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In Vivo Ultrasound Visualization of Non-Occlusive Blood Clots with Thrombin-Sensitive Contrast Agents

机译:凝血酶敏感造影剂对非阻塞性血凝块的体内超声可视化

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摘要

The use of microbubbles as ultrasound contrast agents is one of the primary methods to diagnose deep venous thrombosis. However, current microbubble imaging strategies require either a clot sufficiently large to produce a circulation filling defect or a clot with sufficient vascularization to allow for targeted accumulation of contrast agents. Previously, we reported the design of a microbubble formulation that modulated its ability to generate ultrasound contrast from interaction with thrombin through incorporation of aptamer-containing DNA crosslinks in the encapsulating shell, enabling the measurement of a local chemical environment by changes in acoustic activity. However, this contrast agent lacked sufficient stability and lifetime in blood to be used as a diagnostic tool. Here we describe a PEG-stabilized, thrombin-activated microbubble (PSTA-MB) with sufficient stability to be used in vivo in circulation with no change in biomarker sensitivity. In the presence of actively clotting blood, PSTA-MBs showed a 5-fold increase in acoustic activity. Specificity for the presence of thrombin and stability under constant shear flow were demonstrated in a home-built in vitro model. Finally, PSTA-MBs were able to detect the presence of an active clot within the vena cava of a rabbit sufficiently small as to not be visible by current non-specific contrast agents. By activating in non-occlusive environments, these contrast agents will be able to detect clots not diagnosable by current contrast agents.
机译:使用微泡作为超声造影剂是诊断深静脉血栓形成的主要方法之一。然而,当前的微泡成像策略需要足够大的凝块以产生循环填充缺陷,或者需要具有足够血管化的凝块以允许造影剂的靶向积累。以前,我们报道了一种微泡制剂的设计,该微泡制剂通过在封装壳中掺入含有适体的DNA交联键来调节其与凝血酶相互作用产生超声对比的能力,从而能够通过声活动的变化来测量局部化学环境。但是,该造影剂在血液中缺乏足够的稳定性和寿命来用作诊断工具。在这里,我们描述了一种PEG稳定的,凝血酶激活的微泡(PSTA-MB),具有足够的稳定性,可以在体内循环中使用,而不会改变生物标记物的敏感性。在主动凝结血液的情况下,PSTA-MBs的声音活动增加了5倍。在自制的体外模型中证明了凝血酶存在的特异性和恒定剪切流量下的稳定性。最终,PSTA-MBs能够检测到兔子的腔静脉内存在足够小的活性凝块,以至于无法被当前的非特异性造影剂所见。通过在非阻塞环境中激活,这些造影剂将能够检测当前造影剂无法诊断的凝块。

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