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SU-8 微流控芯片的磷脂盘动态涂层。

Dynamic coating of SU-8 microfluidic chips with phospholipid disks.

机构信息

Division of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Helsinki, Helsinki, Finland.

出版信息

Electrophoresis. 2010 Aug;31(15):2566-74. doi: 10.1002/elps.201000130.

Abstract

In this work, PEG-stabilized phosphatidylcholine lipid aggregates (disks), mimicking mammalian cell membranes, were introduced as a new biofouling resistant coating for SU-8 polymer microchannels. A rapid and simple method was developed for immobilization of PEGylated phosphatidylcholine disks in microchannels. Microfluidic chips made from SU-8, PDMS, or glass were dynamically coated with the PEGylated disks followed by characterization of their surface chemistry before and after coating. On the basis of the observed changes in EOF and nonspecific protein adsorption, the affinity of the PEGylated disks was shown to be particularly strong toward SU-8. The PEG-lipid coating enabled permanent change in EOF in SU-8 microchannels with an initial value of 4.5 x 10(-8) m(2) V(-1) s(-1), decreasing to 2.1 x 10(-8) m(2) V(-1) s(-1) (immediately after modification), and, eventually, to 1.5 x 10(-8) m(2) V(-1) s(-1) (7 days after modification) for 9 mM sodium borate (pH 10.5) as BGE. As determined by the Wilhelmy plate measurements and microchip-CE analysis of BSA, the PEG-lipid coating also enabled efficient biofouling shield against protein adsorption, similar to that of low amounts of SDS (3.5 mM) or Tween-20 (80 microM) as buffer additives. These results suggest that dynamically attached PEG-lipid aggregates provide stable, biomimicking surface modification that efficiently reduces biofouling on SU-8.

摘要

在这项工作中,聚乙二醇稳定的磷脂脂质聚集体(圆盘)被引入作为一种新的抗生物污染涂层,用于 SU-8 聚合物微通道。开发了一种快速简便的方法,用于将 PEG 化的磷脂圆盘固定在微通道中。由 SU-8、PDMS 或玻璃制成的微流控芯片随后用 PEG 化的圆盘进行动态涂层,并在涂层前后对其表面化学进行表征。根据观察到的EOF 和非特异性蛋白质吸附变化,表明 PEG 化圆盘对 SU-8 的亲和力特别强。PEG-脂质涂层能够永久改变 SU-8 微通道中的 EOF,初始值为 4.5 x 10(-8) m(2) V(-1) s(-1),降低至 2.1 x 10(-8) m(2) V(-1) s(-1)(修饰后立即),最终在 9 mM 硼酸钠(pH 10.5)作为 BGE 时降低至 1.5 x 10(-8) m(2) V(-1) s(-1)。通过Wilhelmy 板测量和微芯片 CE 分析 BSA 确定,PEG-脂质涂层还能够有效地防止蛋白质吸附的生物污染屏蔽,类似于低浓度 SDS(3.5 mM)或 Tween-20(80 microM)作为缓冲添加剂。这些结果表明,动态附着的 PEG-脂质聚集体提供了稳定的、仿生表面修饰,有效地减少了 SU-8 上的生物污染。

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