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Gold nanorods: contrast agents for photoacoustic imaging?

机译:金纳米棒:用于光声成像的造影剂?

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Gold nanorods are seen as possible contrast agents for photoacoustic imaging since they have strong absorption peaks at near-infrared wavelengths. Also they are easy to conjugate with various proteins. If these particles can be conjugated with cancer affinity proteins then these particles can accumulate specifically at a tumor site. By detecting the presence of accumulation of gold nanorods inside the tissue the indirect detection of tumor can be realized. When these particles are irradiated with light pulses of appropriate temporal properties and energy the temperature around these particles can be high enough to induce apoptosis or necrosis in the surrounding cells. In order to use these particles at their full potential we must determine precisely their optical properties. We simulated the optical properties of gold nanorods synthesized by us using the DDSCAT code. The simulated spectra agree qualitatively with the spectra determined using spectrometry and also determined using photoacoustic spectroscopy. Further the values of molar extinction coefficient derived from the simulations were similar to the data measured experimentally by other groups. These results validated qualitatively the model used in the simulations. During simulations we found that the choice of the dielectric function used in simulations plays an important role in the results.
机译:金纳米棒被认为是用于光声成像的可能的造影剂,因为它们在近红外波长处具有很强的吸收峰。而且它们易于与各种蛋白质缀合。如果这些颗粒可以与癌症亲和蛋白缀合,那么这些颗粒可以特异性地聚集在肿瘤部位。通过检测组织内金纳米棒的积累,可以实现肿瘤的间接检测。当用具有适当时间特性和能量的光脉冲照射这些粒子时,这些粒子周围的温度可能会很高,足以在周围细胞中诱导凋亡或坏死。为了充分利用这些粒子,我们必须精确地确定其光学性质。我们使用DDSCAT代码模拟了我们合成的金纳米棒的光学性质。模拟光谱与使用光谱法确定的光谱和使用光声光谱法确定的光谱在质量上一致。此外,由模拟得出的摩尔消光系数值与其他小组实验测得的数据相似。这些结果定性地验证了模拟中使用的模型。在仿真过程中,我们发现仿真中所用介电函数的选择在结果中起着重要作用。

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