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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Physico-chemical properties and efficacy of silk fibroin fabric coated with different waxes as wound dressing
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Physico-chemical properties and efficacy of silk fibroin fabric coated with different waxes as wound dressing

机译:涂有不同蜡的丝素蛋白织物作为伤口敷料的理化性质和功效

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Silk fibroin (SF) has been widely used as a wound dressing material due to its suitable physical and biological characteristics. In this study, a non-adhesive wound dressing which applies to cover the wound surface as an absorbent pad that would absorb wound fluid while accelerate wound healing was developed. The modification of SF fabrics by wax coating was purposed to prepare the non-adhesive wound dressing that is required in order to minimize pain and risk of repeated injury. SF woven fabrics were coated with different types of waxes including shellac wax, beeswax, or carnauba wax. Physical and mechanical properties of the wax-coated SF fabrics were characterized. It was clearly observed that all waxes could be successfully coated on the SF fabrics, possibly due to the hydrophobic interactions between hydrophobic domains of SF and waxes. The wax coating improved tensile modulus and percentage of elongation of the SF fabrics due to the denser structure and the thicker fibers coated. The in vitro degradation study demonstrated that all wax-coated SF fabrics remained up to 90% of their original weights after 7 weeks of incubation in lysozyme solution under physiological conditions. The wax coating did not affect the degradation behavior of the SF fabrics. A peel test of the wax-coated SF fabrics was carried out in the partial- and full-thickness wounds of porcine skin in comparison to that of the commercial wound dressing. Any wax-coated SF fabrics were less adhesive than the control, as confirmed by less number of cells attached and less adhesive force. This might be that the wax-coated SF fabrics showed the hydrophobic property, allowing the loosely adherence to the hydrophilic wound surface. In addition, the in vivo biocompatibility test of the wax-coated SF fabrics was performed in Sprague-Dawley rats with subcutaneous model. The irritation scores indicated that the carnauba wax-coated SF fabric was not irritant while the shellac wax or beeswax-coated SF fabrics were slightly irritant, comparing with the commercial wound dressing. Therefore, SF fabrics coated with waxes, particularly carnauba wax, would be promising choices of non-adhesive wound dressing.
机译:丝素蛋白(SF)由于其合适的物理和生物学特性已被广泛用作伤口包扎材料。在这项研究中,开发了一种非粘性伤口敷料,该敷料可作为吸收垫覆盖伤口表面,该吸收垫可在加速伤口愈合的同时吸收伤口液。通过蜡涂层对SF织物进行改性的目的是制备非粘性伤口敷料,该敷料是为了最大程度地减少疼痛和重复伤害的风险。 SF机织织物涂有不同类型的蜡,包括虫胶蜡,蜂蜡或巴西棕榈蜡。表征了蜡涂覆的SF织物的物理和机械性能。清楚地观察到,所有的蜡都可以成功地涂覆在SF织物上,这可能是由于SF和蜡的疏水域之间的疏水相互作用所致。由于致密的结构和较厚的涂层纤维,蜡涂层改善了SF织物的拉伸模量和伸长率。体外降解研究表明,在生理条件下在溶菌酶溶液中孵育7周后,所有涂蜡的SF织物都保持其原始重量的90%。蜡涂层不影响SF织物的降解行为。与商业伤口敷料相比,在猪皮肤的部分和全层伤口中进行了涂蜡的SF织物的剥离测试。任何附着蜡的SF织物的粘合力都比对比例低,这是由附着的单元数较少和粘合力较小所证实的。这可能是因为涂蜡的SF织物显示出疏水性,从而允许其松散地粘附在亲水性伤口表面上。另外,在具有皮下模型的Sprague-Dawley大鼠中进行了蜡涂覆的SF织物的体内生物相容性测试。刺激性得分表明,与市售伤口敷料相比,巴西棕榈蜡涂层的SF织物没有刺激性,而虫胶蜡或蜂蜡涂层的SF织物则有轻微刺激性。因此,涂有蜡(特别是巴西棕榈蜡)的SF织物将成为非粘性伤口敷料的有前途的选择。

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