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Shape and structure controlling of calcium oxalate crystals by a combination of additives in the process of biomineralization

机译:生物矿化过程中通过添加添加剂控制草酸钙晶体的形状和结构

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The origin of complex hierarchical superstructures of biomaterials and their unique self-assembly mechanisms of formation are important in biological systems and have attracted considerable attention. In the present study, we investigated the morphological changes of calcium oxalate (CaO _( x ) ) crystals induced by additives including chiral aspartic acid, sodium citrate, Mg ~(2+) , casein and combinations of these molecules. The morphology and structure of CaO _( x ) were identified with the use of various techniques. The morphogenesis of CaO _( x ) crystals were significantly affected by chiral aspartic acid, sodium citrate or Mg ~(2+) . However, they only formed calcium oxalate monohydrate (COM). It was observed that the chiral aspartic acid, sodium citrate and casein adhered to the surface of the crystals. The adherence of Mg ~(2+) to crystals was not evident. Casein significantly affected the formation of COM and calcium oxalate dihydrate (COD). The ratio of different CaO _( x ) crystal forms is associated with the casein concentration. In combination with Mg ~(2+) or citrate ions, casein showed improved formation of COD. The present study mimics biomineralization with a simple chemical approach and provides insight into the complicated system of CaO _( x ) biomineralization as well as facilitates the understanding of urinary stone treatment.
机译:生物材料复杂的上层建筑的起源及其独特的自组装形成机制在生物系统中很重要,并引起了广泛的关注。在本研究中,我们研究了由手性天冬氨酸,柠檬酸钠,Mg〜(2+),酪蛋白和这些分子的组合等添加剂引起的草酸钙(CaO _(x))晶体的形态变化。 CaO _(x)的形态和结构已通过使用各种技术进行了鉴定。 CaO _(x)晶体的形态发生受到手性天冬氨酸,柠檬酸钠或Mg〜(2+)的显着影响。但是,它们仅形成草酸钙一水合物(COM)。观察到手性天冬氨酸,柠檬酸钠和酪蛋白粘附于晶体表面。 Mg〜(2+)对晶体的附着不明显。酪蛋白显着影响COM和草酸二水合物(COD)的形成。 CaO_(x)晶体形式的不同比例与酪蛋白浓度有关。与Mg〜(2+)或柠檬酸根离子结合使用时,酪蛋白显示出改善的COD形成。本研究通过简单的化学方法模拟生物矿化作用,并提供对CaO _(x)生物矿化作用复杂系统的见识,并有助于对尿结石治疗的理解。

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