Lea-Banks Harriet, O'Reilly Meaghan A, Hamani Clement, Hynynen Kullervo
Physical Sciences Platform, Sunnybrook Research Institute, Toronto, Canada.
Department of Medical Biophysics, University of Toronto, Toronto, Canada.
Theranostics. 2020 Feb 3;10(6):2849-2858. doi: 10.7150/thno.41566. eCollection 2020.
: Targeted neuromodulation is a valuable technique for the study and treatment of the brain. Using focused ultrasound to target the local delivery of anesthetics in the brain offers a safe and reproducible option for suppressing neuronal activity. : To develop a potential new tool for localized neuromodulation through the triggered release of pentobarbital from ultrasound-responsive nanodroplets. : The commercial microbubble contrast agent, Definity, was filled with decafluorobutane gas and loaded with a lipophilic anesthetic drug, before being condensed into liquid-filled nanodroplets of 210 ± 80 nm. Focused ultrasound at 0.58 MHz was found to convert nanodroplets into microbubbles, simultaneously releasing the drug and inducing local anesthesia in the motor cortex of rats (n=8). : Behavioral analysis indicated a 19.1 ± 13% motor deficit on the contralateral side of treated animals, assessed through the cylinder test and gait analysis, illustrating successful local anesthesia, without compromising the blood-brain barrier. : Pentobarbital-loaded decafluorobutane-core Definity-based nanodroplets are a potential agent for ultrasound-triggered and targeted neuromodulation.
靶向神经调节是一种用于大脑研究和治疗的重要技术。利用聚焦超声将麻醉剂局部递送至大脑,为抑制神经元活动提供了一种安全且可重复的选择。:通过超声响应性纳米液滴触发戊巴比妥的释放,开发一种用于局部神经调节的潜在新工具。:将商用微泡造影剂Definity填充十氟丁烷气体并负载亲脂性麻醉药物,然后冷凝成210±80nm的液体填充纳米液滴。发现0.58MHz的聚焦超声可将纳米液滴转化为微泡,同时释放药物并在大鼠(n = 8)的运动皮层中诱导局部麻醉。:行为分析表明,通过圆筒试验和步态分析评估,治疗动物对侧的运动功能缺损为19.1±13%,表明成功实现了局部麻醉,且未损害血脑屏障。:负载戊巴比妥的基于十氟丁烷核心Definity的纳米液滴是一种用于超声触发和靶向神经调节的潜在药物。