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Listening in on the Microbubble Crowd: Advanced Acoustic Monitoring for Improved Control of Blood-Brain Barrier Opening with Focused Ultrasound

机译:聆听微气泡人群:先进的声学监测通过聚焦超声改善对血脑屏障开放的控制

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摘要

Non-invasive drug and gene delivery to the brain to treat central nervous system pathologies has long been inhibited by the blood-brain barrier. The activation of microbubbles with focused ultrasound has emerged as a promising non-invasive approach to circumvent this obstacle, by transiently disrupting the blood-brain barrier and permitting passage of systemically administered therapeutics into the tissue. Clinical trials are underway to evaluate the safety of this technique; however, concerns remain regarding the potential for the treatment to induce sterile inflammation or petechiae. In this issue of Theranostics, Jones et al.[1] address these concerns through the development of an advanced three-dimensional imaging system for monitoring acoustic emissions from oscillating microbubbles. When subharmonic emissions are detected with this system, focused ultrasound pressure is reduced by 50% for the remainder of the treatment. This serves to transiently open the blood-brain barrier without generating adverse effects. While the ideal configuration of the transducer array for treatment and monitoring still presents an area for further optimization, the approach indicates that the acoustic signature of microbubble behavior within the skull can be used to ensure safe and effective blood-brain barrier opening using focused ultrasound.
机译:长期以来,血脑屏障抑制了将非侵入性药物和基因传递到大脑以治疗中枢神经系统疾病。通过瞬时破坏血脑屏障并允许全身给药的治疗剂进入组织,利用聚焦超声激活微泡已成为一种有希望的非侵入性方法来克服这一障碍。目前正在进行临床试验以评估该技术的安全性。然而,仍然存在关于治疗引起无菌炎症或瘀点的可能性的担忧。在本期《 Theranostics》中,Jones等人[1]通过开发先进的三维成像系统来监测来自微气泡振荡的声发射,从而解决这些问题。当使用此系统检测到次谐波发射时,在其余的治疗过程中,聚焦超声压力将降低50%。这用于暂时打开血脑屏障而不会产生不利影响。虽然用于治疗和监测的换能器阵列的理想配置仍然显示出需要进一步优化的领域,但该方法表明,可以通过聚焦超声来使用颅骨内微气泡行为的声学特征来确保安全有效地打开血脑屏障。

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