MRI-Guided Focused Ultrasound as a New Method of Drug Delivery.

Journal of drug delivery Pub Date : 2013-01-01 Epub Date: 2013-05-12 DOI:10.1155/2013/616197
M Thanou, W Gedroyc
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引用次数: 44

Abstract

Ultrasound-mediated drug delivery under the guidance of an imaging modality can improve drug disposition and achieve site-specific drug delivery. The term focal drug delivery has been introduced to describe the focal targeting of drugs in tissues with the help of imaging and focused ultrasound. Focal drug delivery aims to improve the therapeutic profile of drugs by improving their specificity and their permeation in defined areas. Focused-ultrasound- (FUS-) mediated drug delivery has been applied with various molecules to improve their local distribution in tissues. FUS is applied with the aid of microbubbles to enhance the permeability of bioactive molecules across BBB and improve drug distribution in the brain. Recently, FUS has been utilised in combination with MRI-labelled liposomes that respond to temperature increase. This strategy aims to “activate” nanoparticles to release their cargo locally when triggered by hyperthermia induced by FUS. MRI-guided FUS drug delivery provides the opportunity to improve drug bioavailability locally and therefore improve the therapeutic profiles of drugs. This drug delivery strategy can be directly translated to clinic as MRg FUS is a promising clinically therapeutic approach. However, more basic research is required to understand the physiological mechanism of FUS-enhanced drug delivery.

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mri引导聚焦超声作为一种新的给药方法。
超声在成像方式的指导下介导给药,可以改善药物配置,实现部位特异性给药。病灶给药这一术语已经被引入来描述药物在组织中的病灶靶向,借助成像和聚焦超声。局部给药旨在通过提高药物的特异性和在特定区域的渗透来改善药物的治疗效果。聚焦超声(FUS)介导的药物递送已被应用于各种分子,以改善其在组织中的局部分布。FUS借助微泡增强生物活性分子通过血脑屏障的渗透性,改善药物在脑内的分布。最近,FUS已与对温度升高有反应的mri标记脂质体联合使用。该策略旨在“激活”纳米颗粒,使其在FUS引起的高温触发下局部释放其货物。mri引导的FUS给药提供了改善局部药物生物利用度的机会,从而改善了药物的治疗效果。这种给药策略可以直接转化为临床,因为MRg FUS是一种很有前途的临床治疗方法。然而,需要更多的基础研究来了解fus增强药物传递的生理机制。
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来源期刊
Journal of drug delivery
Journal of drug delivery PHARMACOLOGY & PHARMACY-
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Corrigendum to "Alkyl Length Effects on the DNA Transport Properties of Cu (II) and Zn(II) Metallovesicles: An In Vitro and In Vivo Study". Dry Powder and Budesonide Inhalation Suspension Deposition Rates in Asthmatic Airway-Obstruction Regions. Rate of Drug Coating Dissolution Determines In-Tissue Drug Retention and Durability of Biological Efficacy. Alkyl Length Effects on the DNA Transport Properties of Cu (II) and Zn(II) Metallovesicles: An In Vitro and In Vivo Study. Potential of Cocoa Pod Husk Pectin-Based Modified Release Capsules as a Carrier for Chronodelivery of Hydrocortisone in Sprague-Dawley Rats.
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