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近红外光介导的通过氧化石墨烯向氢氧化铁/氧化铁的电子转移来增强活性氧生成。

Near infrared light-mediated enhancement of reactive oxygen species generation through electron transfer from graphene oxide to iron hydroxide/oxide.

机构信息

Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, Hsinchu, 30013, Taiwan, Republic of China.

出版信息

Nanoscale. 2017 Jan 26;9(4):1559-1566. doi: 10.1039/c6nr08784a.

Abstract

Clinical applications of current photodynamic therapy (PDT) agents are often restricted to be activated only by UV and visible light, which have very poor tissue penetration depths. In this study, a new near infrared (NIR)-absorbing nanoagent based on graphene oxide decorated with iron hydroxide/oxide (GO-FeOH) was developed for light-activated nanomaterial-mediated PDT. This nanocomposite, GO-FeOH was prepared via the one-step electrooxidation of iron nails in an aqueous GO solution. The as-prepared GO-FeOH showed a much higher reactive oxygen species (ROS) activity under NIR light irradiation than GO. Through a variety of spectroscopic analyses, the mechanism involved in the enhancement of ROS activity of GO by FeOH was systematically investigated. We observed that NIR light irradiation promotes electron transfer from GO to the Fe(iii) of FeOH and accelerates their reaction with O, forming superoxide anion radicals, which then undergo a disproportionation reaction to produce HO. HO then reacts with Fe(ii) in FeOH to mediate Fenton reactions, producing amplified hydroxyl radicals. Using in vitro studies, we demonstrated that GO-FeOH can be used as a NIR activatable PDT nanoagent, providing efficient cancer therapy.

摘要

目前光动力疗法 (PDT) 剂的临床应用通常仅限于仅由紫外线和可见光激活,它们的组织穿透深度非常有限。在这项研究中,开发了一种基于氧化石墨烯 (GO) 修饰的氧化铁/氧化亚铁 (GO-FeOH) 的新型近红外 (NIR) 吸收纳米剂,用于光激活纳米材料介导的 PDT。该纳米复合材料 GO-FeOH 通过在 GO 水溶液中铁钉的一步电氧化制备。与 GO 相比,所制备的 GO-FeOH 在 NIR 光照射下表现出更高的活性氧 (ROS) 活性。通过各种光谱分析,系统研究了 FeOH 增强 GO 的 ROS 活性的机制。我们观察到,NIR 光照射促进了从 GO 到 FeOH 的 Fe(iii)的电子转移,并加速了它们与 O 的反应,形成超氧阴离子自由基,然后发生歧化反应生成 HO。HO 然后与 FeOH 中的 Fe(ii)反应,介导 Fenton 反应,产生放大的羟基自由基。通过体外研究,我们证明 GO-FeOH 可用作 NIR 可激活的 PDT 纳米剂,提供有效的癌症治疗。

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