超声微泡造影剂在诊断和治疗中的应用:现状和未来的设计。

Shih-Tsung Kang, Chih-Kuang Yeh
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引用次数: 88

摘要

超声造影剂是具有许多独特特性的高回声微泡。微泡基本上可以提高常规超声成像对微循环的灵敏度。微泡响应于入射超声脉冲的共振产生非线性谐波发射,作为微泡特异性成像的特征。惯性空化和微泡破坏可产生强烈的机械应力,增强周围组织的渗透性,进一步增加药物从血液中向细胞质或间质外渗。高频超声产生的稳定空化,即使在高声压下也能轻微增加组织的渗透性,而不会造成任何损伤。微泡可以携带药物,通过超声介导的微泡破坏释放药物,同时增强血管通透性,增加药物在组织中的沉积。各种靶向配体可以共轭到微泡表面,以实现配体定向和位点特异性积累,用于靶向成像。本文综述了微泡技术的最新进展,介绍了微泡特异性成像、超声辅助给药和靶向成像的研究进展。这些应用很有前景,但临床应用可能需要进一步改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasound microbubble contrast agents for diagnostic and therapeutic applications: current status and future design.

Ultrasound contrast agents are highly echogenic microbubbles with many unique properties. Microbubbles can basically improve the sensitivity of conventional ultrasound imaging to the microcirculation. The resonance of microbubbles in response to an incident ultrasound pulse results in nonlinear harmonic emission that serves as the signature of microbubbles in microbubble-specific imaging. Inertial cavitation and destruction of microbubbles can produce a strong mechanical stress enhancing the permeability of the surrounding tissues, and can further increase the extravasation of drugs from the blood into the cytoplasm or interstitium. Stable cavitation by high-frequency ultrasound can also mildly increase tissue permeability without causing any damage even at a high acoustic pressure. Microbubbles can carry drugs, release them upon ultrasound-mediated microbubble destruction, and simultaneously enhance vascular permeability to increase drug deposition in tissues. Various targeting ligands can be conjugated to the surface of microbubbles to attain ligand-directed and site-specific accumulation for targeted imaging. In addition to current developments in microbubble technology, this review introduces our studies of the applications of microbubble- specific imaging, ultrasound-aided drug delivery, and targeted imaging. These applications are promising but may require further improvement for clinical use.

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