首页> 外文会议>IEEE International Ultrasonics Symposium >Influence of binding on the vibrational responses of targeted lipid-coated microbubbles
【24h】

Influence of binding on the vibrational responses of targeted lipid-coated microbubbles

机译:结合对靶向脂质包裹的微泡振动响应的影响

获取原文

摘要

Microbubbles for molecular ultrasound imaging are targeted to disease-specific biomarkers. One of the main challenges is to acoustically distinguish free microbubbles from those that are bound to their molecular target. In this study we used the Brandaris 128 high-speed camera to compare the responses to ultrasound of two types of lipid-coated microbubbles (DSPC and DPPC) in their free and bound state aiming to acoustically discriminate them. We found larger shrinkage for DPPC than for DSPC microbubbles in both their free and bound condition, indicating higher acoustical stability for DSPC-based microbubbles. Upon binding the stability of both types did not change significantly. Frequencies of maximum response were similar for DSPC and DPPC microbubbles, whether they were free or bound. In their free state, more DPPC than DSPC microbubbles responded at the subharmonic and the second harmonic frequency, which did not change upon binding. Interestingly, the maximum relative radial excursions at the second harmonic frequency were higher for DSPC microbubbles when they had bound. In conclusion, bound DSPC and DPPC microbubbles had lower maximum relative radial excursions at the fundamental frequency, and had higher maximum relative radial excursions at the second harmonic frequency than the free microbubbles. We found no differences between bound DSPC and bound DPPC microbubbles. The higher maximum relative radial excursions of particularly bound DSPC microbubbles at the second harmonic frequency may provide opportunities to acoustically discriminate them from free microbubbles.
机译:用于分子超声成像的微气泡针对特定疾病的生物标志物。主要挑战之一是在声学上将自由微泡与结合到其分子靶标的自由微泡区分开。在这项研究中,我们使用Brandaris 128高速相机比较了两种脂质包裹的微泡(DSPC和DPPC)在自由和结合状态下对超声的响应,目的是通过声学区分它们。我们发现,在自由状态和束缚状态下,DPPC的收缩率都比DSPC微泡大,这表明基于DSPC的微泡具有更高的声学稳定性。结合后,两种类型的稳定性均没有显着变化。 DSPC和DPPC微气泡的最大响应频率相似,无论它们是自由的还是有约束的。在其自由状态下,更多的DPPC比DSPC微气泡在次谐波和二次谐波频率下响应,该频率在绑定时不会改变。有趣的是,DSPC微气泡束缚时在二次谐波频率下的最大相对径向偏移较高。总之,与自由微泡相比,结合的DSPC和DPPC微泡在基频处具有较低的最大相对径向偏移,而在二次谐波频率处具有较高的最大相对径向偏移。我们发现绑定的DSPC和绑定的DPPC微气泡之间没有差异。在二次谐波频率下,特定结合的DSPC微泡的较高的最大相对径向偏移可能会提供从声学上将其与自由微泡区分开的机会。

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