评估涂有染料木素和尼古丁的可吸收缝合线的形态和生化特性的体外研究

Aditi Chopra, Anju Cecil, Rajalaksmanan Eshwaramoorthy, Rubin S. John
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引用次数: 0

摘要

导言和目的。炎症、细胞增殖、基质沉积和组织重塑都是结构合理、协调有序的伤口修复过程的要素。本研究的目的是分析染料木素和尼古丁对聚乙二醇酸(PGA)和 vicryl 缝合线的影响。材料和方法分离出染料木素和尼古丁并配制溶液,将缝合材料 PGA 和 vicryl 浸入溶液中并烘干。在人工唾液中浸泡后(第 1 天和第 14 天),测试缝合线的拉伸强度和降解值。此外,还在扫描电子显微镜(SEM)下观察了缝合线的均匀涂层,并使用蛋白质变性测定法和 2,2-二苯基-1-苦基肼测定法分别测试了染料木素和烟碱混合物配方的抗炎和抗氧化活性。结果显示尼古丁对缝合材料具有较高的抗炎活性,而染料木素的抗炎效果不明显。与对照组相比,混合配方的消炎效果较为相似。扫描电子显微镜分析表明,制剂在 PGA 和 vicryl 缝线上形成了均匀的涂层。相比之下,PGA 的拉伸强度较低,因此降解能力较强。结论尼古丁和染料木素会影响缝合线的拉伸强度和降解性能。
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An in vitro study for the evaluation of morphological and biochemical characteristics of absorbable sutures coated with genistein and nicotine
Introduction and aim. Inflammation, cell proliferation, matrix deposition, and tissue remodeling are all elements of the well-structured and well-coordinated process of wound repair. The aim of this study was to analyze the effect of genistein and nicotine on polyglycolic acid (PGA) and vicryl sutures. Material and methods. Genistein and nicotine were isolated and solution was prepared and the suture material PGA and vicryl were immersed in the solution and dried. They were tested for their tensile strength and degradation values after immersion in artificial saliva (on the first day and on the 14th day). The sutures were also seen under a scanning electron microscope (SEM) for its uniform coating and the mixture formulation of genistein and nicotine were tested for their anti-inflammatory and antioxidant activity using protein denaturation assay and 2,2-diphenyl-1-picrylhydrazyl assay respectively. Results. Nicotine has a high anti-inflammatory activity on the suture material, whereas Genistein has an insignificant anti-inflammatory effect. The mixture formulation has a relatively similar anti-inflammatory effect when compared to the control. The SEM analysis shows a uniform coating of the formulation on the PGA and vicryl sutures. In comparison, PGA has shown lesser tensile strength and hence higher degradation ability. Conclusion. Nicotine and Genistein affect the tensile strength and degradation properties of the sutures.
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