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Fabrication of Bioactive Helix aspersa Extract-Loaded Chitosan-Based Bilayer Wound Dressings for Skin Tissue Regeneration

机译:制备用于皮肤组织再生的生物活性 Helix aspersa 载有提取物的双层伤口敷料

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摘要

In recent years, there has been a notable shift toward exploring plant and animal extracts for the fabrication of tissue engineering structures that seamlessly integrate with the human body, providing both biological compatibility and physical reinforcement. In this particular investigation, we synthesized bilayer wound dressings by incorporating snail (Helix aspersa) secretions, comprising mucus and slime, into chitosan matrices via lyophilization and electrospinning methodologies. A nanofiber layer was integrated on top of the porous structure to mimic the epidermal layer for keratinocyte activity as well as acting as an antibacterial barrier against possible infection, whereas a porous structure was designed to mimic the dermal microenvironment for fibroblast activity. Comprehensive assessments encompassing physical characterization, antimicrobial efficacy, in vitro bioactivity, and wound healing potential were conducted on these bilayer dressings. Our findings revealed that the mucus and slime extract loading significantly altered the morphology in terms of nanofiber diameter and average pore size. Snail extracts loaded on a nanofiber layer of bilayer dressings showed slight antimicrobial activity against Staphylococcus epidermidis and Escherichia coli. An in vitro release study of slime extract loaded in the nanofiber layer indicated that both groups 1 and 2 showed a burst release up to 6 h, and a sustained release was observed up to 96 h for group 1, whereas slime extract release from group 2 continued up to 72 h. In vitro bioactivity assays unveiled the favorable impact of mucus and slime extracts on NIH/3T3 fibroblast and HS2 keratinocyte cell attachment, proliferation, and glycosaminoglycan synthesis. Furthermore, our investigations utilizing the in vitro scratch assay showcased the proliferative and migratory effects of mucus and slime extracts on skin cells. Collectively, our results underscore the promising prospects of bioactive snail secretion-loaded chitosan constructs for facilitating skin regeneration and advancing wound healing therapies.
机译:近年来,人们开始探索植物和动物提取物,以制造与人体无缝集成的组织工程结构,提供生物相容性和物理增强。在这项特定的研究中,我们通过冻干和静电纺丝方法将包括粘液和粘液在内的蜗牛 (Helix aspersa) 分泌物掺入壳聚糖基质中,合成了双层伤口敷料。纳米纤维层集成在多孔结构的顶部,以模拟表皮层的角质形成细胞活性,并作为防止可能感染的抗菌屏障,而多孔结构被设计为模拟真皮微环境的成纤维细胞活性。对这些双层敷料进行了包括物理特性、抗菌功效、体外生物活性和伤口愈合潜力在内的综合评估。我们的研究结果表明,粘液和粘液提取物负载显着改变了纳米纤维直径和平均孔径方面的形态。负载在双层敷料纳米纤维层上的蜗牛提取物对表皮葡萄球菌和大肠杆菌显示出轻微的抗菌活性。纳米纤维层中负载的粘液提取物的体外释放研究表明,第 1 组和第 2 组均显示出长达 6 小时的突发释放,并且第 1 组观察到长达 96 小时的持续释放,而第 2 组的粘液提取物释放持续长达 72 小时。体外生物活性测定揭示了粘液和粘液提取物对 NIH/3T3 成纤维细胞和 HS2 角质形成细胞附着、增殖和糖胺聚糖合成的有利影响。此外,我们利用体外划痕测定法的研究展示了粘液和粘液提取物对皮肤细胞的增殖和迁移作用。总的来说,我们的结果强调了生物活性蜗牛分泌物壳聚糖构建体在促进皮肤再生和推进伤口愈合疗法方面的光明前景。

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