He Stephanie, Singh Davindra, Yusefi Hossein, Helfield Brandon
Department of Biology, Concordia University, Montreal, QC H4B 1R6, Canada.
Department of Physics, Concordia University, Montreal, QC H4B 1R6, Canada.
Pharmaceutics. 2022 Nov 30;14(12):2656. doi: 10.3390/pharmaceutics14122656.
In endothelial cells, microRNA-126 (miR-126) promotes angiogenesis, and modulating the intracellular levels of this gene could suggest a method to treat cardiovascular diseases such as ischemia. Novel ultrasound-stimulated microbubbles offer a means to deliver therapeutic payloads to target cells and sites of disease. The purpose of this study was to investigate the feasibility of gene delivery by stimulating miR-126-decorated microbubbles using gentle acoustic conditions (stable cavitation). A cationic DSTAP microbubble was formulated and characterized to carry 6 µg of a miR-126 payload per 109 microbubbles. Human umbilical vein endothelial cells (HUVECs) were treated at 20−40% duty cycle with miR-126-conjugated microbubbles in a custom ultrasound setup coupled with a passive cavitation detection system. Transfection efficiency was assessed by RT-qPCR, Western blotting, and endothelial tube formation assay, while HUVEC viability was monitored by MTT assay. With increasing duty cycle, the trend observed was an increase in intracellular miR-126 levels, up to a 2.3-fold increase, as well as a decrease in SPRED1 (by 33%) and PIK3R2 (by 46%) expression, two salient miR-126 targets. Under these ultrasound parameters, HUVECs maintained >95% viability after 96 h. The present work describes the delivery of a proangiogenic miR-126 using an ultrasound-responsive cationic microbubble with potential to stimulate therapeutic angiogenesis while minimizing endothelial damage.
在内皮细胞中,微小RNA-126(miR-126)可促进血管生成,调节该基因的细胞内水平可能提示一种治疗心血管疾病(如局部缺血)的方法。新型超声刺激微泡为将治疗性药物输送到靶细胞和疾病部位提供了一种手段。本研究的目的是探讨在温和声学条件(稳定空化)下刺激用miR-126修饰的微泡进行基因递送的可行性。制备了一种阳离子DSTAP微泡,并对其进行了表征,每109个微泡可携带6μg的miR-126药物。在配备有被动空化检测系统的定制超声装置中,用miR-126偶联的微泡以20%-40%的占空比处理人脐静脉内皮细胞(HUVECs)。通过逆转录定量聚合酶链反应(RT-qPCR)、蛋白质印迹法和内皮管形成试验评估转染效率,同时通过MTT试验监测HUVEC的活力。随着占空比的增加,观察到的趋势是细胞内miR-126水平升高,最高增加2.3倍,同时miR-126的两个主要靶标SPRED1(降低33%)和PIK3R2(降低46%)的表达降低。在这些超声参数下,96小时后HUVEC的活力维持在>95%。本研究描述了使用超声响应性阳离子微泡递送促血管生成的miR-126,该微泡具有刺激治疗性血管生成同时最小化内皮损伤的潜力。