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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Ruthenium nitrosyl grafted carbon dots as a fluorescence-trackable nanoplatform for visible light-controlled nitric oxide release and targeted intracellular delivery
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Ruthenium nitrosyl grafted carbon dots as a fluorescence-trackable nanoplatform for visible light-controlled nitric oxide release and targeted intracellular delivery

机译:钌亚硝基植被碳点作为可见光控制的一氧化氮释放和靶向细胞内递送的荧光可追踪纳米片。

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摘要

Nitric oxide (NO) plays a key role in various physiological and pathological processes. It is of great significance in developing a platform that enables exogenous delivery of NO spatiotemporally to a targeted site for realizing NO mediated therapy. We report herein a stable, multifunctional NO-delivery nanoplatform that is capable of target directing, fluorescence tracking, and light-controlled NO delivery. A ruthenium nitrosyl [Ru(TPYCOOH(o-phenylenediamine)(NO)](PF6)(3) and a target-directing molecule of folic acid (FA) were covalently grafted onto the surface of a carrier of carbon dots (CDs), forming a {Ru-NO@FA@CDs} nanoplatform. This nanoplatform is fluorescence self-trackable in a cellular environment and can recognize specific cancer cells via FA-folate receptor binding; it was selectively taken up by cancer cells to enter the cytosol, in which localized NO was produced on demand by adept control of visible light illumination. This offered the potential for treating diseases derived from NO deficiency as well as NO-mediated cancer therapy. (C) 2016 Elsevier Inc. All rights reserved.
机译:一氧化氮(NO)在各种生理和病理过程中起关键作用。在开发一个平台方面具有重要意义,该平台使得外源向靶向部位进行外源性递送,以实现无介导的治疗。我们在本文中报告了能够靶向,荧光跟踪和光控制的稳定的多功能无递送纳米片性,无递送。甲硝基氧基甲酰基[Ru(TPYCOOH(O-苯二胺)(NO)](NO)](PF6)(3)和叶酸(FA)的靶引导分子在碳点(CDS)的载体表面上共价接枝,形成{ru-no @ fa @ cds} nanoplatform。该纳米载体是荧光在细胞环境中自动可交换,并且可以通过Fa-叶酸受体结合识别特异性癌细胞;它被癌细胞选择性地占用癌细胞进入细胞溶质,其中通过擅长控制可见光照明的熟练控制而产生的本地化。这提供了治疗无缺乏症的疾病以及无介导的癌症治疗的可能性。(c)2016年Elsevier Inc.保留所有权利。

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