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Design and evaluation of ciprofloxacin loaded collagen chitosan oxygenating scaffold for skin tissue engineering

机译:CIPROFLOXACIN加载胶原蛋白壳聚糖氧化支架的设计与评价皮肤组织工程

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摘要

Hypoxia and sepsis are key concerns towards modern regenerative medicine. Oxygen generating biomaterials having antibacterial property aims to answer these concerns. Hypoxia promotes reactive oxygen species at the implant site that delays wound healing. Sepsis in wound also contributes to delay in wound healing. Therefore, scaffold with antibacterial property and oxygen-producing capacities have shown ability to promote wound healing. In the present study oxygen releasing, ciprofloxacin loaded collagen chitosan scaffold was fabricated for sustained oxygen delivery. Calcium peroxide (CPO) acted as a chemical oxygen source. Oxygen release pattern exhibited a sustained release of oxygen with uniform deposition of CPO on the scaffold. The drug release study shows a prolonged, continuous, and sustained release of ciprofloxacin. Cell culture studies depict that scaffold has suitable cell attachment and migration properties for fibroblasts. In vivo studies performed in the skin flip model visually shows better wound healing and less necrosis. Histological studies show the maintenance of tissue architecture and the deposition of collagen. The results demonstrate that the proposed CPO coated ciprofloxacin loaded collagen-chitosan scaffold can be a promising candidate for skin tissue engineering.
机译:缺氧和败血症是现代再生医学的关键问题。产生具有抗菌性质的生物材料的氧气旨在回答这些问题。缺氧促进植入部位的反应性氧物种,延迟伤口愈合。伤口中的脓毒症也有助于延迟伤口愈合。因此,具有抗菌性和氧气生产能力的支架表明了促进伤口愈合的能力。在本研究氧气释放中,制造了CiProfloxacin负载胶原蛋白壳聚糖支架,用于持续氧递送。过氧化钙(CPO)用作化学氧源。氧释放图案表现出持续释放的氧气,在支架上具有均匀的CPO沉积。药物释放研究显示了环丙沙星的延长,连续和持续释放。细胞培养研究描绘了支架具有用于成纤维细胞的合适的细胞附着和迁移性质。在皮肤翻转模型中进行的体内研究视觉上显示出更好的伤口愈合和坏死。组织学研究表明,组织结构的维持和胶原蛋白的沉积。结果表明,所提出的CPO涂层加入CIPROFLOXACIN负载胶原蛋白 - 壳聚糖支架可以是皮肤组织工程的有希望的候选者。

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