Grisanti Giulia, Caprini Davide, Sinibaldi Giorgia, Scognamiglio Chiara, Silvani Giulia, Peruzzi Giovanna, Casciola Carlo Massimo
Department of Mechanical and Aerospace Engineering, Sapienza University of Rome, Via Eudossiana 18, 00186 Roma, Italy.
Center for Life Nano- & Neuro-Science, Fondazione Istituto Italiano di Tecnologia (IIT), Via Regina Elena 291, 00161 Roma, Italy.
Micromachines (Basel). 2021 Jun 3;12(6):658. doi: 10.3390/mi12060658.
An endothelial-lined blood vessel model is obtained in a PDMS (Polydimethylsiloxane) microfluidic system, where vascular endothelial cells are grown under physiological shear stress, allowing -like maturation. This experimental model is employed for enhanced drug delivery studies, aimed at characterising the increase in endothelial permeability upon microbubble-enhanced ultrasound-induced (USMB) cavitation. We developed a multi-step protocol to couple the optical and the acoustic set-ups, thanks to a 3D-printed insonation chamber, provided with direct optical access and a support for the US transducer. Cavitation-induced interendothelial gap opening is then analysed using a customised code that quantifies gap area and the relative statistics. We show that exposure to US in presence of microbubbles significantly increases endothelial permeability and that tissue integrity completely recovers within 45 min upon insonation. This protocol, along with the versatility of the microfluidic platform, allows to quantitatively characterise cavitation-induced events for its potential employment in clinics.
在聚二甲基硅氧烷(PDMS)微流控系统中获得了一种内皮细胞衬里的血管模型,其中血管内皮细胞在生理剪切应力下生长,实现类似成熟的过程。该实验模型用于增强药物递送研究,旨在表征微泡增强超声诱导(USMB)空化作用下内皮通透性的增加。由于采用了3D打印的超声照射腔室,具备直接光学通路和超声换能器支撑,我们开发了一种多步骤方案来耦合光学和声学装置。然后使用定制代码分析空化诱导的内皮间隙开放情况,该代码可量化间隙面积和相关统计数据。我们表明,在微泡存在的情况下暴露于超声会显著增加内皮通透性,并且在超声照射后45分钟内组织完整性完全恢复。该方案以及微流控平台的多功能性,使得能够定量表征空化诱导的事件,以便其在临床中的潜在应用。