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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Gold nanorod-enhanced two-photon excitation fluorescence of conjugated oligomers for two-photon imaging guided photodynamic therapy
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Gold nanorod-enhanced two-photon excitation fluorescence of conjugated oligomers for two-photon imaging guided photodynamic therapy

机译:用于双光子成像引导光动力疗法的共轭低聚物的金纳米棒 - 增强的双光子激发荧光

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摘要

Plasmon enhanced optical properties achieved by using metal nanoparticles are both fundamentally important and appealing for many biological and photonic applications. Although metal-enhanced onephoton excitation fluorescence and two-photon absorption have been previously demonstrated, up to now there are few reports on the overall two-photon excitation fluorescence enhancement by plasmon resonance. Conjugated polymers and oligomers are known to display large two-photon absorption cross-sections. Here we report plasmon-enhanced two-photon excitation fluorescence and singlet oxygen generation of a conjugated oligomer obtained by using gold nanorods in a core-shell structure. The separation between the metal core and the conjugated oligomer molecules was adjusted by varying the thickness of the spacer from 8.5 to 45 nm to achieve an optimized enhancement effect. The one- and two-photon excitation fluorescence intensities of the conjugated oligomer were found to be strongly dependent on the silica shell thickness. The optimum two-photon excitation fluorescence enhancement occurs at a shell thickness of 15 nm with an enhancement factor of 14.2. These core-shell nanostructures also exhibit significantly improved singlet oxygen generation capability under two-photon excitation. The application of these nanoparticles as effective imaging agents for two-photon cell imaging and as nano-photosensitizers for two-photon photodynamic therapy with improved efficiency has been demonstrated on HepG2 cells using the XTT assay. The remarkable two-photon excitation fluorescence enhancement property of these nanoparticles makes them promising agents for two-photon imaging guided phototherapy.
机译:通过使用金属纳米颗粒实现的等离子体增强的光学性质对于许多生物和光子应用来说,通过金属纳米颗粒实现的基本要重要性和吸引力。虽然先前已经演示了金属增强的一种型激发荧光和双光子吸收,但到目前为止,通过等离子体共振的总体二光子激发荧光增强甚至几乎没有报道。已知缀合的聚合物和低聚物显示出大的双光子吸收横截面。在这里,我们报告了通过在核心壳结构中使用金纳米棒获得的共轭低聚物的血浆增强的双光子激发荧光和单线氧产生。通过改变8.5至45nm的间隔物的厚度来调节金属芯和共轭低聚物分子之间的分离,以获得优化的增强效果。发现缀合的低聚物的单光子激发荧光强度强烈依赖于二氧化硅壳厚度。最佳的双光子励磁荧光增强荧光增强发生在15nm的壳体厚度,增强因子为14.2。这些核 - 壳纳米结构在双光子激发下也表现出显着改善的单线次氧产生能力。使用XTT测定,在HepG2细胞上证明了这些纳米颗粒作为双光子细胞成像的有效成像剂和作为双光子光动力学治疗的纳米光敏剂的施用和作为具有改善的效率的纳米光敏。这些纳米颗粒的显着的双光子激发荧光增强性能使它们具有前景的双光子成像引导光疗法的有前途的药剂。

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