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Ultrasound Contrast Agents For Ultrasound Molecular Imaging

机译:用于超声分子成像的超声造影剂

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摘要

Ultrasound is a real-time imaging technique which is widely used in many clinical applications for its capacity to provide anatomic information with high spatial and temporal resolution. The advent of ultrasound contrast agents in combination with contrast-specific imaging modes has given access to perfusion assessments at an organ level, leading to an improved diagnostic accuracy. More recently, the development of biologically-targeted ultrasound contrast agents has expanded the role of ultrasound even further into molecular imaging applications. Ultrasound molecular imaging can be used to visualize the expression of intravascular markers, and to assess their local presence over time and/or during therapeutic treatment. Major applications are in the field of inflammation and neoangiogenesis due to the strictly intravascular presence of microbubbles. Various technologies have been investigated for attaching the targeting moiety to the shell from simple biotin-avidin constructs to more elaborated insertion within the shell through attachment to PEG residues. This important improvement has allowed a clinical translation of initial pre-clinical investigations, opening the way for an early detection and an accurate characterization of lesions in patients. The combination of anatomic, functional and molecular information/data provided by contrast ultrasound is a powerful tool which is still in its infancy due to the lack of agents suitable for clinical use. The advantages of ultrasound techniques combined with the molecular signature of lesions will represent a significant advance in imaging in the field of personalized medicine.
机译:超声是一种实时成像技术,由于其能够提供具有高时空分辨率的解剖信息而被广泛用于许多临床应用中。超声造影剂与造影剂特异性成像模式相结合的出现使得可以在器官水平进行灌注评估,从而提高了诊断准确性。最近,生物靶向超声造影剂的开发将超声的作用扩展到了分子成像应用中。超声分子成像可用于可视化血管内标记物的表达,并评估其随时间和/或在治疗过程中的局部存在。由于严格地在血管内存在微泡,因此主要应用在炎症和新血管生成领域。已经研究了各种技术,用于将靶向部分连接到壳上,从简单的生物素-亲和素构建体到通过附着到PEG残基在壳内更精细的插入。这项重要的改进使临床前的临床研究得以临床翻译,为早期发现患者病灶和准确表征病灶开辟了道路。对比超声提供的解剖,功能和分子信息/数据的组合是一种功能强大的工具,由于缺乏适合临床使用的药物,因此仍处于起步阶段。超声技术结合病变分子特征的优势将代表个性化医学领域成像的重大进步。

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