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Nanometallomics: an emerging field studying the biological effects of metal-related nanomaterials

机译:纳米金属组学:研究金属相关纳米材料的生物效应的新兴领域

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摘要

Metallomics, focusing on the global and systematic understanding of the metal uptake, trafficking, role and excretion in biological systems, has attracted more and more attention. Metal-related nanomaterials, including metallic and metal-containing nanomaterials, have unique properties compared to their micro-scaled counterparts and therefore require special attention. The small size effect, surface effect, and quantum size effect directly influence the physicochemical properties of nanostructured materials and their fate and behavior in biota. However, to our knowledge, the metallomics itself did not touch this special category of materials yet. Therefore, the term "nanometallomics'' is proposed and the systematic study on the absorption, distribution, metabolism, excretion (ADME) behavior of metal-related nanomaterials in biological systems and their interactions with genes, proteins and other biomolecules will be reviewed. The ADME behavior of metal-related nanomaterials in the biological systems is influenced by their physicochemical properties, the exposure route, and the microenvironment of the deposition site. Nanomaterials may not only interact directly or indirectly with genes, proteins and other molecules to cause DNA damage, genotoxicity, immunotoxicity, and cytotoxicity, but also stimulate the immune responses, circumvent tumor resistance and inhibit tumor metastasis. Nanometallomics needs to be integrated with other omics sciences, such as genomics, proteomics and metabolomics, to explore the biomedical data and obtain the overall knowledge of underlying mechanisms, and therefore to improve the application performance and to reduce the potential risk of metal-related nanomaterials.
机译:金属组学的重点是对生物系统中金属的吸收,贩运,作用和排泄的全局和系统的理解,这引起了越来越多的关注。与金属相关的纳米材料(包括金属和含金属的纳米材料)与其微尺度对应物相比具有独特的性能,因此需要特别注意。小尺寸效应,表面效应和量子尺寸效应直接影响纳米结构材料的物理化学性质及其在生物区系中的命运和行为。然而,据我们所知,金属学本身还没有涉及这种特殊的材料类别。因此,提出了“纳米金属组学”一词,并对有关金属相关纳米材料在生物系统中的吸收,分布,代谢,排泄(ADME)行为及其与基因,蛋白质和其他生物分子的相互作用的系统研究进行了综述。金属相关纳米材料在生物系统中的ADME行为受其物理化学性质,暴露途径和沉积位点的微环境影响,纳米材料不仅可能与基因,蛋白质和其他分子直接或间接相互作用,从而导致DNA损伤,遗传毒性,免疫毒性和细胞毒性,还可以刺激免疫反应,规避肿瘤抵抗力和抑制肿瘤转移,需要将纳米金属组学与其他组学结合起来,例如基因组学,蛋白质组学和代谢组学,以探索生物医学数据并获得整体知识的基础机制,从而提高应用程序性能并降低与金属相关的纳米材料的潜在风险。

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