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通过热机械变形制备的用于单分子分析的聚合物纳米通道。

Polymer nanochannels fabricated by thermomechanical deformation for single-molecule analysis.

作者信息

Sivanesan Ponniah, Okamoto Kenji, English Douglas, Lee Cheng S, Devoe Don L

机构信息

Calibrant Biosystems, 7507 Standish Place, Rockville, Maryland 20855, USA.

出版信息

Anal Chem. 2005 Apr 1;77(7):2252-8. doi: 10.1021/ac048923q.

Abstract

A simple method for fabricating nanoscale channels based on thermomechanical deformation of rigid polymer substrates is demonstrated. Polycarbonate preforms containing microchannels with cross-sectional dimensions on the order of tens of micrometers are controllably deformed to produce submicrometer dimensions. The reduced channel dimensions are achieved by heating the preform while applying a uniaxial tensile force to reduce channel cross sections through the Poisson effect. Nanochannels with circular or elliptical cross sections are defined by varying the channel position and preform geometry prior to deformation. Arrays of parallel nanochannels with critical dimensions down to 400 nm are described. Using the fabrication method, a nanochannel network is fabricated for the detection of single protein molecules via confocal fluorescence microscopy. The chip includes a detection channel with cross-sectional dimensions approaching the confocal volume dimensions of the detection optics and a larger adjacent reference channel used to optimize focusing. Detection of fluorescently labeled bovine serum albumin at 15 and 150 nM concentrations is presented, demonstrating the ability to perform single-molecule fluorescence measurements in polycarbonate chips using visible wavelengths for excitation and detection.

摘要

展示了一种基于刚性聚合物基板热机械变形制造纳米级通道的简单方法。含有横截面尺寸为几十微米的微通道的聚碳酸酯预制件被可控地变形以产生亚微米尺寸。通过在施加单轴拉力的同时加热预制件,利用泊松效应减小通道横截面,从而实现通道尺寸的减小。在变形之前,通过改变通道位置和预制件几何形状来定义具有圆形或椭圆形横截面的纳米通道。描述了临界尺寸低至400nm的平行纳米通道阵列。使用该制造方法,制造了一个纳米通道网络,用于通过共聚焦荧光显微镜检测单个蛋白质分子。该芯片包括一个横截面尺寸接近检测光学器件共聚焦体积尺寸的检测通道和一个用于优化聚焦的较大相邻参考通道。展示了对浓度为15和150 nM的荧光标记牛血清白蛋白的检测,证明了使用可见波长进行激发和检测在聚碳酸酯芯片中进行单分子荧光测量的能力。

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