肿瘤的超声分子成像:靶向造影剂的设计和配制策略。

Alexander L Klibanov
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引用次数: 5

摘要

可以制备和稳定充满气体的颗粒(微泡),用作超声成像中的血管内造影剂。在过去的二十年里,微泡被用于临床作为血池对比材料。这些气泡的外壳由生物相容性和可生物降解的脂质、蛋白质和/或聚合物制成。气芯是空气,或者最近的一种全氟化气体,难溶于水和血液。通过用靶向配体修饰这些颗粒的外壳,可以选择性地结合肿瘤脉管系统的特定标记物,从而使它们在肿瘤分子靶向和分子成像中发挥作用。在本文中,我们讨论了微泡制备的配方策略,气泡壳选择的逻辑,用于靶向配体附着的偶联工具,以及充气气泡在肿瘤分子成像中的应用实例。
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Ultrasound Molecular Imaging of Cancer: Design and Formulation Strategies of Targeted Contrast Agents.

Gas-filled particles (microbubbles) can be prepared and stabilized for intravascular use as contrast agents in ultrasound imaging. Microbubbles are used in clinics as blood pool contrast materials for the past two decades. Shell of these bubbles is made of biocompatible and biodegradable lipids, proteins, and/or polymers. Gas core is air, or, lately, a perfluorinated gas, poorly soluble in water and blood. Making them useful for molecular targeting and molecular imaging in oncology is accomplished by decorating the shell of these particles with targeting ligands, that will selectively bind to the specific markers of tumor vasculature. In this review we discuss the formulation strategy for microbubble preparation, the logic of bubble shell selection, coupling tools that are used for the attachment of targeting ligands, and examples of the application of gas-filled bubbles for molecular imaging in oncology.

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