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Semiconducting polymer nanoparticles as photoacoustic molecular imaging probes in living mice

机译:半导体聚合物纳米颗粒作为活体小鼠的光声分子成像探针

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Photoacoustic imaging holds great promise for the visualization of physiology and pathology at the molecular level with deep tissue penetration and fine spatial resolution. To fully utilize this potential, photoacoustic molecular imaging probes have to be developed. Here, we introduce near-infrared light absorbing semiconducting polymer nanoparticles as a new class of contrast agents for photoacoustic molecular imaging. These nanoparticles can produce a stronger signal than the commonly used single-walled carbon nanotubes and gold nanorods on a per mass basis, permitting whole-body lymphnode photoacoustic mapping in living mice at a low systemic injection mass. Furthermore, the semiconducting polymer nanoparticles possess high structural flexibility, narrow photoacoustic spectral profiles and strong resistance to photodegradation and oxidation, enabling the development of the first near-infrared ratiometric photoacoustic probe for in vivo real-time imaging of reactive oxygen species-vital chemical mediators of many diseases. These results demonstrate semiconducting polymer nanoparticles to be an ideal nanoplatform for developing photoacoustic molecular probes.
机译:光声成像技术在分子水平上具有深厚的组织穿透力和良好的空间分辨率,可用于生理和病理学的可视化。为了充分利用这一潜力,必须开发光声分子成像探针。在这里,我们介绍近红外吸收光的半导体聚合物纳米粒子,作为用于光声分子成像的一类新的造影剂。这些纳米粒子在质量上比通常使用的单壁碳纳米管和金纳米棒能产生更强的信号,从而可以在低全身注射质量下在活体小鼠体内进行全身淋巴结光声成像。此外,半导体聚合物纳米粒子具有高的结构柔性,窄的光声光谱轮廓以及对光降解和氧化的强抵抗力,从而使得能够开发出用于活性氧的体内实时成像的第一个近红外比例光声探针成为重要的化学介质。许多疾病。这些结果证明半导体聚合物纳米颗粒是用于开发光声分子探针的理想纳米平台。

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