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通过微泡实现局部药物和基因递送。

Local drug and gene delivery through microbubbles.

作者信息

Unger E C, Hersh E, Vannan M, Matsunaga T O, McCreery T

机构信息

Department of Radiology, Arizona Cancer Center, The University of Arizona, Tucson, 85724-5067, USA.

出版信息

Prog Cardiovasc Dis. 2001 Jul-Aug;44(1):45-54. doi: 10.1053/pcad.2001.26443.

Abstract

Ultrasound contrast agents (microbubbles) lower the threshold for cavitation by ultrasound energy. Ultrasound microbubbles may be used as cavitation nuclei for drug and gene delivery. By tailoring the physical properties of microbubbles and coating materials, drugs and genetic drugs can be incorporated into ultrasound contrast agents. As the microbubbles enter the region of insonation, the microbubbles cavitate, locally releasing the therapeutic agents. Cavitation also causes a local shockwave that improves cellular uptake of the therapeutic agent. As a result of the human genome project and continuing advances in molecular biology, many therapeutic genes have been discovered. In the cardiovascular system, gene therapy has the potential to improve myocardial vascularization and ameliorate congestive heart failure. For successful development of clinical gene therapy, however, effective gene delivery vectors are needed. Ultrasound contrast agents can be used to develop new, more effective vectors for gene delivery. Transthoracic ultrasound can be focused on the heart so that an intravenous injection of gene-bearing microbubbles will deliver genes relatively selectively to the myocardium. Using this technique, we have produced high levels of transgene expression in the insonated region of the myocardium. This new technology, using microbubbles and ultrasound for drug and gene delivery, merits further study and development.

摘要

超声造影剂(微泡)可降低超声能量引发空化的阈值。超声微泡可用作药物和基因递送的空化核。通过调整微泡和包被材料的物理特性,可将药物和基因药物掺入超声造影剂中。当微泡进入超声照射区域时,微泡会发生空化,局部释放治疗剂。空化还会产生局部冲击波,从而改善治疗剂的细胞摄取。由于人类基因组计划以及分子生物学的不断进步,已发现了许多治疗基因。在心血管系统中,基因治疗有改善心肌血管生成和缓解充血性心力衰竭的潜力。然而,要成功开展临床基因治疗,需要有效的基因递送载体。超声造影剂可用于开发新型、更有效的基因递送载体。经胸超声可聚焦于心脏,这样静脉注射携带基因的微泡就能将基因相对选择性地递送至心肌。利用这项技术,我们已在心肌的超声照射区域产生了高水平的转基因表达。这种利用微泡和超声进行药物和基因递送的新技术值得进一步研究和开发。

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