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Development of a new chitosan hydrogel for wound dressing.

机译:发展一个新的壳聚糖水凝胶对伤口调料。

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摘要

Wound healing is a complex process involving an integrated response by many different cell types and growth factors in order to achieve rapid restoration of skin architecture and function. The present study evaluated the applicability of a chitosan hydrogel (CH) as a wound dressing. Scanning electron microscopy analysis was used to characterize CH morphology. Fibroblast cells isolated from rat skin were used to assess the cytotoxicity of the hydrogel. CH was able to promote cell adhesion and proliferation. Cell viability studies showed that the hydrogel and its degradation by-products are noncytotoxic. The evaluation of the applicability of CH in the treatment of dermal burns in Wistar rats was performed by induction of full-thickness transcutaneous dermal wounds. Wound healing was monitored through macroscopic and histological analysis. From macroscopic analysis, the wound beds of the animals treated with CH were considerably smaller than those of the controls. Histological analysis revealed lack of a reactive or a granulomatous inflammatory reaction in skin lesions with CH and the absence of pathological abnormalities in the organs obtained by necropsy, which supported the local and systemic histocompatibility of the biomaterial. The present results suggest that this biomaterial may aid the re-establishment of skin architecture.
机译:伤口愈合是一个复杂的过程,其中牵涉到一个综合反应许多不同的细胞类型为了实现快速和经济增长因素恢复皮肤的结构和功能。本研究评估的适用性壳聚糖水凝胶(CH)作为伤口敷料。利用扫描电子显微镜分析CH形态的特点。分离大鼠皮肤被用来评估水凝胶的细胞毒性。促进细胞粘附和增殖。可行性研究表明水凝胶其降解noncytotoxic副产品。CH的适用性的评价Wistar鼠皮肤烧伤的治疗由全层的感应经皮的皮肤伤口。通过宏观监控和组织学分析。床上的动物对待CH相比小得多的控制。组织学分析显示缺乏反应或在皮肤肉芽肿性炎症反应病变与CH和病态的缺失器官通过验尸,异常支持本地和系统性生物材料的组织相容性。结果表明,这种生物材料帮助重建肌肤架构。

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