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Molecularly stabilised ultrasmall gold nanoparticles: synthesis, characterization and bioactivity

机译:分子稳定超黄金纳米粒子:合成、表征和生物活性

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Gold nanoparticles (AuNPs) are widely used as contrast agents in electron microscopy as well as for diagnostic tests. Due to their unique optical and electrical properties and their small size, there is also a growing field of potential applications in medical fields of imaging and therapy, for example as drug carriers or as active compounds in thermotherapy. Besides their intrinsic optical properties, facile surface decoration with (bio) functional ligands renders AuNPs ideally suited for many industrial and medical applications. However, novel AuNPs may have toxicological profiles differing from bulk and therefore a thorough analysis of the quantitative structure-activity relationship (QSAR) is required. Several mechanisms are proposed that cause adverse effects of nanoparticles in biological systems. Catalytic generation of reactive species due to the large and chemically active surface area of nanomaterials is well established. Because nanoparticles approach the size of biological molecules and subcellular structures, they may overcome natural barriers by active or passive uptake. Ultrasmall AuNPs with sizes of 2 nm or less may even behave as molecular ligands. These types of potential interactions would imply a size and ligand-dependent behaviour of any nanomaterial towards biological systems. Thus, to fully understand their QSAR, AuNPs bioactivity should be analysed in biological systems of increasing complexity ranging from cell culture to whole animal studies.
机译:金纳米粒子(AuNPs)被广泛用作在电子显微镜以及造影剂诊断测试。和电气性能及其体积小,还有一个增长领域的潜力应用在医学成像和领域治疗,例如作为药物载体或在温热疗法活性化合物。固有光学特性,肤浅的表面装饰与功能配体(生物)呈现许多工业和AuNPs适合医学应用。毒理学资料不同于散货吗因此彻底的分析定量结构活性关系(构象)是必需的。提出造成不利的影响纳米粒子在生物系统。代的活性物种由于大和化学活性表面积纳米材料已经确立。纳米颗粒大小的生物方法分子和亚细胞结构,他们可能通过主动或被动克服自然障碍吸收。少甚至可能像分子配体。意味着一个潜在的交互类型任何的大小和ligand-dependent行为纳米材料对生物系统。定量构效关系,充分理解他们AuNPs生物活性应该分析生物系统的从细胞培养不断增长的复杂性整体动物实验。

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