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使用倾斜辐射加热系统的基于芯片的温度梯度毛细管电泳进行DNA突变检测。

DNA mutation detection with chip-based temperature gradient capillary electrophoresis using a slantwise radiative heating system.

作者信息

Zhang Hui-Dan, Zhou Jing, Xu Zhang-Run, Song Jin, Dai Jing, Fang Jin, Fang Zhao-Lun

机构信息

Department of Cell Biology, Key Lab of Cell Biology of Ministry of Public Health, China Medical University, Shenyang, 110001, China.

出版信息

Lab Chip. 2007 Sep;7(9):1162-70. doi: 10.1039/b701649b. Epub 2007 Jun 26.

DOI:10.1039/b701649b
PMID:17713615
Abstract

A simple and robust chip-based temperature gradient capillary electrophoresis (TGCE) system was developed for DNA mutation/single-nucleotide polymorphism (SNP) analysis using a radiative heating system. Reproducible, stable and uniform temperature gradients were established along a 3 cm length of the electrophoretic separation channel using a single thermostated aluminium heater plate. The heater was slightly slanted relative to the plane of the glass chip at 0.2-1.3 degrees by inserting thin spacers between the plate and chip at one end to produce differences in radiative heating that created the temperature gradient. On-chip TGCE analyses of 4 mutant DNA model samples amplified from plasmid templates, each containing a single base substitution, with a wide range of melting temperatures, showed that mutations were successfully detected under a wide temperature gradient of 10 degrees C and within a short gradient region of about 3 cm (3.3 degrees C cm(-1) gradient). The radiative heating system was able to establish stable spatial temperature gradients along short microfluidic separation channels using simple peripheral equipment and manipulation while ensuring good resolution for detecting a wide range of mutations. Effectiveness of the system was demonstrated by the successful detection of K-ras gene mutations in 6 colon cancer cell lines.

摘要

开发了一种基于芯片的简单且稳健的温度梯度毛细管电泳(TGCE)系统,用于使用辐射加热系统进行DNA突变/单核苷酸多态性(SNP)分析。使用单个恒温铝加热板,在3厘米长的电泳分离通道上建立了可重现、稳定且均匀的温度梯度。通过在加热板和芯片一端之间插入薄垫片,使加热板相对于玻璃芯片平面倾斜0.2 - 1.3度,从而产生辐射加热差异,进而形成温度梯度。对从质粒模板扩增的4个突变DNA模型样品进行芯片上TGCE分析,每个样品都包含一个单碱基替换,且具有广泛的解链温度范围,结果表明,在10摄氏度的宽温度梯度下以及约3厘米的短梯度区域内(3.3摄氏度厘米⁻¹梯度)成功检测到了突变。辐射加热系统能够使用简单的外围设备和操作,沿着短微流控分离通道建立稳定的空间温度梯度,同时确保在检测广泛突变时具有良好的分辨率。通过成功检测6种结肠癌细胞系中的K-ras基因突变,证明了该系统的有效性。

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