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In vivo photothermal optical coherence tomography of gold nanorod contrast agents

机译:金纳米棒造影剂的体内光热光学相干断层扫描

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摘要

Photothermal optical coherence tomography (PT-OCT) is a potentially powerful tool for molecular imaging. Here, we characterize PT-OCT imaging of gold nanorod (GNR) contrast agents in phantoms, and we apply these techniques for in vivo GNR imaging. The PT-OCT signal was compared to the bio-heat equation in phantoms, and in vivo PT-OCT images were acquired from subcutaneous 400 pM GNR Matrigel injections into mice. Experiments revealed that PT-OCT signals varied as predicted by the bio-heat equation, with significant PT-OCT signal increases at 7.5 pM GNR compared to a scattering control (p 0.01) while imaging in common path configuration. In vivo PT-OCT images demonstrated an appreciable increase in signal in the presence of GNRs compared to controls. Additionally, in vivo PT-OCT GNR signals were spatially distinct from blood vessels imaged with Doppler OCT. We anticipate that the demonstrated in vivo PT-OCT sensitivity to GNR contrast agents is sufficient to image molecular expression in vivo. Therefore, this work demonstrates the translation of PT-OCT to in vivo imaging and represents the next step towards its use as an in vivo molecular imaging tool.
机译:光热光学相干断层扫描(PT-OCT)是分子成像的潜在强大工具。在这里,我们表征幻影中的金纳米棒(GNR)造影剂的PT-OCT成像,并将这些技术应用于体内GNR成像。将PT-OCT信号与幻象中的生物热方程进行比较,并从小鼠皮下注射400 pM GNR Matrigel获得体内PT-OCT图像。实验表明,PT-OCT信号随生物热方程式的预测而变化,与常规控制成像中的散射控制相比,PT-OCT信号在7.5 pM GNR时显着增加(p <0.01)。与对照组相比,在体内存在GNR的情况下,体内PT-OCT图像显示信号明显增加。此外,体内PT-OCT GNR信号在空间上不同于用多普勒OCT成像的血管。我们预期已证明的对GNR造影剂的体内PT-OCT敏感性足以在体内成像分子表达。因此,这项工作证明了PT-OCT向体内成像的转化,并代表了将其用作体内分子成像工具的下一步。

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