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Ultrasound-based Control of Micro-Bubbles for Exosome Delivery in Treating COVID-19 Lung Damage

机译:基于超声的微气泡控制治疗Covid-19肺损伤

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The recent COVID-19 pandemic has resulted in high fatality rates, especially for patients who suffer from underlying health issues. One of the more serious symptoms exhibited from patients suffering from an acute COVID-19 infection is breathing difficulties and shortness of breath, which is largely due to the excessive fluid (cellular leakage and cytokine storm) and mucoid debris that have filled lung alveoli, and reduced the surfactant tension resulting in heavy and stiff lungs. In this paper we propose the use of micro-bubbles filled with exosomes that can be released upon exposure to ultrasound signals as a possible rescue therapy in deteriorating COVID-19 patients. Recent studies have shown that exosomes can be used to repair and treat lung damage for patients who have suffered from the viral infection. We have conducted simulations to show the efficacy of the ultrasound signals that will penetrate through layers of tissues reaching the alveoli that contains the micro-bubbles. Our results have shown that ultrasound signals with low frequencies are required to oscillate and rupture the polymer-based micro-bubbles. Our proposed system can be used for patients who require immediate rescue treatments for lung damage, as well as for recovered patients who may suffer from viral relapse infection, where the micro-bubbles will remain dormant for a temporary therapeutic window until they are exposed to the ultrasound signals.
机译:最近的Covid-19大流行导致了高死亡率,特别是对于患有潜在健康问题的患者。患有急性Covid-19感染的患者表现出的一种更严重的症状是呼吸困难和呼吸急促,这主要是由于含有填充肺肺泡的过量(细胞泄漏和细胞因子风暴)和粘液碎片降低了表面活性剂张力,得到重重和僵硬的肺部。在本文中,我们提出了使用填充有外来的微气泡,其可以在暴露于超声信号时作为可能的救援治疗在恶化的Covid-19患者中。最近的研究表明,外来物可用于修复和治疗患有病毒感染的患者的肺部损伤。我们已经进行了模拟以显示通过到达含有微气泡的肺泡的组织层的超声信号渗透的功效。我们的结果表明,具有低频的超声信号是振荡并破裂聚合物的微气泡。我们所提出的系统可用于需要立即抢救治疗肺部损伤的患者,以及可能患有病毒复发感染的恢复患者,其中微气泡将保持临时治疗窗口休眠,直到它们暴露在临时治疗窗口超声信号。

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