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A synergistic biocomposite for wound healing and decreasing scar size based on sol-gel alumina

机译:基于溶胶-凝胶氧化铝的增效生物复合材料,可用于伤口愈合和减小疤痕大小

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The synthesis of new biocomposites exhibiting a synergistic effect is a promising step in the healing of acute and chronic wounds. In the present study we have combined four materials: chlorhexidine digluconate as a antimicrobial agent, lidocaine as a painkiller, chymotrypsin as a necrolytic agent, and sol-gel processed alumina as a carrier for the sustained delivery of drugs and as an established wound healer. Composites were synthesized and characterized for surface morphology, crystalline structure and in vitro drug release. In vivo wound healing efficacy was assessed using a full thickness excision wound model in Wistar rats. The main result, was that a marked decrease in scar size was observed because of the wound healing composite, in fact the area of the scar in the test group of rats was 2.4 times smaller than that in the control group. Wound closure analysis revealed that complete epithelialization was observed after 15 +/- 1 days using the biocomposite, whereas this took 17 +/- 1 days and 19 +/- 1 days using the healing solution alone or pure alumina gel, respectively. It was concluded that the synergistic combination of healing drugs, with sol-gel alumina as dressing material, provides a highly attractive biomaterial for the treatment of surface wounds, burns and foot ulcers.
机译:表现出协同作用的新生物复合材料的合成是急性和慢性伤口愈合中的有希望的步骤。在本研究中,我们结合了四种材料:氯己定二葡萄糖酸酯作为抗微生物剂,利多卡因作为止痛剂,胰凝乳蛋白酶作为坏死剂以及溶胶-凝胶处理的氧化铝作为载体,用于持续递送药物和作为已确立的伤口愈合剂。合成了复合材料,并对其表面形态,晶体结构和体外药物释放进行了表征。在Wistar大鼠中,使用全厚度切除伤口模型评估了体内伤口的愈合功效。主要结果是,由于伤口愈合复合材料,观察到疤痕大小明显减少,实际上,试验组大鼠的疤痕面积比对照组小2.4倍。伤口闭合分析显示,使用生物复合材料在15 +/- 1天后观察到完全上皮形成,而单独使用愈合溶液或纯氧化铝凝胶分别需要17 +/- 1天和19 +/- 1天。结论是,康复药物与溶胶-凝胶氧化铝作为敷料的协同结合,为治疗表面伤口,烧伤和足溃疡提供了极具吸引力的生物材料。

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