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Effects of Iron Oxide Nanoparticles: Cytotoxicity, Genotoxicity, Developmental Toxicity, and Neurotoxicity

机译:氧化铁纳米粒子的影响:细胞毒性,基因毒性,发育毒性和神经毒性

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Iron oxide nanoparticles (ION) with superparamagnetic properties hold great promise for use in various biomedical applications; specific examples include use as contrast agents for magnetic resonance imaging, in targeted drug delivery, and for induced hyperthermia cancer treatments. Increasing potential applications raise concerns over their potential effects on human health. Nevertheless, very little is currently known about the toxicity associated with exposure to these nanoparticles at different levels of biological organization. This article provides an overview of recent studies evaluating ION cytotoxicity, genotoxicity, developmental toxicity and neurotoxicity. Although the results of these studies are sometimes controversial, they generally indicate that surface coatings and particle size seem to be crucial for the observed ION-induced effects, as they are critical determinants of cellular responses and intensity of effects, and influence potential mechanisms of toxicity. The studies also suggest that some ION are safe for certain biomedical applications, while other uses need to be considered more carefully. Overall, the available studies provide insufficient evidence to fully assess the potential risks for human health related to ION exposure. Additional research in this area is required including studies on potential long-term effects. Environ. Mol. Mutagen. 56:125-148, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:具有超顺磁性的氧化铁纳米粒子(ION)在各种生物医学应用中具有广阔的前景。具体实例包括用作造影剂,用于磁共振成像,靶向药物递送以及用于诱导的高热癌治疗。越来越多的潜在应用引起了人们对其潜在危害人类健康的担忧。然而,目前对于在不同水平的生物组织中暴露于这些纳米颗粒相关的毒性知之甚少。本文概述了评估ION细胞毒性,遗传毒性,发育毒性和神经毒性的最新研究。尽管这些研究的结果有时会引起争议,但它们通常表明表面涂层和粒径对于观察到的ION诱导的效应似乎至关重要,因为它们是细胞应答和效应强度的关键决定因素,并影响潜在的毒性机制。研究还表明,某些离子对某些生物医学应用是安全的,而其他用途则需要更仔细地考虑。总体而言,现有研究提供的证据不足,无法全面评估与ION暴露相关的人体健康潜在风险。需要在该领域进行其他研究,包括对潜在的长期影响的研究。环境。大声笑诱变剂。 56:125-148,2015.(c)2014威利期刊公司

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