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Nanoparticles and potential neurotoxicity: focus on molecular mechanisms

机译:纳米粒子和潜在的神经毒性:关注分子机制

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The last decades have seen an explosive increase in the development of nanoparticles and in their use in consumer, industrial and medical applications. Their fast diffusion has also raised widespread concern about the potential toxic effects on living organisms, including humans: at the nanoscale, they can interact with subcellular components such as membranes, proteins, lipids, nucleic acids, thus inducing unpredicted functional perturbations in cells and tissues. The nervous tissue is a particular sensitive target, because its cellular components (mainly neurons and glial cells) are tightly regulated and metabolically exigent biological entities. While the literature on the potential toxicity of nanoparticles has grown in parallel with their utilization, the available data on neurotoxicity are less abundant. In particular, information on the neuronal molecular targets of nanoparticles is still largely incomplete. A better understanding of this issue is highly relevant for the rational and controlled design of nanoparticles, both for their general utilization and more specifically for their use in the promising field of nanoneuromedicine. In this review, we will discuss the available information on the mechanisms involved in the interaction between nanoobjects and cells of the nervous system, focusing on the known molecular actors, both at the plasma membrane and in intracellular compartments.
机译:在过去的几十年中,纳米颗粒的发展及其在消费,工业和医疗应用中的使用呈爆炸性增长。它们的快速扩散也引起了人们对包括人类在内的活生物体潜在毒性影响的广泛关注:在纳米级,它们可以与亚细胞成分(如膜,蛋白质,脂质,核酸)相互作用,从而在细胞和组织中引起无法预测的功能扰动。神经组织是一个特别敏感的目标,因为它的细胞成分(主要是神经元和神经胶质细胞)受到严格调节,并且代谢活跃。尽管有关纳米颗粒潜在毒性的文献与应用并行增长,但有关神经毒性的可用数据却较少。特别地,关于纳米颗粒的神经元分子靶标的信息仍然很大程度上不完整。对纳米粒子的合理和可控设计,无论是其一般用途,还是更具体地讲,它们在有前景的纳米神经芥中药领域的使用,对这一问题的更好理解都是至关重要的。在这篇综述中,我们将讨论有关纳米物体与神经系统细胞之间相互作用的机制的可用信息,重点关注质膜和细胞内区室中的已知分子。

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