Georgia Cancer Center, Augusta University, Augusta, 30912, GA.
Department of Neurology, Augusta University, Augusta, 30912, GA.
J Biomed Nanotechnol. 2021 Jun 1;17(6):1170-1183. doi: 10.1166/jbn.2021.3091.
Exosomes, a component of extracellular vesicles, are shown to carry important small RNAs, mRNAs, protein, and bioactive lipid from parent cells and are found in most biological fluids. Investigators have demonstrated the importance of mesenchymal stem cells derived exosomes in repairing stroke lesions. However, exosomes from endothelial progenitor cells have not been tested in any stroke model, nor has there been an evaluation of whether these exosomes target/home to areas of pathology. Targeted delivery of intravenous administered exosomes has been a great challenge, and a targeted delivery system is lacking to deliver naïve () exosomes from endothelial progenitor cells to the site of interest. Pulsed focused ultrasound is being used for therapeutic and experimental purposes. There has not been any report showing the use of low-intensity pulsed focused ultrasound to deliver exosomes to the site of interest in stroke models. In this proof of principle study, we have shown different parameters of pulsed focused ultrasound to deliver exosomes in the intact and stroke brain with or without intravenous administration of nanobubbles. The study results showed that administration of nanobubbles is detrimental to the brain structures (micro bleeding and white matter destruction) at peak negative pressure of >0.25 megapascal, despite enhanced delivery of intravenous administered exosomes. However, without nanobubbles, pulsed focused ultrasound enhances the delivery of exosomes in the stroke area without altering the brain structures.
外泌体是细胞外囊泡的一个组成部分,被证明可以携带来自母细胞的重要的小 RNA、mRNA、蛋白质和生物活性脂质,并存在于大多数生物体液中。研究人员已经证明了间充质干细胞来源的外泌体在修复中风损伤中的重要性。然而,内皮祖细胞来源的外泌体尚未在任何中风模型中进行测试,也没有评估这些外泌体是否针对/归巢到病理区域。静脉内给予的外泌体的靶向递送一直是一个巨大的挑战,并且缺乏靶向递送系统来将内皮祖细胞的原始外泌体递送到感兴趣的部位。脉冲聚焦超声正被用于治疗和实验目的。目前还没有任何报道表明,使用低强度脉冲聚焦超声将外泌体递送到中风模型中的感兴趣部位。在本原理验证研究中,我们已经展示了不同参数的脉冲聚焦超声在完整和中风大脑中,以及是否静脉内给予纳米气泡,来递送外泌体。研究结果表明,尽管静脉内给予的外泌体的递送得到了增强,但纳米气泡的给药会对大脑结构(微出血和白质破坏)造成损害,峰值负压>0.25 兆帕。然而,没有纳米气泡,脉冲聚焦超声增强了中风区域中外泌体的递送,而不会改变大脑结构。