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用于潜在控制尿布疹的醋酸纤维素/木质素//N-香草亚基苯基噻唑铜(II)配合物生物活性三组分纳米纤维

Bioactive tri-component nanofibers from cellulose acetate/lignin//N-vanillidene-phenylthiazole copper-(II) complex for potential diaper dermatitis control.

作者信息

Elsherbiny Dalia A, Abdelgawad Abdelrahman M, El-Naggar Mehrez E, Hemdan Bahaa A, Ghazanfari Samaneh, Jockenhövel Stefan, Rojas Orlando J

机构信息

Menoufia University, Faculty of Science, Chemistry Department, Shebin El-Koom, Menoufia, Egypt; Aachen-Maastricht Institute for Biobased Materials, Faculty of Science and Engineering, Maastricht University, the Netherlands.

Textile Research and Technology Institute, National Research Centre, 33 El-Bohouth St., Dokki, Giza 12622, Egypt; Department of Forest Biomaterials, College of Natural Resources, North Carolina State University, Raleigh, NC 27607, USA.

出版信息

Int J Biol Macromol. 2022 Apr 30;205:703-718. doi: 10.1016/j.ijbiomac.2022.02.192. Epub 2022 Mar 4.

Abstract

Current research targets innovative medical textiles of nanofibrous nature and antibacterial activity to prevent diaper dermatitis. The work is based on electrospun nanofibers from cellulose acetate (CA) and lignin (Lig) polymers. A series of new copper complexes were synthesized and loaded to the CA/Lig solution mix then subjected to electrospinning, giving rise to the tricomponent bioactive mats CA/Lig/Cu-complex. The surface morphology of electrospun nanofiber mats was smooth and homogenous as the concentration of lignin increased in the mixture. The incorporation of lignin improved the electrospinnability of the cellulose acetate; however, it increased the fiber diameter. The water contact angle, absorption underload were significantly improved as lignin content increased. The incorporation of Cu-complex in electrospun CA and CA/Lig fiber mats occurred without any substantial change in the surface morphology, indicating well encapsulation of the complex. The electrospun mats were active against Pseudomonas aeruginosa, Acinetobacter baumannii, Staphylococcus epidermidis, and Streptococcus faecalis. The cytotoxicity, protein leakage, and biological results, together with the above studies, would advocate copper complex loaded CA/Lig nanofibers as a potential candidate for hygienic applications.

摘要

当前的研究目标是开发具有纳米纤维特性和抗菌活性的创新型医用纺织品,以预防尿布疹。这项工作基于由醋酸纤维素(CA)和木质素(Lig)聚合物制成的电纺纳米纤维。合成了一系列新型铜配合物,并将其负载到CA/Lig溶液混合物中,然后进行静电纺丝,得到了三元生物活性垫CA/Lig/Cu-配合物。随着混合物中木质素浓度的增加,电纺纳米纤维垫的表面形态变得光滑且均匀。木质素的加入改善了醋酸纤维素的可纺性;然而,它增加了纤维直径。随着木质素含量的增加,水接触角、吸收负荷显著改善。在电纺CA和CA/Lig纤维垫中加入铜配合物后,表面形态没有任何实质性变化,表明该配合物被很好地封装。电纺垫对铜绿假单胞菌、鲍曼不动杆菌、表皮葡萄球菌和粪肠球菌具有活性。细胞毒性、蛋白质泄漏和生物学结果,以及上述研究,都表明负载铜配合物的CA/Lig纳米纤维是卫生应用的潜在候选材料。

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