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超声辅助对流增强药物脑内递送中的时间反转技术:技术开发与体内评估

Time-reversal Techniques in Ultrasound-assisted Convection-enhanced Drug Delivery to the Brain: Technology Development and In Vivo Evaluation.

作者信息

Lewis George K, Guarino Sabrina, Gandhi Gaurav, Filinger Laurent, Lewis George K, Olbricht Willam L, Sarvazyan Armen

出版信息

Proc Meet Acoust. 2011 Jul 10;11:20005-20031. doi: 10.1121/1.3616358.

Abstract

We describe a drug delivery method that combines Time-Reversal Acoustics (TRA) with Convection-Enhanced Delivery (CED) to improve the delivery of therapeutics to the interstitium of the brain. The Ultrasound-assisted CED approach (UCED) circumvents the blood-brain barrier by infusing compounds through a cannula that is inserted into the brain while simultaneously delivering ultrasound to improve the penetration of pharmaceuticals. CED without ultrasound-assistance has been used to treat a variety of neural disorders, including glioblastoma multiforme, a malignancy that presents a very poor prognosis for patients. We describe a novel system that is used to infuse fluids into the brain parenchyma while simultaneously exposing the tissue to safe levels of 1-MHz, low intensity, ultrasound energy. The system includes a combined infusion needle-hydrophone, a 10-channel ultralow-output impedance amplifier, a broad-band ultrasound resonator, and MatLab®-based TRA control and user-interface. TRA allows easy coupling of ultrasound therapy through the skull without complex phase-correction and array design. The smart targeting UCED system has been tested in vivo and results show it provides 1.5-mm spatial resolution for UCED and improves tracer distribution in the brain over CED alone.

摘要

我们描述了一种将时间反转声学(TRA)与对流增强递送(CED)相结合的药物递送方法,以改善治疗药物向脑间质的递送。超声辅助CED方法(UCED)通过将化合物通过插入脑内的套管注入来绕过血脑屏障,同时递送超声以改善药物的渗透。无超声辅助的CED已被用于治疗多种神经疾病,包括多形性胶质母细胞瘤,这是一种对患者预后非常差的恶性肿瘤。我们描述了一种新型系统,该系统用于将液体注入脑实质,同时将组织暴露于1兆赫、低强度的安全水平超声能量。该系统包括一个组合的输液针-水听器、一个10通道超低输出阻抗放大器、一个宽带超声谐振器以及基于MatLab®的TRA控制和用户界面。TRA允许通过颅骨轻松耦合超声治疗,而无需复杂的相位校正和阵列设计。智能靶向UCED系统已在体内进行了测试,结果表明它为UCED提供了1.5毫米的空间分辨率,并比单独的CED改善了示踪剂在脑中的分布。

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本文引用的文献

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