首页> 外文期刊>ACS nano >Nanocomposites containing silica-coated gold-silver nanocages and Yb-2,4-dimethoxyhematoporphyrin: Multifunctional capability of IR-luminescence detection, photosensitization, and photothermolysis
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Nanocomposites containing silica-coated gold-silver nanocages and Yb-2,4-dimethoxyhematoporphyrin: Multifunctional capability of IR-luminescence detection, photosensitization, and photothermolysis

机译:含有二氧化硅涂层的金银纳米笼和Yb-2,4-二甲氧基血卟啉的纳米复合材料:具有红外发光检测,光敏化和光热解的多功能功能

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摘要

We describe novel composite nanoparticles consisting of a gold-silver nanocage core and a mesoporous silica shell functionalized with the photodynamic sensitizer Yb-2,4-dimethoxyhematoporphyrin (Yb-HP). In addition to the long-wavelength plasmon resonance near 750-800 nm, the composite particles exhibited a 400-nm absorbance peak and two fluorescence peaks, near 580 and 630 nm, corresponding to bound Yb-HP. The fabricated nanocomposites generated singlet oxygen under 630-nm excitation and produced heat under laser irradiation at the plasmon resonance wavelength (750-800 nm). In particular, we observed enhanced killing of HeLa cells incubated with nanocomposites and irradiated by 630-nm light. Furthermore, an additional advantage of fabricated conjugates was an IR-luminescence band (900-1060 nm), originating from Yb~(3+) ions of bound Yb-HP and located in the long-wavelength part of the tissue transparency window. This modality was used to control the accumulation and biodistribution of composite particles in mice bearing Ehrlich carcinoma tumors in a comparative study with intravenously injected free Yb-HP molecules. Thus, these multifunctional nanocomposites seem an attractive theranostic platform for simultaneous IR-luminescence diagnostic and photodynamic therapy owing to Yb-HP and for plasmonic photothermal therapy owing to Au-Ag nanocages.
机译:我们描述了由金银纳米笼核和用光动力敏化剂Yb-2,4-二甲氧基血卟啉(Yb-HP)功能化的介孔二氧化硅壳组成的新型复合纳米颗粒。除了在750-800 nm附近的长波等离子体共振外,复合颗粒还显示了400 nm的吸收峰和580和630 nm附近的两个荧光峰,分别对应于结合的Yb-HP。所制备的纳米复合材料在630 nm激发下产生单线态氧,并在等离子共振波长(750-800 nm)的激光辐射下产生热量。特别是,我们观察到与纳米复合材料孵育并被630 nm光照射的HeLa细胞杀伤力增强。此外,制备的缀合物的另一个优点是红外发光带(900-1060 nm),其起源于结合的Yb-HP的Yb〜(3+)离子,位于组织透明窗的长波部分。在通过静脉注射游离Yb-HP分子进行的一项比较研究中,这种模式被用于控制携带艾氏癌肿瘤的小鼠中复合颗粒的积累和生物分布。因此,由于Yb-HP,这些多功能纳米复合材料似乎是用于同时进行IR发光诊断和光动力治疗以及由于Au-Ag纳米笼用于等离子光热疗法的有吸引力的治疗学平台。

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