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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Pathways to biomineralization and biodemineralization of calcium phosphates: the thermodynamic and kinetic controls
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Pathways to biomineralization and biodemineralization of calcium phosphates: the thermodynamic and kinetic controls

机译:磷酸钙生物矿化和生物脱矿质的途径:热力学和动力学控制

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Although extensive investigations of calcium phosphate crystallization have been performed, many have focused only on the final structures and morphologies and have not emphasized the need to consider the molecular contacts between mineral and matrix that drive nucleation nor the thermodynamic and kinetic controls imposed by matrix and soluble proteins during the nucleation stage. This review focuses on the earliest events of homo/heterogeneous nucleation from an initial supersaturated solution phase and subsequent growth. We also discuss how the combination of macroscopic constant composition (CC) and microscopic atomic force microscopy (AFM) provides insights into the physical mechanisms of crystal growth and phase stability and the influences of proteins, peptides or other small molecules. In addition, a new model for nanoscale enamel and bone demineralization suggests biodemineralization reactions may be inhibited or even suppressed when particle sizes fall into certain critical nanoscale levels. This size is not arbitrary; rather, it seems to give biominerals such as bones and teeth remarkable physical characteristics including self-preservation in the fluctuating physiological milieu.
机译:尽管已对磷酸钙结晶进行了广泛的研究,但许多研究仅集中于最终的结构和形态,而没有强调需要考虑矿物和基质之间的分子接触以驱动成核,也不考虑基质和可溶物施加的热力学和动力学控制。成核阶段的蛋白质。这篇综述集中在从最初的过饱和溶液阶段到随后的生长的同构/异相成核的最早事件。我们还将讨论宏观常数组成(CC)和微观原子力显微镜(AFM)的组合如何提供对晶体生长和相稳定性的物理机制以及蛋白质,肽或其他小分子的影响的见解。此外,一种用于纳米级搪瓷和骨骼脱矿质的新模型表明,当粒径降至某些关键的纳米级水平时,生物脱矿质化反应可能会受到抑制甚至抑制。这个大小不是任意的。相反,它似乎赋予骨骼和牙齿等生物矿物质卓越的物理特性,包括在波动的生理环境中的自我保护。

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