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Amelogenin Nanoparticles in Suspension: Deviations from Spherical Shape and pH-Dependent Aggregation

机译:悬浮液中的Amelogenin纳米颗粒:球形形状和pH依赖性聚集的偏离

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摘要

It is well-known that amelogenin self-assembles to form nanoparticles, usually referred to as amelogenin nanospheres, despite the fact that not much is known about their actual shape in solution. In the current paper, we combine SAXS and DLS to study the three-dimensional shape of the recombinant amelogenins rP172 and rM179. Our results show for the first time that amelogenins build oblate nanoparticles in suspension using experimental approaches that do not require the proteins to be in contact with a support material surface. The SAXS studies give evidence for the existence of isolated amelogenin nano-oblates with aspect ratios in the range of 0.45−0.5 at pH values higher than pH 7.2 and show an aggregation of these nano-oblates at lower pH values. The role of the observed oblate shape in the formation of chain-like structures at physiological conditions is discussed as a key factor in the biomineralization of dental enamel.
机译:众所周知,牙釉蛋白自组装形成纳米颗粒,通常被称为牙釉蛋白纳米球,尽管事实并不十分了解它们在溶液中的实际形状。在本文中,我们结合了SAXS和DLS来研究重组釉蛋白原rP172和rM179的三维形状。我们的结果首次显示,牙釉蛋白可使用不需要蛋白质与支撑材料表面接触的实验方法,在悬浮液中构建扁圆形的纳米颗粒。 SAXS研究提供了在高于pH 7.2的pH值下长宽比在0.45-0.5范围内的分离的釉原蛋白纳米扁桃的证据,并显示了在较低pH值下这些纳米扁桃的聚集。讨论观察到的扁圆形在生理条件下形成链状结构中的作用,是牙釉质生物矿化的关键因素。

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