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聚合物微泡用于超声分子成像和靶向治疗。

Polymeric microbubbles for ultrasonic molecular imaging and targeted therapeutics.

机构信息

Department of Biophysics, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu 610054, Sichuan, PR China.

出版信息

J Biomater Sci Polym Ed. 2011;22(4-6):417-28. doi: 10.1163/092050610X540440.

Abstract

Gas-filled microbubbles ultrasound agent have received wide attention, not only because they can improve ultrasound signals, but also they can be used as drug/gene carriers. Among all types of microbubbles fabricated by different membrane materials and core gases, polymer-shell microbubbles are highly promising. Polymeric microbubbles are more stable than other soft shell microbubbles in vivo. Under destructive ultrasound, polymer-stabilized microbubbles disintegrate and emit a strong non-linear signal, which enables ultrasound imaging with superior sensitivity. Except for ultrasound imaging, polymeric microbubbles could also be applied as drug/gene-delivery system. The thick polymeric shells allow loading a large amount of drugs. Meanwhile, site-specific targeting and controlled drug release in the area of interest can be realized through chemical and physical modification. In this review, we highlight some of the recent examples on polymeric microbubbles and their applications in ultrasound molecular imaging and drug delivery.

摘要

充气体微泡超声造影剂受到了广泛关注,这不仅是因为它们可以提高超声信号,而且它们还可以用作药物/基因载体。在由不同膜材料和核心气体制造的所有类型的微泡中,聚合物壳微泡极具应用前景。与其他软壳微泡相比,聚合物微泡在体内更加稳定。在破坏超声下,聚合物稳定的微泡会发生崩解并发出强烈的非线性信号,从而实现具有更高灵敏度的超声成像。除了超声成像外,聚合物微泡还可以用作药物/基因递送系统。较厚的聚合物外壳允许装载大量的药物。同时,通过化学和物理修饰可以实现特定部位的靶向和在感兴趣区域的药物控制释放。在本综述中,我们重点介绍了聚合物微泡及其在超声分子成像和药物传递中的一些最新应用实例。

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