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Quantification of the binding kinetics of targeted ultrasound contrast agent for molecular imaging of cancer angiogenesis

机译:靶向超声造影剂对肿瘤血管生成分子成像的结合动力学的定量

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Cancer growth requires angiogenesis; imaging of angiogenesis holds thus great potential for improved cancer detection and treatment. In this context, ultrasound molecular imaging permits the visualization of cancer angiogenesis by use of novel targeted contrast agents (tUCA). These consist of ligand-bearing microbubbles designed to specifically bind molecular angiogenic expressions, thus providing selective enhancement especially in the late phase after injection. Discrimination between bound and free microbubbles is crucial to assess the degree of binding and thus to quantify angiogenesis. Currently, binding is mainly assessed by the differential targeted enhancement, i.e., the difference in signal intensity in the late phase before and after the application of a high-pressure destructive pulse. However, this method is not quantitative, and it requires long acquisitions and a high-pressure pulse, which may damage the endothelial tissue. To overcome these limitations, here we propose a new method for quantification of the microbubble binding kinetics by fitting a dedicated compartmental model to the tUCA first-pass. We investigated the feasibility of the method in three prostate tumor-bearing rats. The novel information provided by the proposed method may be combined with the late enhancement analysis to gain deeper insight into tumor angionesis, and thus potentially improve cancer diagnosis and management.
机译:癌症的生长需要血管生成;血管生成的成像因此具有改善癌症检测和治疗的巨大潜力。在这种情况下,超声分子成像可以通过使用新型靶向造影剂(tUCA)可视化癌症血管生成。这些由设计成特异性结合分子血管生成表达的带有配体的微泡组成,从而提供选择性增强,尤其是在注射后的后期。结合微泡和自由微泡之间的区别对于评估结合程度并因此量化血管生成至关重要。目前,结合主要是通过差异靶向增强来评估的,即,在施加高压破坏性脉冲之前和之后的后期信号强度的差异。但是,这种方法不是定量的,需要长时间采集和高压脉冲,这可能会损坏内皮组织。为了克服这些限制,在这里我们提出了一种新的方法,通过将专用的区室模型拟合到tUCA首过通道来量化微气泡结合动力学。我们研究了该方法在三只患有前列腺肿瘤的大鼠中的可行性。所提出的方法提供的新信息可以与后期增强分析相结合,以更深入地了解肿瘤血管生成,从而潜在地改善癌症的诊断和管理。

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