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Photoacoustic sentinel lymph node imaging with self-assembled copper neodecanoate nanoparticles

机译:自组装新癸酸铜纳米粒子的光声前哨淋巴结成像

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摘要

Photoacoustic tomography (PAT) is emerging as a novel, hybrid, and non-ionizing imaging modality because of its satisfactory spatial resolution and high soft tissue contrast. PAT combines the advantages of both optical and ultrasonic imaging methods. It opens up the possibilities for noninvasive staging of breast cancer and may replace sentinel lymph node (SLN) biopsy in clinic in the near future. In this work, we demonstrate for the first time that copper can be used as a contrast metal for near-infrared detection of SLN using PAT. A unique strategy is adopted to encapsulate multiple copies of Cu as organically soluble small molecule complexes within a phospholipid-entrapped nanoparticle. The nanoparticles assumed a size of 80-90 nm, which is the optimum hydrodynamic diameter for its distribution throughout the lymphatic systems. These particles provided at least 6-fold higher signal sensitivity in comparison to blood, which is a natural absorber of light. We also demonstrated that high SLN detection sensitivity with PAT can be achieved in a rodent model. This work clearly demonstrates for the first time the potential use of copper as an optical contrast agent.
机译:由于其令人满意的空间分辨率和较高的软组织对比度,光声层析成像(PAT)正在成为一种新颖的,混合的,非电离的成像方式。 PAT结合了光学和超声成像方法的优点。它为乳腺癌的非侵入性分期开辟了可能性,并可能在不久的将来取代临床上的前哨淋巴结(SLN)活检。在这项工作中,我们首次证明了铜可以用作使用PAT进行SLN近红外检测的对比金属。采用独特的策略将多拷贝的Cu包封为磷脂包裹的纳米颗粒内的有机可溶小分子复合物。纳米颗粒的大小假定为80-90 nm,这是其在整个淋巴系统中分布的最佳流体动力学直径。与自然吸收光的血液相比,这些粒子至少提供了至少6倍的信号灵敏度。我们还证明了在啮齿动物模型中可以实现具有PAT的高SLN检测灵敏度。这项工作首次清楚地证明了铜作为光学造影剂的潜在用途。

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