University of Cincinnati, College of Medicine, Internal Medicine, Division of Cardiovascular Diseases, and Biomedical Engineering Program, Cincinnati, OH, USA.
Expert Opin Drug Deliv. 2013 May;10(5):573-92. doi: 10.1517/17425247.2013.772578. Epub 2013 Mar 1.
Ultrasound (US) has been developed as both a valuable diagnostic tool and a potent promoter of beneficial tissue bioeffects for the treatment of cardiovascular disease. These effects can be mediated by mechanical oscillations of circulating microbubbles, or US contrast agents, which may also encapsulate and shield a therapeutic agent in the bloodstream. Oscillating microbubbles can create stresses directly on nearby tissue or induce fluid effects that effect drug penetration into vascular tissue, lyse thrombi or direct drugs to optimal locations for delivery.
The present review summarizes investigations that have provided evidence for US-mediated drug delivery as a potent method to deliver therapeutics to diseased tissue for cardiovascular treatment. In particular, the focus will be on investigations of specific aspects relating to US-mediated drug delivery, such as delivery vehicles, drug transport routes, biochemical mechanisms and molecular targeting strategies.
These investigations have spurred continued research into alternative therapeutic applications, such as bioactive gas delivery and new US technologies. Successful implementation of US-mediated drug delivery has the potential to change the way many drugs are administered systemically, resulting in more effective and economical therapeutics, and less-invasive treatments.
超声(US)已被开发为一种有价值的诊断工具和一种强大的促进有益的组织生物效应的工具,用于治疗心血管疾病。这些效应可以通过循环微泡或超声对比剂的机械振动来介导,微泡或对比剂也可以在血液中封装和屏蔽治疗剂。振动的微泡可以直接对附近的组织产生应力,或诱导流体效应,从而增加药物渗透到血管组织的程度、溶解血栓或直接将药物输送到最佳的给药部位。
本综述总结了提供超声介导药物输送作为向病变组织输送治疗剂以进行心血管治疗的有效方法的证据的研究。特别关注与超声介导药物输送相关的特定方面的研究,例如输送载体、药物输送途径、生化机制和分子靶向策略。
这些研究激发了对替代治疗应用的持续研究,例如生物活性气体输送和新的超声技术。成功实施超声介导药物输送有可能改变许多全身给药的方式,从而提供更有效和经济的治疗方法,并减少侵入性治疗。