Mazzoni A, Mannello F, Tay F R, Tonti G A M, Papa S, Mazzotti G, Di Lenarda R, Pashley D H, Breschi L
Department of SAU & FAL, University of Bologna, Italy.
J Dent Res. 2007 May;86(5):436-40. doi: 10.1177/154405910708600509.
The role and function of dentin matrix metalloproteinases (MMPs) are not well-understood, but they may play a key role in dentinal caries and the degradation of resin-bonded dentin matrices. To test the null hypothesis that MMP-9 is not found in dentin matrix, we used gelatin zymography to extract and isolate all molecular forms of gelatinolytic MMPs in demineralized mature sound dentin powder obtained from extracted human molars, characterizing and identifying the enzymes by Western blotting. Gelatinolytic MMPs were detected in extracts of demineralized dentin matrix and identified as MMP-2 and MMP-9. Acidic extracts (pH 2.3) yielded 3-8 times more MMP activity than did EDTA (pH 7.4). Their activation may contribute to dentin matrix degradation, which occurs during caries progression and following resin bonding. Inhibition of MMP-2 and -9 proteolytic activity may slow caries progression and increase the durability of resin-dentin bonds.
牙本质基质金属蛋白酶(MMPs)的作用和功能尚未完全明确,但它们可能在牙本质龋以及树脂粘结牙本质基质的降解过程中发挥关键作用。为了验证牙本质基质中不存在MMP - 9这一零假设,我们采用明胶酶谱法从拔除的人类磨牙获取的脱矿成熟健康牙本质粉末中提取并分离出所有具有明胶溶解活性的MMP分子形式,通过蛋白质印迹法对这些酶进行表征和鉴定。在脱矿牙本质基质提取物中检测到了具有明胶溶解活性的MMPs,并鉴定为MMP - 2和MMP - 9。酸性提取物(pH 2.3)产生的MMP活性比EDTA(pH 7.4)提取物高3至8倍。它们的激活可能导致牙本质基质降解,这种降解发生在龋病进展过程以及树脂粘结之后。抑制MMP - 2和 - 9的蛋白水解活性可能会减缓龋病进展并提高树脂与牙本质粘结的耐久性。