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Contrast agent-free sonoporation: The use of an ultrasonic standing wave microfluidic system for the delivery of pharmaceutical agents

机译:无造影剂的声波穿孔法:使用超声波驻波微流系统来输送药剂

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摘要

Sonoporation is a useful biophysical mechanism for facilitating the transmembrane delivery of therapeutic agents from the extracellular to the intracellular milieu. Conventionally, sonoporation is carried out in the presence of ultrasound contrast agents, which are known to greatly enhance transient poration of biological cell membranes. However, in vivo contrast agents have been observed to induce capillary rupture and haemorrhage due to endothelial cell damage and to greatly increase the potential for cell lysis in vitro. Here, we demonstrate sonoporation of cardiac myoblasts in the absence of contrast agent (CA-free sonoporation) using a low-cost ultrasound-microfluidic device. Within this device an ultrasonic standing wave was generated, allowing control over the position of the cells and the strength of the acoustic radiation forces. Real-time single-cell analysis and retrospective post-sonication analysis of insonated cardiac myoblasts showed that CA-free sonoporation induced transmembrane transfer of fluorescent probes (CMFDA and FITC-dextran) and that different mechanisms potentially contribute to membrane poration in the presence of an ultrasonic wave. Additionally, to the best of our knowledge, we have shown for the first time that sonoporation induces increased cell cytotoxicity as a consequence of CA-free ultrasound-facilitated uptake of pharmaceutical agents (doxorubicin, luteolin, and apigenin). The US-microfluidic device designed here provides an in vitro alternative to expensive and controversial in vivo models used for early stage drug discovery, and drug delivery programs and toxicity measurements.
机译:Sonoporation是促进治疗剂从细胞外环境到细胞内环境的跨膜递送的有用生物物理机制。常规上,声穿孔是在超声造影剂的存在下进行的,已知超声造影剂会大大增强生物细胞膜的瞬时穿孔。然而,已观察到体内造影剂由于内皮细胞损伤而引起毛细血管破裂和出血,并大大增加了体外细胞裂解的潜力。在这里,我们展示了使用低成本的超声微流控设备在没有造影剂的情况下对心脏成肌细胞进行声处理(无CA声处理)。在该装置内,产生了超声波驻波,从而可以控制细胞的位置和声辐射力的强度。实时的单细胞分析和超声后对超声处理后的超声分析表明,无CA的声纳穿孔诱导荧光探针(CMFDA和FITC-葡聚糖)的跨膜转移,并且存在不同的机制可能会导致膜穿孔。超声波。此外,就我们所知,我们首次表明,由于无CA超声促进药物(阿霉素,木犀草素和芹菜素)的摄取,声纳穿孔诱导细胞毒性增加。此处设计的美国微流控设备为用于早期药物发现,药物输送程序和毒性测量的昂贵且有争议的体内模型提供了一种体外替代方法。

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