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首页> 外文期刊>Biomacromolecules >Electrospun Zwitterionic Poly(Sulfobetaine Methacrylate) for Nonadherent, Superabsorbent, and Antimicrobial Wound Dressing Applications
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Electrospun Zwitterionic Poly(Sulfobetaine Methacrylate) for Nonadherent, Superabsorbent, and Antimicrobial Wound Dressing Applications

机译:电纺两性离子聚(磺基甜菜碱甲基丙烯酸甲酯),用于非粘性,超吸收性和抗菌伤口敷料应用

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摘要

Zwitterionic poly(sulfobetaine methacrylate) (PSBMA) has been well studied for its superhydrophilic and ultralow biofouling properties, making it a promising material for superabsorbent and nonadherent wound dressings. Electrospinning provides multiple desirable features for wound dressings, including high absorptivity due to high surface-area-to-volume ratio, high gas permeation, and conformability to contour of the wound bed. The goal of this work is to develop a fibrous membrane of PSBMA via electrospinning and evaluate its properties related to wounddressing applications. Being superhydrophilic, PSBMA fibers fabricated by a conventional electrospinning method would readily dissolve in water, whereas if cross-linker is added, the formation of hydrogel would prevent electrospinning. A three-step polymerizatioh-electrospinning-photo-cross-linking process was developed in this work to fabricate the cross-linked electrospun PSBMA fibrous membrane. Such electrospun membrane was stable in water and exhibited high water absorption of 353% (w/w), whereas the PSBMA hydrogel only absorbed 81% water. The electrospun membrane showed strong resistance to protein adsorption and cell attachment. Bacterial adhesion studies using Gram negative P. aeruginosa and Gram positive S. epidermidis showed that the PSBMA electrospun membrane was also highly resistant to bacterial adhesion. The Ag~(+)-impregnated electrospun PSBMA membrane was shown microbicidal, against both S. epidermidis and P. aeruginosa. Such electrospun PSBMA membrane is ideal for a novel type of nonadherent, superabsorbent, and antimicrobial wound dressing. The superior water absorption aids in fluid removal from highly exudating wounds while keeping the wound hydrated to support healing. Because of the resistance to protein, cell, and bacterial adhesion, the dressing removal will neither cause patients' pain nor disturb the newly formed tissues. The dressing also prevents the attachment of environmental bacteria and offers broad-spectrum antimicrobial activity. It- is the first work to develop the water-stable electrospun PSBMA membrane, which has great potential for wound dressing and other applications.
机译:两性离子聚(甲基丙烯酸磺基甜菜碱酯)(PSBMA)具有超亲水性和超低生物结垢特性,因此已得到充分研究,使其成为超吸收性和非粘性伤口敷料的有前途的材料。电纺丝为伤口敷料提供了多种理想的功能,包括由于高的表面积/体积比而产生的高吸收性,高的气体渗透性以及对伤口床轮廓的适应性。这项工作的目的是通过静电纺丝开发PSBMA的纤维膜,并评估其与伤口敷料应用相关的特性。由于具有超亲水性,通过常规电纺丝方法制造的PSBMA纤维很容易溶于水,而如果添加交联剂,则水凝胶的形成将阻止电纺丝。在这项工作中,开发了一种三步聚合-静电纺丝-光交联工艺,以制备交联的电纺PSBMA纤维膜。这种电纺膜在水中是稳定的,并显示出353%(w / w)的高吸水率,而PSBMA水凝胶仅吸收81%的水。电纺膜对蛋白质的吸附和细胞附着表现出较强的抵抗力。使用革兰氏阴性铜绿假单胞菌和革兰氏阳性表皮葡萄球菌的细菌粘附研究表明,PSBMA电纺膜还高度耐细菌粘附。经Ag-(+)浸渍的静电纺丝PSBMA膜对表皮葡萄球菌和铜绿假单胞菌均具有杀菌作用。此类电纺PSBMA膜非常适合用于新型非粘附,超吸收和抗菌伤口敷料。优异的吸水率有助于从高度渗出的伤口中清除水分,同时使伤口保持水分,以支持伤口愈合。由于对蛋白质,细胞和细菌粘附的抵抗力,去除敷料既不会引起患者疼痛,也不会干扰新形成的组织。该敷料还防止环境细菌的附着并提供广谱抗菌活性。这是开发水稳定性电纺PSBMA膜的第一项工作,该膜在伤口敷料和其他应用方面具有巨大潜力。

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