Cell reactivity to different silica.

Marco Giovine, Sonia Scarfì, Marina Pozzolini, Antonella Penna, Carlo Cerrano
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引用次数: 7

Abstract

The interaction between mineral structures and living beings is increasingly attracting the interest of research. The formation of skeletons, geomicrobiology, the study of the origin of life, soil biology, benthos biology, human and mammalian diseases generated by the inhalation of dust and biomaterials are some examples of scientific areas where the topic has a relevance. In this chapter we focus on cell reactivity to siliceous rocks and to the various forms of silicon dioxide, in particular. The examples here reported carefully review how such minerals may strongly affect different living beings, from simple ones to humans. The biomineralogy concept is explained, focusing on the effects of rocks on cell growth and development. The toxic action of silicon dioxide in mammalian lungs is the oldest evidence of crystalline silica bioactivity. More recently, we could demonstrate that crystalline silica has a deep impact on cell biology throughout the whole animal kingdom. One of the most illustrative case studies is the marine sponge Chondrosia reniformis, which has the amazing ability to incorporate and etch crystalline silica releasing dissolved silicates in the medium. This specific and selective action is due to the chemical reaction of ascorbic acid with quartz surfaces. One consequence of this is an increased production of collagen. The discovery of this mechanism opened the door to a new understanding of silica toxicity for animal cells and mammalian cells in particular. The presence of silica in sea water and substrates also affects processes like the settlement of larvae and the growth of diatoms. The following sections review all such aspects.

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细胞对不同二氧化硅的反应性。
矿物结构与生物之间的相互作用日益引起人们的研究兴趣。骨骼的形成、地球微生物学、生命起源研究、土壤生物学、底栖生物生物学、吸入灰尘和生物材料引起的人类和哺乳动物疾病,都是与本专题有关的科学领域的一些例子。在本章中,我们着重于细胞对硅质岩石的反应性,特别是对各种形式的二氧化硅的反应性。这里报告的例子仔细审查了这些矿物质如何强烈地影响从简单生物到人类的不同生物。解释了生物矿物学的概念,重点是岩石对细胞生长和发育的影响。二氧化硅对哺乳动物肺部的毒性作用是二氧化硅晶体生物活性最古老的证据。最近,我们可以证明结晶二氧化硅对整个动物王国的细胞生物学有深刻的影响。最具说服力的案例研究之一是海绵肾状软骨,它具有结合和蚀刻结晶二氧化硅的惊人能力,释放介质中溶解的硅酸盐。这种特异性和选择性作用是由于抗坏血酸与石英表面的化学反应。这样做的一个后果是胶原蛋白的生成增加。这一机制的发现打开了一扇门,使人们对动物细胞和哺乳动物细胞的二氧化硅毒性有了新的认识。海水和基质中二氧化硅的存在也会影响幼虫的沉降和硅藻的生长等过程。下面几节将回顾所有这些方面。
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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
7
期刊介绍: Molecular biology has been providing an overwhelming amount of data on the structural components and molecular machineries of the cell and its organelles and the complexity of intra- and intercellular communication. The molecular basis of hereditary and acquired diseases is beginning to be unravelled, and profound new insights into development and evolutionary biology have been gained from molecular approaches. Progress in Molecular and Subcellular Biology summarises the most recent developments in this fascinating area of biology.
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