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Encapsulated microbubbles and echogenic liposomes for contrast ultrasound imaging and targeted drug delivery

机译:封装的微泡和回声脂质体用于对比超声成像和靶向药物递送

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摘要

Micron- to nanometer-sized ultrasound agents, like encapsulated microbubbles and echogenic liposomes, are being developed for diagnostic imaging and ultrasound mediated drug/gene delivery. This review provides an overview of the current state of the art of the mathematical models of the acoustic behavior of ultrasound contrast microbubbles. We also present a review of the in vitro experimental characterization of the acoustic properties of microbubble based contrast agents undertaken in our laboratory. The hierarchical two-pronged approach of modeling contrast agents we developed is demonstrated for a lipid coated (Sonazoid) and a polymer shelled (poly D-L-lactic acid) contrast microbubbles. The acoustic and drug release properties of the newly developed echogenic liposomes are discussed for their use as simultaneous imaging and drug/gene delivery agents. Although echogenicity is conclusively demonstrated in experiments, its physical mechanisms remain uncertain. Addressing questions raised here will accelerate further development and eventual clinical approval of these novel technologies.
机译:微米级至纳米级的超声试剂,如封装的微泡和回声脂质体,正在开发用于诊断成像和超声介导的药物/基因递送。这篇综述概述了超声造影微泡的声学行为的数学模型的当前水平。我们还介绍了在我们的实验室中进行的基于微泡的造影剂的声学特性的体外实验表征的综述。我们针对脂质涂层(Sonazoid )和带壳聚合物(聚D-L-乳酸)造影剂微泡证明了我们开发的建模造影剂的两级方法。讨论了新开发的回声脂质体的声学和药物释放特性,将其用作同时成像和药物/基因递送剂。尽管在实验中已最终证明了回声性,但其物理机制仍不确定。解决此处提出的问题将加速这些新技术的进一步开发和最终的临床批准。

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