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Cu-Au alloy nanostructures coated with aptamers: a simple, stable and highly effective platform for in vivo cancer theranostics

机译:Cu-Au合金纳米结构涂层与寡核苷酸适配子:一个简单、稳定、高效的平台体内癌症开展

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As a star material in cancer theranostics, photoresponsive gold (Au) nanostructures may still have drawbacks, such as low thermal conductivity, irradiation-induced melting effect and high cost. To solve the problem, copper (Cu) with a much higher thermal conductivity and lower cost was introduced to generate a novel Cu-Au alloy nanostructure produced by a simple, gentle and one-pot synthetic method. Having the good qualities of both Cu and Au, the irregularly-shaped Cu-Au alloy nanostructures showed several advantages over traditional Au nanorods, including a broad and intense near-infrared (NIR) absorption band from 400 to 1100 nm, an excellent heating performance under laser irradiation at different wavelengths and even a notable photostability against melting. Then, via a simple conjugation of fluorophore-labeled aptamers on the Cu-Au alloy nanostructures, active targeting and signal output were simultaneously introduced, thus constructing a theranostic platform based on fluorophore-labeled, aptamer-coated Cu-Au alloy nanostructures. By using human leukemia CCRF-CEM cancer and Cy5-labeled aptamer Sgc8c (Cy5-Sgc8c) as the model, a selective fluorescence imaging and NIR photothermal therapy was successfully realized for both in vitro cancer cells and in vivo tumor tissues. It was revealed that Cy5-Sgc8c-coated Cu-Au alloy nanostructures were not only capable of robust target recognition and stable signal output for molecular imaging in complex biological systems, but also killed target cancer cells in mice with only five minutes of 980 nm irradiation. The platform was found to be simple, stable, biocompatible and highly effective, and shows great potential as a versatile tool for cancer theranostics.
机译:作为一个明星材料在癌症开展,光敏黄金(Au)纳米结构仍然有缺点,如低热电导率,irradiation-induced融化的效果和高成本。有更高的热导率和低介绍了生成一个小说Cu-Au成本合金纳米结构由一个简单的、温柔和锅合成方法。铜和非盟的品质形状不规则的Cu-Au合金纳米结构传统非盟显示几个优势纳米棒,包括一个广泛和激烈从400年到近红外(NIR)吸收带1100海里,一个优秀的加热下的性能在不同的波长与激光辐照甚至一个显著的耐光性对融化。然后,通过一个简单的结合fluorophore-labeled寡核苷酸适配子Cu-Au合金纳米结构,积极的目标和信号输出同时引入,因此构建一个基于theranostic平台fluorophore-labeled, aptamer-coated Cu-Au合金纳米结构。癌症和Cy5-labeled适配子Sgc8c (Cy5-Sgc8c)作为选择性荧光成像模型,和近红外光照治疗是成功的对体外肿瘤细胞和实现体内肿瘤组织。Cy5-Sgc8c-coated Cu-Au合金纳米结构不仅能够强健的目标识别和稳定的分子成像的信号输出复杂的生物系统,但也被杀害了目标肿瘤细胞在老鼠身上只有五个分钟的980 nm辐照。发现是简单,稳定,生物相容性,作为一种高效,显示了巨大的潜力多用途工具开展癌症。

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