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Ultrasonic Analysis of Peptide- and Antibody-Targeted Microbubble Contrast Agents for Molecular Imaging of αvβ3-Expressing Cells

机译:多肽和抗体靶向微泡造影剂的超声分析用于表达αvβ3的细胞的分子成像

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摘要

The goal of targeted ultrasound contrast agents is to significantly and selectively enhance the detection of a targeted vascular site. In this manuscript, three distinct contrast agents targeted to the αvβ3 integrin are examined. The αvβ3 integrin has been shown to be highly expressed on metastatic tumors and endothelial cells during neovascularization, and its expression has been shown to correlate with tumor grade. Specific adhesion of these contrast agents to αvβ3-expressing cell monolayers is demonstrated in vitro, and compared with that of nontargeted agents. Acoustic studies illustrate a backscatter amplitude increase from monolayers exposed to the targeted contrast agents of up to 13-fold (22 dB) relative to enhancement due to control bubbles. A linear dependence between the echo amplitude and bubble concentration was observed for bound agents. The decorrelation of the echo from adherent targeted agents is observed over successive pulses as a function of acoustic pressure and bubble density. Frequency–domain analysis demonstrates that adherent targeted bubbles exhibit high-amplitude narrowband echo components, in contrast to the primarily wideband response from free microbubbles. Results suggest that adherent targeted contrast agents are differentiable from free-floating microbubbles, that targeted contrast agents provide higher sensitivity in the detection of angiogenesis, and that conventional ultrasound imaging techniques such as signal subtraction or decorrelation detection can be used to detect integrin-expressing vasculature with sufficient signal-to-noise.
机译:靶向超声造影剂的目标是显着和选择性地增强对靶血管部位的检测。在本手稿中,研究了针对αvβ3整联蛋白的三种不同的造影剂。研究表明,αvβ3整合素在新血管形成过程中在转移性肿瘤和内皮细胞上高表达,并且其表达与肿瘤等级相关。这些造影剂对表达αvβ3的细胞单层的特异性粘附已在体外得到证实,并与非靶向药物进行了比较。声学研究表明,相对于由于控制气泡而导致的增强,暴露于目标造影剂的单分子层的背向散射振幅增加了多达13倍(22 dB)。对于结合剂,观察到回波幅度和气泡浓度之间的线性相关性。在连续的脉冲中观察到来自粘附的靶向剂的回声的去相关与声压和气泡密度的关系。频域分析表明,与游离微泡产生的主要宽带响应相比,粘附的目标泡表现出高幅度的窄带回波分量。结果表明,粘附的靶向造影剂与自由漂浮的微气泡不同,靶向造影剂在检测血管生成方面具有更高的灵敏度,并且常规超声成像技术(例如信号减法或去相关检测)可用于检测表达整联蛋白的脉管系统具有足够的信噪比。

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