van den Broek M R P, Versluis M, van den Berg A, Segers T
BIOS/Lab on a Chip Group, Max Planck Center Twente for Complex Fluid Dynamics, University of Twente, Enschede, The Netherlands.
Physics of Fluids Group, University of Twente, Enschede, The Netherlands.
Microsyst Nanoeng. 2024 Aug 30;10(1):120. doi: 10.1038/s41378-024-00760-y.
Functionalized monodisperse microbubbles have the potential to boost the sensitivity and efficacy of molecular ultrasound imaging and targeted drug delivery using bubbles and ultrasound. Monodisperse bubbles can be produced in a microfluidic flow focusing device. However, their functionalization and sequential use require removal of the excess lipids from the bubble suspension to minimize the use of expensive ligands and to avoid competitive binding and blocking of the receptor molecules. To date, excess lipid removal is performed by centrifugation, which is labor intensive and challenging to automate. More importantly, as we show, the increased hydrostatic pressure during centrifugation can reduce bubble monodispersity. Here, we introduce a novel automated microfluidic 'washing' method. First, bubbles are injected in a microfluidic chamber 1 mm in height where they are left to float against the top wall. Second, lipid-free medium is pumped through the chamber to remove excess lipids while the bubbles remain located at the top wall. Third, the washed bubbles are resuspended and removed from the device into a collection vial. We demonstrate that the present method can (i) reduce the excess lipid concentration by 4 orders of magnitude, (ii) be fully automated, and (iii) be performed in minutes while the size distribution, functionality, and acoustic response of the bubbles remain unaffected. Thus, the presented method is a gateway to the fully automated production of functionalized monodisperse microbubbles.
功能化单分散微泡有潜力提高分子超声成像以及利用气泡和超声进行靶向药物递送的灵敏度和功效。单分散气泡可在微流控流动聚焦装置中产生。然而,其功能化及顺序使用需要从气泡悬浮液中去除多余脂质,以尽量减少昂贵配体的使用,并避免受体分子的竞争性结合和阻断。到目前为止,多余脂质的去除是通过离心进行的,这既耗费人力,又难以实现自动化。更重要的是,正如我们所展示的,离心过程中增加的静水压力会降低气泡的单分散性。在此,我们介绍一种新型的自动化微流控“清洗”方法。首先,将气泡注入高度为1毫米的微流控腔室中,使其靠顶壁漂浮。其次,将无脂质的介质泵入腔室以去除多余脂质,而气泡仍位于顶壁。第三,将清洗后的气泡重新悬浮并从装置中取出到收集瓶中。我们证明,本方法能够(i)将多余脂质浓度降低4个数量级,(ii)实现完全自动化,以及(iii)在几分钟内完成,同时气泡的尺寸分布、功能和声响应不受影响。因此,所提出的方法是实现功能化单分散微泡全自动生产的途径。