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首页> 外文期刊>Progress in crystal growth and characterization of materials >The role of silica and alkaline earth metals with biomolecules in the biomineralization processes: the eggshell's formation and the crystallization in vivo for x-ray crystallography
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The role of silica and alkaline earth metals with biomolecules in the biomineralization processes: the eggshell's formation and the crystallization in vivo for x-ray crystallography

机译:二氧化硅和碱土金属与生物分子在生物矿化过程中的作用:蛋壳的形成和体内X射线晶体学结晶

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This contribution is a scientific journey divided into three parts. In the first part, we review the role that silica biomorphs of alkaline earth metals have played in the formation of complex structures as a reminiscence of the chemistry of the primitive life on Earth. These biomorphs, and their variety of forms synthesized by simple chemical reactions, can nowadays be experimentally used to explain some mechanisms of biomineralization in living organisms. In the second part, we review the role of calcium carbonates in the formation of eggshells in avian. The mechanism of the mineral eggshell's formation of the biogenic calcite deposited on an organic matrix is revised. The competitive crystal growth mechanism of the mineralized part orientates these crystals preserving the semispherical shape of the egg. We are using these eggshell formations as a second model to understand the biomineralization processes in Nature. The third and final part is about the importance that biomineralization concepts have to produce hybrid materials for the future. This has allowed us to obtain tailored size control of complex morphologies by synthetic chemical procedures that give rise to these new materials' specific forms and ad hoc properties. We conclude this part with the advantage of knowing the biological mechanisms, based on molecular biology concepts, to obtain protein crystals in vivo and in cellulo techniques. Both methods use the cellular machinery of growing biocrystals in specialized cells that have evolved through millions of years. This new way of producing protein crystals has been trending topic for modern crystallography when using the facilities of the X-ray free-electron lasers (four generation of synchrotrons) for megahertz serial crystallography.
机译:这一贡献是一个科学的旅程,分为三个部分。在第一部分中,我们回顾了碱土金属的二氧化硅生物形态在复杂结构的形成中所起的作用,这使人想起了地球上原始生命的化学反应。这些生物形态及其通过简单的化学反应合成的各种形式,如今可以通过实验用于解释活生物体中生物矿化的某些机制。在第二部分中,我们回顾了碳酸钙在禽蛋壳形成中的作用。修订了沉积在有机基质上的生物方解石矿物蛋壳形成的机理。矿化部分的竞争性晶体生长机制使这些晶体取向,从而保留了蛋的半球形形状。我们将这些蛋壳形成作为第二个模型来了解自然界中的生物矿化过程。第三部分也是最后一部分是关于生物矿化概念对于未来生产混合材料的重要性。这使我们能够通过合成化学程序获得量身定制的复杂形态尺寸控制,从而产生这些新材料的特定形式和特殊性能。我们以了解基于分子生物学概念的生物学机制以在体内和纤维素技术中获得蛋白质晶体的优势总结这一部分。两种方法都使用了已经发展了数百万年的专门细胞中生长生物晶体的细胞机制。当使用X射线自由电子激光器(第四代同步加速器)进行兆赫兹串行晶体学研究时,这种生产蛋白质晶体的新方法已成为现代晶体学研究的趋势。

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