微泡成分、特性和生物医学应用。

Shashank Sirsi, Mark Borden
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引用次数: 430

摘要

在过去的十年里,微气泡作为治疗药物在生物医学应用方面取得了重大进展。微泡对超声的独特反应能力使其成为对比超声成像、分子成像以及靶向药物和基因递送的有用试剂。微气泡的一般组成是由蛋白质、脂质或聚合物组成的外壳稳定的气体核心。每种类型的微气泡都有其独特的优势,可以针对特定功能进行定制。在这篇综述中,在开发用于生物医学应用的新型构建体的当前进展的背景下,讨论了不同的微泡组成和理化性质,特别强调分子成像和靶向药物/基因递送。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Microbubble Compositions, Properties and Biomedical Applications.

Microbubble Compositions, Properties and Biomedical Applications.

Microbubble Compositions, Properties and Biomedical Applications.

Microbubble Compositions, Properties and Biomedical Applications.

Over the last decade, there has been significant progress towards the development of microbubbles as theranostics for a wide variety of biomedical applications. The unique ability of microbubbles to respond to ultrasound makes them useful agents for contrast ultrasound imaging, molecular imaging, and targeted drug and gene delivery. The general composition of a microbubble is a gas core stabilized by a shell comprised of proteins, lipids or polymers. Each type of microbubble has its own unique advantages and can be tailored for specialized functions. In this review, different microbubbles compositions and physiochemical properties are discussed in the context of current progress towards developing novel constructs for biomedical applications, with specific emphasis on molecular imaging and targeted drug/gene delivery.

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