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首页> 外文期刊>Indian Journal of Dental Research >Evaluation of matrix metalloproteinase and cysteine cathepsin activity in dentin hybrid layer by gelatin zymography
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Evaluation of matrix metalloproteinase and cysteine cathepsin activity in dentin hybrid layer by gelatin zymography

机译:明胶酶谱法评价牙本质杂合层基质金属蛋白酶和半胱氨酸组织蛋白酶的活性

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Aim: The aim of this study was to comparatively assess the gelatinolytic activity of matrix metalloproteinases(MMPs) and Cysteine Cathepsins (CCs) in the adhesive interface using etch and rinse adhesive at different time intervals using zymographic technique. Methodology: Twenty freshly extracted non-carious human third molars were used in this study. Occlusal surfaces were ground flat and 1mm thick horizontal dentin slabs were obtained from each tooth using a diamond disc. The dentin surface was polished with 600-grit silicon-carbide paper. Five out of 20 samples were directly pulverized. In the remaining fifteen samples, the dentin was etched and adhesive was applied and light cured according to the manufacturer's instructions. A 1mm thick flowable composite was build up and light cured. Bonded specimens were cut vertically into 3 to 4 dentin slabs by means of diamond disc to expose the adhesive/dentin interfaces. These were then ground down to 500 μm thick resin-dentin interface using a hard tissue microtome. These sections were then pulverised into powder. Following this, every five samples were subjected to zymographic analysis after 1 day, 7 days and 21 days. Results: Zymograms showed clear, thicker bands on all three isoforms in the etched samples compared to control samples at 1st and 7th day intervals and became inactive at 21st day for all three isoforms. MMP 9 activity was relatively higher when compared to CCs and MMP 2. Conclusion: Etch and rinse adhesive activated MMPs and CCs within the hybrid layer that remained active till 7th day and no gelatinolytic activity was found on 21st day and MMPs are more active compared to CCs and MMP-2.
机译:目的:本研究的目的是比较使用蚀刻技术和胶粘剂冲洗技术在胶粘剂界面中基质金属蛋白酶(MMPs)和半胱氨酸组织蛋白酶(CCs)在胶粘剂界面的明胶分解活性,并采用酶谱技术。方法:本研究使用二十个新鲜提取的非龋齿人类第三磨牙。咬合表面被磨平,并且使用金刚石盘从每颗牙齿获得1mm厚的水平牙本质板。牙本质表面用600目碳化硅纸抛光。将20个样品中的5个直接粉碎。在其余的15个样品中,根据制造商的说明对牙本质进行蚀刻,并施加粘合剂并进行光固化。积聚1mm厚的可流动复合材料并进行光固化。用金刚石盘将粘结的样品垂直切成3至4个牙本质板,以暴露粘合剂/牙本质界面。然后使用硬组织切片机将其磨碎至500μm厚的树脂-牙本质界面。然后将这些部分粉碎成粉末。此后,在第1天,第7天和第21天后,每五个样品进行酶谱分析。结果:与对照样品相比,在第1天和第7天间隔时,蚀刻样品中所有三种同工型的谱图均显示清晰,较粗的条带,而在21天时无活性这三个亚型的st 天。与CC和MMP 2相比,MMP 9的活性相对较高。结论:蚀刻和漂洗粘合剂层中活化的MMP和CC直到第7天都保持活性,而在21天未发现明胶分解活性。 st 天,与CC和MMP-2相比,MMP更活跃。

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