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Lipid-shelled microbubbles for ultrasound-triggered release of bioactive gases to treat stroke and cardiovascular disease

机译:用于超声波触发的生物活性气体的脂壳微泡以治疗中风和心血管疾病

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Ischemia-reperfusion-induced neurological injury is a primary cause of stroke disability. Xenon (Xe), a bioactive gas, has potential as an effective and nontoxic neuroprotectant for the treatment of ischemic stroke. Nitric oxide (NO) is a potent bioactive gas capable of inducing vasodilatory, anti-inflammatory, neuroprotectant and bactericidal effects. The goal of this work was to develop lipid-shelled microbubbles for site-specific release of Xe or NO upon pulsed ultrasound exposure. Gas-loaded microbubbles were synthesized by high-shear mixing of a lipid dispersion in a vial that contained, Xe or NO, and octafluoropropane (OFP) in combination. Attenuation spectroscopy measurements demonstrate the feasibility of 6-MHz pulsed Doppler ultrasound-triggered release of Xe or NO from microbubbles. The addition of OFP in the lipid-shelled microbubbles increased the number density, size, and stability of the microbubbles, particularly in undersaturated saline. Gas chromatography mass spectrometry was employed to measure Xe dose (127 ± 29 μl Xe/mg lipid). The payload of NO in the microbubbles (97 ± 12 μl NO/mg lipid) was assessed using an amperometric sensor. Intravenous administration of microbubbles carrying a neuroprotective or a vasodilatory gas in combination with ultrasound exposure has potential as a novel noninvasive strategy for local therapeutic delivery to modulate the effects or duration of cerebral ischemia.
机译:缺血再灌注诱导的神经损伤是卒中残疾的主要原因。氙气(XE),一种生物活性气体,具有潜在的一种有效和无毒的神经保护剂,用于治疗缺血性卒中。一氧化氮(NO)是能够诱导血管肠肠,抗炎,神经保护和杀菌作用的有效的生物活性气体。这项工作的目标是在脉冲超声暴露时开发XE的特异性释放的脂质壳微泡。通过组合含有,Xe或NO和八氟丙烷(OFP)的小瓶中的脂质分散体的高剪切混合来合成气体加载的微泡。衰减光谱测量结果证明了6-MHz脉冲多普勒超声波触发XE或NO的可行性。在脂壳的微泡中加入OFP增加了微泡的数量密度,尺寸和稳定性,特别是在不受饱和的盐水中。使用气相色谱质谱法测量Xe剂量(127±29μlXe / mg脂质)。使用电流传感器评估微泡中NO的有效载荷(97±12μLno / mg脂质)。静脉内施用携带神经保护或血管舒张化气体的微泡与超声暴露的潜力具有作为局部治疗递送的新型非侵入性策略,以调节脑缺血的效果或持续时间。

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