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Diffusion Reflection and Fluorescence Lifetime ImagingMicroscopy Study of Fluorophore-ConjugatedGold Nanoparticles or Nanorods in Solid Phantoms

机译:扩散反射和荧光寿命成像荧光团结合的显微镜研究固体幻影中的金纳米颗粒或纳米棒

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摘要

In this paper we report the optical properties of fluorescein-conjugated gold nanoparticles (GNPs) in solid phantoms using diffusion reflection (DR) and fluorescence lifetime imaging microscopy (FLIM). The GNPs attached with fluorescein in solution were studied by fluorescence correlation spectroscopy. The intensity decays were recorded to reveal the fluorescence lifetime of fluorescein while in the near-field vicinity of the GNPs. The DR method was used to explore the solid phantoms containing GNPs, indicating the light propagation from the surface of solid phantoms. The resulting DR slopes of the reflected intensity showed the higher the GNP concentration, the bigger the slope. Fluorescence intensity, lifetime, and anisotropy images of solid phantoms were investigated by FLIM. The exploration of optical properties and molecular imaging combined with DR and FLIM methods is a new approach that has not been established until now. The combined DR–FLIM technique is expected to provide discrimination based on unique spectroscopic fingerprints of GNPs that could be utilized for cell imaging. Thispaper includes a combined study with a variety of methods, which maylead to multimodal imaging for surfaces (by FLIM) and deep penetration(up to cm by the DR) together.
机译:在本文中,我们使用扩散反射(DR)和荧光寿命成像显微镜(FLIM)报告了固体模体中荧光素共轭金纳米颗粒(GNP)的光学性质。通过荧光相关光谱研究溶液中附着有荧光素的GNP。记录强度衰减,以揭示在GNP的近场附近的荧光素的荧光寿命。 DR方法用于探索包含GNP的实体模型,指示光从实体模型的表面传播。反射强度的DR斜率表明GNP浓度越高,斜率越大。固体幻影的荧光强度,寿命和各向异性图像通过FLIM研究。结合DR和FLIM方法对光学性质和分子成像的探索是迄今为止尚未建立的新方法。结合DR-FLIM技术有望提供基于可用于细胞成像的GNP独特光谱指纹的鉴别。这个论文包括结合多种方法的研究,可能导致表面多模态成像(通过FLIM)和深度穿透(最多由DR厘米)。

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