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金属/金属氧化物纳米颗粒:与其物理状态相关的毒性问题及生物医学应用的修复方法

Metal/metal oxide nanoparticles: Toxicity concerns associated with their physical state and remediation for biomedical applications.

作者信息

Manuja Anju, Kumar Balvinder, Kumar Rajesh, Chhabra Dharvi, Ghosh Mayukh, Manuja Mayank, Brar Basanti, Pal Yash, Tripathi B N, Prasad Minakshi

机构信息

ICAR-National Research Centre on Equines Sirsa Road, Hisar, Haryana, India.

Lala Lajpat Rai University of Veterinary and Animal Sciences, Hisar, Haryana, 125004, India.

出版信息

Toxicol Rep. 2021 Nov 30;8:1970-1978. doi: 10.1016/j.toxrep.2021.11.020. eCollection 2021.

Abstract

Metal/metal oxide nanoparticles show promise for various applications, including diagnosis, treatment, theranostics, sensors, cosmetics, etc. Their altered chemical, optical, magnetic, and structural properties have differential toxicity profiles. Depending upon their physical state, these NPs can also change their properties due to alteration in pH, interaction with proteins, lipids, blood cells, and genetic material. Metallic nanomaterials (comprised of a single metal element) tend to be relatively stable and do not readily undergo dissolution. Contrarily, metal oxide and metal alloy-based nanomaterials tend to exhibit a lower degree of stability and are more susceptible to dissolution and ion release when introduced to a biological milieu, leading to reactive oxygen species production and oxidative stress to cells. Since NPs have considerable mobility in various biological tissues, the investigation related to their adverse effects is a critical issue and required to be appropriately addressed before their biomedical applications. Short and long-term toxicity assessment of metal/metal oxide nanoparticles or their nano-formulations is of paramount importance to ensure the global biome's safety; otherwise, to face a fiasco. This article provides a comprehensive introspection regarding the effects of metal/metal oxides' physical state, their surface properties, the possible mechanism of actions along with the potential future strategy for remediation of their toxic effects.

摘要

金属/金属氧化物纳米颗粒在包括诊断、治疗、诊疗一体化、传感器、化妆品等多种应用中展现出前景。它们改变的化学、光学、磁性和结构性质具有不同的毒性特征。根据它们的物理状态,这些纳米颗粒还会由于pH值的改变、与蛋白质、脂质、血细胞和遗传物质的相互作用而改变其性质。金属纳米材料(由单一金属元素组成)往往相对稳定,不容易发生溶解。相反,基于金属氧化物和金属合金的纳米材料往往表现出较低的稳定性,当引入生物环境时更容易发生溶解和离子释放,从而导致活性氧的产生和对细胞的氧化应激。由于纳米颗粒在各种生物组织中具有相当的流动性,与其不良影响相关的研究是一个关键问题,在其生物医学应用之前需要妥善解决。对金属/金属氧化物纳米颗粒或其纳米制剂进行短期和长期毒性评估对于确保全球生物群落的安全至关重要;否则,将面临失败。本文对金属/金属氧化物的物理状态、表面性质、可能的作用机制以及修复其毒性作用的潜在未来策略进行了全面反思。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c20b/8654697/c688f715d542/ga1.jpg

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