首页> 外文会议>IEEE International Ultrasonics Symposium >Ultrasound, optical and photoacoustic imaging of Acoustic Cluster Therapy enhanced delivery to human tumors in mice
【24h】

Ultrasound, optical and photoacoustic imaging of Acoustic Cluster Therapy enhanced delivery to human tumors in mice

机译:声学聚类疗法的超声波,光学和光声成像增强了对小鼠的人肿瘤的递送

获取原文

摘要

Acoustic cluster therapy (ACT) is designed to overcome some of the limitations of conventional microbubbles for ultrasound-assisted delivery of drugs to tumors. ACT consists of clusters of oil microdroplets and microbubbles. Diagnostic ultrasound imaging can be used to visualize the microbubble component and to activate (vaporize) the droplets to produce large (>20 μm) bubbles which lodge in the tumor's microvessels. A subsequent low-frequency ultrasound field then gently pulsates the activated bubbles which are in direct contact with endothelium, enhancing vascular permeability. We present in-vivo pre-clinical imaging experiments designed to better understand ACT behavior. Conventional microbubbles were observed to wash out of tumors within 6 min whereas activated ACT failed to wash out during the observation time of 15 min, confirming activation. Stationary echoes in tumors uniquely accumulated in fundamental B-mode images after ACT activation (but not with a microbubble agent, nor in nonlinear contrast mode) providing a signature for identifying ACT activation in vivo. ACT significantly enhanced CW800 dye uptake in tumor relative to dye alone. Photoacoustic CW800 signals appeared in the tumor periphery, suggesting potential for high-resolution, three-dimensional dynamic monitoring although with lower sensitivity than fluorescence imaging.
机译:声学聚类疗法(ACT)旨在克服传统微泡的一些局限性,以便对肿瘤进行超声辅助递送药物。行为包括油微型电池和微泡的簇。诊断超声成像可用于可视化微泡组分并激活(蒸发)液滴以产生大(>20μm)气泡,在肿瘤的微血管中延长。然后将后续的低频超声场轻轻脉冲与内皮直接接触的活性气泡,增强血管渗透性。我们展示了体内前临床影像学实验,旨在更好地了解行为行为。观察到常规微泡以在6分钟内洗掉肿瘤,而活化的动作未能在观察时间15分钟内洗掉,确认活化。在动作激活(但不用微泡代理,非线性造影模式下的肿瘤中,肿瘤中的肿瘤唯一积累,提供用于识别用于识别体内动作激活的签名。仅增强肿瘤的CW800染料相对于单独染料显着增强。光声CW800信号出现在肿瘤周边,表明高分辨率的潜力,三维动态监测虽然灵敏度低于荧光成像。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号