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Fluorescent liposome flow markers for microscale particle imagevelocimetry

机译:荧光脂质体流动标记物,用于微米级颗粒图像测速

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Unilamellar liposomes carrying both encapsulated and surface-immobilized fluorophores have been synthesized as novel fluorescent markers to image flow profiles in microfabricated structures. The unilamellar liposomes were made with phospholipids and cholesterol by extrusion through a polycarbonate membrane, They contained carboxyfluorescein in the aqueous core and fluorescein-labeled lipids in the bilayer to render them both a surface and volume fluorescer, maximizing their fluorescence intensity. The lipid composition was chosen to impart a net negative charge to liposomes to minimize self-aggregation as well as interaction with negatively charged glass surfaces of the channels. These liposomes were monodisperse (mean diameter 283 nm), neutrally buoyant, and hydrophilic and exhibited no adsorption on glass surfaces. Unlike polystyrene spheres, they were readily broken up by surfactants, thereby allowing for easy and complete removal from microfluidic channels. The fluorescent liposomes were used to investigate pressure-driven now in an offset cross intersection in a microfluidic chip and provided images with excellent signal-to-noise ratio. A novel computational scheme that is particularly suitable for analyzing particle-image velocimetry data in micrometer-scale flow channels was employed to analyze the images. These liposomes are easily synthesized and can be custom-made for various applications to offer a broad range of surface and volume characteristics such as charge, size, and surface chemistry.
机译:载有封装的和表面固定的荧光团的单层脂质体已被合成为新型荧光标记,可在微细结构中成像图像。单层脂质体是通过磷脂和胆固醇通过聚碳酸酯膜挤出而制成的,它们在水性核心中包含羧基荧光素,在双层中包含荧光素标记的脂质,使它们既具有表面荧光剂又具有体积荧光剂,从而最大程度地增强了荧光强度。选择脂质组合物以赋予脂质体净负电荷,以最小化自身聚集以及与通道的带负电的玻璃表面的相互作用。这些脂质体是单分散的(平均直径283 nm),具有中性浮力和亲水性,在玻璃表面上没有吸附。与聚苯乙烯球不同,它们很容易被表面活性剂破坏,从而可以轻松,完全地从微流体通道中去除。现在,荧光脂质体用于研究微流控芯片中交叉交叉点的压力驱动,并提供具有出色信噪比的图像。采用了一种新的计算方案,该方案特别适用于分析微米级流道中的颗粒图像测速数据,以分析图像。这些脂质体易于合成,可以针对各种应用进行定制,以提供广泛的表面和体积特征,例如电荷,尺寸和表面化学性质。

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