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通过紫外线辅助不可逆密封制备抗生物污染的聚乙二醇微通道和纳米通道

Fabrication of non-biofouling polyethylene glycol micro- and nanochannels by ultraviolet-assisted irreversible sealing.

作者信息

Kim Pilnam, Jeong Hoon Eui, Khademhosseini Ali, Suh Kahp Y

机构信息

School of Mechanical and Aerospace Engineering and Institute of Advanced Machinery and Design, Seoul National University, Seoul 151-742, Korea.

出版信息

Lab Chip. 2006 Nov;6(11):1432-7. doi: 10.1039/b610503c. Epub 2006 Sep 14.

Abstract

We present a simple and widely applicable method to fabricate micro- and nanochannels comprised entirely of crosslinked polyethylene glycol (PEG) by using UV-assisted irreversible sealing to bond partially crosslinked PEG surfaces. The method developed here can be used to form channels as small as approximately 50 nm in diameter without using a sophisticated experimental setup. The manufactured channel is a homogeneous conduit made completely from non-biofouling PEG, exhibits robust sealing with minimal swelling and can be used without additional surface modification chemistries, thus significantly enhancing reliability and durability of microfluidic devices. Furthermore, we demonstrate simple analytical assays using PEG microchannels combined with patterned arrays of supported lipid bilayers (SLBs) to detect ligand (biotin)-receptor (streptavidin) interactions.

摘要

我们提出了一种简单且广泛适用的方法,通过紫外线辅助不可逆密封来粘结部分交联的聚乙二醇(PEG)表面,从而制造完全由交联聚乙二醇组成的微米和纳米通道。这里开发的方法可用于形成直径小至约50纳米的通道,而无需使用复杂的实验装置。制造的通道是完全由抗生物污染的聚乙二醇制成的均匀管道,具有强大的密封性,肿胀最小,无需额外的表面改性化学处理即可使用,从而显著提高了微流控设备的可靠性和耐用性。此外,我们展示了使用聚乙二醇微通道结合支撑脂质双层(SLB)的图案阵列进行简单分析测定,以检测配体(生物素)-受体(链霉亲和素)相互作用。

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