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Sedimentary rocks in our mouth: dental pulp stones made by nanobacteria

机译:我们的嘴里的沉积岩:肺曲杆菌制成的牙髓结石

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The mechanisms of dental pulp stone formation are still largely unknown. Pulp stones are mainly composed of carbonate apatite. Only few experimental reports have elucidated the potential of some selected bacteria to produce apatite under in vitro conditions using special calcification media. The tested stone forming bacteria were, in fact, often better known for their cariogenic potential. Our preliminary work with 18 dental pulp stones from Turkey, selected only by severity of the stone formation, indicated the presence of nanobacterial antigens in the demineralized stones. Furthermore, high incidence of kidney stones and gall stones in the patient group and in their parents was found. This raises the implication that nanobacteria may enter the body also via oral route, in addition to the parenteral and transplacental routes. The role of nanobacteria in dental pulp stone formation was further studied by following nanobacterial colonization and mineral formation on human tooth in vitro. Two molar teeth, one having pulp stone and one without, were vertically cut into two pieces, sterilized by autoclaving and incubated with or without nanobacteria in DMEM. Electron microscopic observations indicate that nanobacteria can cause apatite stone formation on tooth surface. The sever from of dental pulp stone formation might be associated with nanobacteria. This form of dental disease results in loss of teeth due to osteolytic processes. This addresses the necessity for a study on unconventional mineral-forming bacteria as a cause for human diseases.
机译:牙科纸浆石形成机制仍然很大程度上是未知的。纸浆石材主要由碳酸盐磷灰石组成。只有很少的实验报告阐明了一些选定细菌的潜力在使用特殊钙化培养基的体外条件下生产磷灰石。事实上,测试的石头形成细菌通常是致癌潜力所知的。我们与土耳其的18个牙髓结石的初步合作,只能通过石头形成的严重程度选择,表明了脱矿石中的纳米杆菌抗原。此外,发现患者组和父母中的肾结石和胆石的发病率高。除了肠胃外和移分途径之外,这提高了纳米杆菌也可以通过口腔进入身体的含义。纳米杆菌定植和体外矿物质矿物质形成进一步研究纳米杆菌在牙髓石形成中的作用。两个磨牙,一个具有纸浆的牙齿,一个没有纸浆,一个没有,垂直切成两块,通过高压灭菌灭菌并与DMEM中的纳米菌孵育或没有纳米菌。电子显微镜观察表明纳米杆菌可以在牙齿表面上引起磷灰石石形成。牙浆石形成的切断可能与纳米菌有关。这种形式的牙科疾病导致由于骨质溶解过程导致牙齿的损失。这解决了作为人类疾病原因的非传统矿物形成细菌的研究的必要性。

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