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高纵横比金纳米棒表现出增强的细胞内化和表面化学介导的细胞毒性。

High aspect ratio gold nanorods displayed augmented cellular internalization and surface chemistry mediated cytotoxicity.

机构信息

711th Human Performance Wing, Molecular Bioeffects Branch, Wright-Patterson AFB, OH 45433, USA.

出版信息

Mater Sci Eng C Mater Biol Appl. 2013 Oct;33(7):4094-100. doi: 10.1016/j.msec.2013.05.056. Epub 2013 Jun 6.

Abstract

Due to their unique properties, gold nanorods (GNRs) have shown tremendous potential for advancing bio-imaging and sensing applications. As these nanoparticles display size-dependent optical properties, high aspect ratio GNRs are of particular interest for these applications because of their increased scattering contrast. While studies are emerging that demonstrate successful synthesis of high aspect ratio GNRs, their behavior and fate in a physiological environment has yet to be investigated. The goal of this study was to evaluate the rate of cellular internalization and cytotoxicity of long GNRs (aspect ratio 32) in a human keratinocyte cell line. Additionally, the critical role of surface chemistry in extent of cellular interactions and cytotoxicity was evaluated. Through comparison with aspect ratio 3 GNRs, it was identified that high aspect ratio GNRs displayed enhanced cellular internalization. Furthermore, surface functionalization dictated the quantity of GNRs internalized, with tannic acid having a significant increase over polyethylene glycol. However, the augmented intracellular concentration identified with long, tannic acid GNRs resulted in a considerable degree of cytotoxicity, which was not associated with other GNR conditions. Therefore, while the inclusion of high aspect ratio GNRs may increase the capabilities for nano-based applications, there exist some unintentional toxicological consequences that must also be considered.

摘要

由于其独特的性质,金纳米棒(GNRs)在生物成像和传感应用方面显示出了巨大的潜力。由于这些纳米颗粒具有尺寸依赖性的光学性质,高纵横比的 GNR 因其增加的散射对比度而成为这些应用的特别关注点。尽管有研究表明成功合成了高纵横比的 GNR,但它们在生理环境中的行为和命运尚未得到研究。本研究的目的是评估长 GNR(纵横比 32)在人角质形成细胞系中的细胞内化速率和细胞毒性。此外,还评估了表面化学在细胞相互作用和细胞毒性程度中的关键作用。通过与纵横比为 3 的 GNR 进行比较,发现高纵横比的 GNR 显示出增强的细胞内化。此外,表面功能化决定了 GNR 的内化数量,其中单宁酸的内化数量明显高于聚乙二醇。然而,在长的、单宁酸 GNR 中识别出的增加的细胞内浓度导致了相当程度的细胞毒性,这与其他 GNR 条件无关。因此,虽然包含高纵横比的 GNR 可能会增加基于纳米的应用的能力,但也存在一些不可避免的毒理学后果,也必须加以考虑。

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