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Biocompatibility of the Biopolymer Cyanoflan for Applications in Skin Wound Healing

机译:生物聚合物氰化物的生物相容性用于皮肤伤口愈合中的应用

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摘要

There is a great demand for the development of novel wound dressings to overcome the time and costs of wound care performed by a vast number of clinicians, especially in the current overburdened healthcare systems. In this study, Cyanoflan, a biopolymer secreted by a marine unicellular cyanobacterium, was evaluated as a potential biomaterial for wound healing. Cyanoflan effects on cell viability, apoptosis, and migration were assessed in vitro, while the effect on tissue regeneration and biosafety was evaluated in healthy Wistar rats. The cell viability and apoptosis of fibroblasts and endothelial cells was not influenced by the treatment with different concentrations of Cyanoflan, as observed by flow cytometry. Moreover, the presence of Cyanoflan did not affect cell motility and migratory capacity, nor did it induce reactive oxygen species production, even revealing an antioxidant behavior regarding the endothelial cells. Furthermore, the skin wound healing in vivo assay demonstrated that Cyanoflan perfectly adapted to the wound bed without inducing systemic or local oxidative or inflammatory reaction. Altogether, these results suggest that Cyanoflan is a promising biopolymer for the development of innovative applications to overcome the many challenges that still exist in skin wound healing.
机译:对新型伤口敷料的发展有很大的需求,以克服大量临床医生进行的伤口护理的时间和成本,特别是在目前的负担过重的医疗保健系统中。在该研究中,由海绵单细胞分泌的生物聚合物,被母船分泌的生物聚合物评价为伤口愈合的潜在生物材料。在体外评估氰基对细胞活力,细胞凋亡和迁移的影响,而在健康的Wistar大鼠中评估了对组织再生和生物安全的影响。通过流式细胞术观察到的具有不同浓度的氰化物的治疗不影响成纤维细胞和内皮细胞的细胞活力和细胞凋亡。此外,氰化兰的存在不影响细胞运动性和迁移能力,也没有诱导活性氧物种生产,甚至露起关于内皮细胞的抗氧化行为。此外,体内测定中的皮肤伤口愈合表明,氰化兰完美地适应伤口床而不诱导全身或局部氧化或炎症反应。总共,这些结果表明,Cyanoflan是一个有助于的生物聚合物,用于开发创新应用,以克服皮肤伤口愈合仍然存在的许多挑战。

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