Zhao Shukui, Borden Mark, Bloch Susannah H, Kruse Dustin, Ferrara Katherine W, Dayton Paul A
Department of Biomedical Engineering, University of California-Davis, USA.
Mol Imaging. 2004 Jul;3(3):135-48. doi: 10.1162/15353500200404115.
Ultrasonic molecular imaging employs contrast agents, such as microbubbles, nanoparticles, or liposomes, coated with ligands specific for receptors expressed on cells at sites of angiogenesis, inflammation, or thrombus. Concentration of these highly echogenic contrast agents at a target site enhances the ultrasound signal received from that site, promoting ultrasonic detection and analysis of disease states. In this article, we show that acoustic radiation force can be used to displace targeted contrast agents to a vessel wall, greatly increasing the number of agents binding to available surface receptors. We provide a theoretical evaluation of the magnitude of acoustic radiation force and show that it is possible to displace micron-sized agents physiologically relevant distances. Following this, we show in a series of experiments that acoustic radiation force can enhance the binding of targeted agents: The number of biotinylated microbubbles adherent to a synthetic vessel coated with avidin increases as much as 20-fold when acoustic radiation force is applied; the adhesion of contrast agents targeted to alpha(v)beta3 expressed on human umbilical vein endothelial cells increases 27-fold within a mimetic vessel when radiation force is applied; and finally, the image signal-to-noise ratio in a phantom vessel increases up to 25 dB using a combination of radiation force and a targeted contrast agent, over use of a targeted contrast agent alone.
超声分子成像利用造影剂,如微泡、纳米颗粒或脂质体,这些造影剂表面包被有针对在血管生成、炎症或血栓形成部位的细胞上表达的受体的特异性配体。这些高回声造影剂在靶部位的聚集增强了从该部位接收到的超声信号,有助于对疾病状态进行超声检测和分析。在本文中,我们表明声辐射力可用于将靶向造影剂驱赶到血管壁,极大地增加与可用表面受体结合的造影剂数量。我们对声辐射力的大小进行了理论评估,并表明有可能将微米级的造影剂驱赶到与生理相关的距离。在此之后,我们在一系列实验中表明声辐射力可增强靶向造影剂的结合:当施加声辐射力时,附着在涂有抗生物素蛋白的合成血管上的生物素化微泡数量增加多达20倍;当施加辐射力时,靶向人脐静脉内皮细胞上表达的α(v)β3的造影剂在模拟血管内的附着力增加27倍;最后,与单独使用靶向造影剂相比,使用辐射力和靶向造影剂相结合时,模拟血管中的图像信噪比提高了多达25分贝。