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The composition of bovine peritubular dentin: matching TOF-SIMS, scanning electron microscopy and biochemical component distributions. new light on peritubular dentin function.

机译:牛肾小管周围牙本质的组成:匹配的TOF-SIMS,扫描电子显微镜和生化成分分布。肾小管周围牙本质功能的新发现。

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Peritubular dentin (PTD) is a hypermineralized phase within the dentinal tubules in some vertebrate teeth as an interface between the intertubular dentin (ITD) and the cell processes. Our aim has been to understand the composition, structure and role of PTD as a mineralized tissue. We have utilized the technique of time of flight secondary ion mass spectrometry (TOF-SIMS) to map the distribution of positive and negative inorganic ions as well as organic components in the fully mineralized, intact PTD structure in bovine tooth cross-sections, and correlated these with scanning electron microscopy (SEM) in standard and backscatter modes. In recent work, we developed a procedure to freeze fracture the teeth and separate PTD from the less dense ITD by the use of aqueous sodium phosphotungstate step density gradients, after degrading the ITD collagen with NaOCl. Here, PTD-containing fragments were characterized by SEM and TOF-SIMS surface structure analysis. The TOF-SIMS data show that the isolated PTD doesnot contain collagen, but its surface is rich in glutamic acid-containing protein(s). The TOF-SIMS spectra also indicated that the intact PTD fragments contain phospholipids, and chemical analyses showed phosphatidylserine, phosphatidylinositol and phosphatidylcholine as the principal lipid components. In SEM sections, untreated PTD shows as a smooth collar around the tubule, but after digestion with ethylenediamine to remove all organic components, the porous nature of the mineral phase of small, thin platy apatite crystals becomes evident. Thus, the organic matrix of PTD appears to be a proteolipid-phospholipid complex.
机译:牙周牙本质(PTD)是某些脊椎动物牙齿的牙本质小管内的高度矿化阶段,是肾小管间牙本质(ITD)与细胞过程之间的界面。我们的目的是了解PTD作为矿化组织的组成,结构和作用。我们利用飞行时间二次离子质谱技术(TOF-SIMS)绘制了正和负无机离子以及有机成分在牛齿横截面中完全矿化,完整的PTD结构中的分布图,并进行了相关分析这些都采用标准和反向散射模式的扫描电子显微镜(SEM)。在最近的工作中,在用NaOCl降解ITD胶原蛋白之后,我们开发了一种程序来冻结牙齿的骨折,并通过使用磷钨酸钠水溶液的阶梯密度梯度将PTD与密度较小的ITD分开。在此,通过SEM和TOF-SIMS表面结构分析来表征含有PTD的片段。 TOF-SIMS数据显示,分离的PTD不包含胶原蛋白,但其表面富含富含谷氨酸的蛋白质。 TOF-SIMS光谱还表明完整的PTD片段含有磷脂,化学分析显示磷脂酰丝氨酸,磷脂酰肌醇和磷脂酰胆碱是主要脂质成分。在SEM切片中,未经处理的PTD在肾小管周围显示为光滑的颈圈,但是在用乙二胺消化以去除所有有机成分后,小的薄板状磷灰石晶体的矿物相具有多孔性质。因此,PTD的有机基质似乎是蛋白脂质-磷脂复合物。

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