and hydrophilicity of the SF-LAP membrane, the mechanical strength was not changed. In addition, keratin coating significantly improved the bioactivity and degradation rate of SF-LAP membranes, owing to the carboxyl groups of amino acids in keratin coating. In addition, the synergic role of LAP nanoparticles and keratin coating drastically improved osteoblast proliferation and differentiation. Finally, the zwitterionic property of wool keratin coating originating from their equal positive (NH ) and negative (COO ) charges considerably improved the antibacterial activity of the SF-LAP membrane. Overall, keratin-coated SF-LAP fibrous membranes with significant mechanical and biological properties could have the potential for GBR membranes.

摘要

植入物相关感染是牙周病的主要挑战之一。根据角蛋白的两性离子特性,我们旨在开发具有抗菌和生物活性特性的引导骨再生(GBR)膜,方法是使用角蛋白涂层。在这项研究中,开发了电纺丝素(SF)-皂土(LAP)纤维膜作为 GBR 膜,并将从羊毛中提取的角蛋白电喷在其上。在这里,研究了电喷时间(2、3 和 4 小时)对 GBR 膜性能的影响。对角蛋白修饰膜进行理化特性表征后,分别在模拟体液和磷酸盐缓冲盐水中研究了膜的体外生物活性和降解率。此外,还评估了间充质干细胞与角蛋白修饰的 SF-LAP 膜接触时的增殖和分化。最后,研究了膜对革兰氏阳性菌(金黄色葡萄球菌)的抗菌活性。结果表明,使用简单的电喷工艺成功地在 SF-LAP 纤维膜上形成了均匀的羊毛角蛋白涂层。虽然羊毛角蛋白涂层显著提高了 SF-LAP 膜的伸长率和亲水性,但机械强度没有改变。此外,角蛋白涂层显著提高了 SF-LAP 膜的生物活性和降解率,这归因于角蛋白涂层中氨基酸的羧基。此外,LAP 纳米粒子和角蛋白涂层的协同作用极大地促进了成骨细胞的增殖和分化。最后,角蛋白涂层的两性离子特性源自其相等的正(NH )和负(COO )电荷,极大地提高了 SF-LAP 膜的抗菌活性。总体而言,具有显著机械和生物学特性的角蛋白涂覆 SF-LAP 纤维膜可能具有 GBR 膜的潜力。

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