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首页> 外文期刊>Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology >Bridge over troubled waters: Understanding the synthetic and biological identities of engineered nanomaterials
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Bridge over troubled waters: Understanding the synthetic and biological identities of engineered nanomaterials

机译:桥梁在混乱的水域上:了解工程纳米材料的合成和生物学特性

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摘要

Engineered nanomaterials offer exciting opportunities for 'smart' drug delivery and in vivo imaging of disease processes, as well as in regenerative medicine. The ability to manipulate matter at the nanoscale enables many new properties that are both desirable and exploitable, but the same properties could also give rise to unexpected toxicities that may adversely affect human health. Understanding the physicochemical properties that drive toxicological outcomes is a formidable challenge as it is not trivial to separate and, hence, to pinpoint individual material characteristics of nanomaterials. In addition, nanomaterials that interact with biological systems are likely to acquire a surface corona of biomolecules that may dictate their biological behavior. Indeed, we propose that it is the combination of material-intrinsic properties (the 'synthetic identity') and context-dependent properties determined, in part, by the bio-corona of a given biological compartment (the 'biological identity') that will determine the interactions of engineered nanomaterials with cells and tissues and subsequent outcomes. The delineation of these entwined 'identities' of engineered nanomaterials constitutes the bridge between nanotoxicological research and nanomedicine. WIREs Nanomed Nanobiotechnol 2013, 5:111-129. doi: 10.1002/wnan.1206 For further resources related to this article, please visit the WIREs website.
机译:工程纳米材料为“智能”药物输送和疾病过程的体内成像以及再生医学提供了令人兴奋的机会。在纳米级上操纵物质的能力实现了许多新特性,这些新特性既是理想的又是可利用的,但是相同的特性也可能会产生意想不到的毒性,可能会对人体健康产生不利影响。了解驱动毒理学结果的物理化学特性是一个艰巨的挑战,因为分离并确定纳米材料的各个材料特性并非易事。另外,与生物系统相互作用的纳米材料可能会获得生物分子的表面电晕,从而决定其生物学行为。实际上,我们提出,材料固有属性(“合成身份”)和上下文相关属性的组合(部分由给定生物区隔的生物电晕(“生物身份”)决定)将是确定工程纳米材料与细胞和组织的相互作用以及随后的结果。对工程纳米材料交织在一起的“身份”的描绘,构成了纳米毒理学研究与纳米医学之间的桥梁。电线Nanomed Nanobiotechnol 2013,5:111-129。电话:10.1002 / wnan.1206有关本文的更多资源,请访问WIREs网站。

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