Carpenter Colin M, Sun Conroy, Pratx Guillem, Liu Hongguang, Cheng Zhen, Xing Lei
Department of Radiation Oncology, School of Medicine, Stanford University, Stanford, CA 94305, USA.
Opt Express. 2012 May 21;20(11):11598-604. doi: 10.1364/OE.20.011598.
We demonstrate the ability to image multiple nanoparticle-based contrast agents simultaneously using a nanophosphor platform excited by either radiopharmaceutical or X-ray irradiation. These radioluminescent nanoparticles emit optical light at unique wavelengths depending on their lanthanide dopant, enabling multiplexed imaging. This study demonstrates the separation of two distinct nanophosphor contrast agents in gelatin phantoms with a recovered phosphor separation correlation of -0.98. The ability to distinguish the two nanophosphors and a Cerenkov component is then demonstrated in a small animal phantom. Combined with the high-resolution potential of low-scattering X-ray excitation, this imaging technique may be a promising method to probe molecular processes in living organisms.
我们展示了利用由放射性药物或X射线照射激发的纳米磷光体平台同时对多种基于纳米颗粒的造影剂进行成像的能力。这些放射性发光纳米颗粒根据其镧系元素掺杂剂在独特波长下发射光,从而实现多重成像。本研究展示了在明胶模型中分离两种不同的纳米磷光体造影剂,磷光体分离相关性恢复值为-0.98。随后在小动物模型中展示了区分这两种纳米磷光体和切伦科夫成分的能力。结合低散射X射线激发的高分辨率潜力,这种成像技术可能是探测活生物体中分子过程的一种有前途的方法。