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Biochemical investigation of some proteins from human primary teeth to evaluate heavy metal pollution

机译:从人牙牙齿中一些蛋白质的生化研究评价重金属污染

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This investigation is based on the premise that heavy metals are sequestered by the mineral phase of teeth [1,2], hydroxyapatite, during their formation and there is a relation between heavy metal pollution and progressive destruction of human primary tooth. Our study was carried out on temporary molars - sound and carious - extracted from children up to 6 year old, residing in an area of Romania known to be highly polluted with heavy metals (Pb and Cd). In carious dentin extracts we found increased levels of collagen type 1 and alkaline phosphatase activity that can be correlated with the remineralization processus during teeth decay. Gelatin zymography shown increased MMP-1 (type-I collagenase) and MMP-2 (gelatinase-A) activities only in dentin extract from carious teeth isolated from children residing in a highly polluted area, suggesting their role in pathological extracellular matrix (ECM) remodeling and degradation processes in the progression of carious decay.
机译:该研究基于将重金属被牙齿的矿物相[1,2],羟基磷灰石在形成期间对矿物相来隔离的前提,并且在重金属污染和人原发性牙齿的逐步破坏之间存在关系。我们的研究是在临时臼齿上进行的 - 声音和龋齿 - 从最多6岁的儿童提取,居住在罗马尼亚的一个地区,该区域被重金属(Pb和Cd)受到高度污染的。在龋齿牙本质提取物中,我们发现胶原1型和碱性磷酸酶活性的水平增加,其在牙齿衰减期间可以与再矿化处理有关的胶原磷酸酶活性。明胶酶沉思显示的MMP-1(I型胶原酶)和MMP-2(Gelatinase-A)的活性仅在营养患儿中分离的龋齿摘要,表明它们在病理细胞外基质(ECM)中的作用龋腐烂进展中的重塑与降解过程。

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