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首页> 外文期刊>International journal of applied mechanics >A Novel Multilayer Composite Membrane for Wound Healing in Mice Skin Defect Model
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A Novel Multilayer Composite Membrane for Wound Healing in Mice Skin Defect Model

机译:小鼠皮肤缺陷模型中伤口愈合的一种新型多层复合膜

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To develop a wound dressing material that conforms to the healing process, we prepared a multilayer composite (MC) membrane consisting of an antibacterial layer (ABL), a reinforcement layer (RFL), and a healing promotion layer (HPL). Biocompatible zein/ethyl cellulose (zein/EC) electrospun nanofibrous membranes with in situ loaded antibacterial photosensitizer protoporphyrin (PPIX) and healing promotion material vaccarin (Vac) were, respectively, chosen as the ABL on the surface and the HPL on the bottom, between which nonwoven incorporated bacterial cellulose (BC/PETN) as the HPL was intercalated to enhance the mechanical property. Photodynamic antibacterial activity against Staphylococcus aureus and Pseudomonas aeruginosa was confirmed by the enlarged inhibition zones; meanwhile, satisfactory biocompatibility of the HPL was verified by scanning electronic microscopy (SEM) of L929 cells cultured on its surface. The potential effects on wound healing in a mice skin defect model of the MC membranes were also evaluated. The animal experiments demonstrated that the wound healing rate in the MC group was significantly increased compared with that in the control group (p < 0.05). Histopathological observation revealed an alleviated inflammatory response, accompanied with vascular proliferation in the MC group. The MC membranes significantly promoted wound healing by creating an antibacterial environment and promoting angiogenesis. Taken together, this MC membrane may act as a promising wound dressing for skin wound healing.
机译:为了开发符合愈合过程的伤口敷料材料,我们制备了由抗菌层(ABL),加强层(RFL)和愈合促进层(HPL)组成的多层复合物(MC)膜。具有原位负载抗菌光敏剂原位(PPIX)和愈合促进材料疫苗(VAC)的生物相容性玉米蛋白/乙基纤维素(ZEIN / EC)纳米纤维膜(PPIX)和愈合促进材料(VAC),选择为表面上的ABL和底部之间的HPL嵌入其中作为HPL作为HPL的非织造结合的细菌纤维素(BC / PETN)以增强机械性能。抑制抑制区证实了对葡萄球菌金黄色葡萄球菌和假单胞菌铜绿假单胞菌的光动力抗菌活性;同时,通过在其表面上培养的L929细胞的电子显微镜(SEM)扫描HPL的令人满意的生物相容性。还评价了MC膜的小鼠皮肤缺陷模型中对伤口愈合的潜在影响。动物实验表明,与对照组相比,MC组中的伤口愈合速率显着增加(P <0.05)。组织病理学观察揭示了一种缓解的炎症反应,伴有MC组中的血管增殖。通过产生抗菌环境和促进血管生成,MC膜显着促进伤口愈合。连同,这种MC膜可以充当一种有希望的伤口敷料,用于皮肤伤口愈合。

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