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Noninvasive Photoacoustic and Fluorescence Sentinel Lymph Node Identification using Dye-Loaded Perfluorocarbon Nanoparticles

机译:使用染料全氟化碳纳米粒子的无创光声和荧光前哨淋巴结鉴定

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摘要

The contrast mechanisms used for photoacoustic tomography (PAT) and fluorescence imaging differ in subtle, but significant, ways. The design of contrast agents for each or both modalities requires an understanding of the spectral characteristics as well as intra- and intermolecular interactions that occur during formulation. We found that fluorescence quenching that occurs in the formulation of near-infrared (NIR) fluorescent dyes in nanoparticles results in enhanced contrast for PAT. The ability of the new PAT method to utilize strongly absorbing chromophores for signal generation allowed us to convert a highly fluorescent dye into an exceptionally high PA contrast material. Spectroscopic characterization of the developed NIR dye-loaded perfluorocarbon-based nanoparticles for combined fluorescence and PA imaging revealed distinct dye-dependent photophysical behavior. We demonstrate that the enhanced contrast allows detection of regional lymph nodes of rats in vivo with time-domain optical and photoacoustic imaging methods. The results further show that the use of fluorescence lifetime imaging, which is less dependent on fluorescence intensity, provides a strategic approach to bridge the disparate contrast reporting mechanisms of fluorescence and PA imaging methods.
机译:用于光声层析成像(PAT)和荧光成像的对比机制在微妙但重要的方式上有所不同。针对每种或两种形式的造影剂的设计都需要了解光谱特征以及配制过程中发生的分子内和分子间相互作用。我们发现在纳米粒子中近红外(NIR)荧光染料的配方中发生的荧光猝灭导致PAT的对比度增强。新的PAT方法利用强吸收性生色团产生信号的能力使我们能够将高荧光染料转换为异常高PA的对比材料。结合NIR染料的全氟化碳纳米粒子的光谱表征,用于荧光和PA成像相结合,揭示了独特的染料依赖性光物理行为。我们证明增强的对比度允许使用时域光学和光声成像方法在体内检测大鼠的区域淋巴结。结果进一步表明,荧光寿命成像的使用较少依赖荧光强度,为桥接荧光和PA成像方法的不同对比报告机制提供了一种战略方法。

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