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一种基于紧凑型流式细胞仪的分析系统,用于DNA片段大小测定和单分子检测。

An analytical system based on a compact flow cytometer for DNA fragment sizing and single-molecule detection.

作者信息

Habbersett Robert C, Jett James H

机构信息

Bioscience Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Cytometry A. 2004 Aug;60(2):125-34. doi: 10.1002/cyto.a.20042.

Abstract

BACKGROUND

Previous reports have demonstrated accurate DNA fragment sizing of linear DNA fragments, from 564 to approximately 4 x 10(5) bp, in a flow system. B-phycoerythrin (B-PE), commonly used in conventional cytometric applications that require high-sensitivity, was the first fluorophore detected in flow at the single-molecule level.

METHODS

Dilute solutions of stained DNA fragments or B-PE were analyzed in a simplified, compact flow system, with enhanced performance and lower cost, utilizing a solid-state laser and a single-photon sensing avalanche photodiode detector (SSAPD). Extensive data processing and display software, developed specifically for the photon-counting data stream, extracts correlated height, width, and area features from bursts of photons due to discrete molecules passing through the sensing region in the flow channel.

RESULTS

DNA fragment sizing in flow has now been demonstrated for SYTOX-orange-stained fragments ranging in size over 3.4 orders of magnitude, from 125 to 5 x 10(5) bp. For Lambda bacteriophage DNA (lambda DNA; 48.5 kbp) a CV of 1.2 % has been achieved. Analysis of a femtomolar B-PE solution demonstrates that the bursts of photons from individual molecules can be baseline-resolved with 0.5 mW of laser power at a signal to noise ratio (SNR) of approximately 30, with approximately 100 photons detected from each molecule.

CONCLUSIONS

A compact, low-power, high-sensitivity system detects DNA fragments as small as 125 bp or individual B-PE molecules in a flowing liquid stream. Demonstrated linearity, sensitivity, and resolution indicate that <1.0 mW of laser power is optimal, permitting further miniaturization of the system and additional cost reduction. Comprehensive analytical software exploits the standard cytometric paradigm of multiple 2D graphs and gating to extract features from classes of individually analyzed biomolecules. This complete system is thus poised to engage high-sensitivity applications not amenable to conventional flow cytometric instrumentation.

摘要

背景

先前的报告已证明在流动系统中可对大小从564至约4×10⁵ bp的线性DNA片段进行准确的DNA片段大小测定。藻红蛋白B(B-PE)常用于需要高灵敏度的传统细胞计数应用中,它是在流动中于单分子水平首次检测到的荧光团。

方法

利用固态激光器和单光子传感雪崩光电二极管探测器(SSAPD),在一个简化、紧凑且性能增强、成本较低的流动系统中分析染色的DNA片段或B-PE的稀溶液。专门为光子计数数据流开发的广泛数据处理和显示软件,从由于离散分子通过流动通道中的传感区域而产生的光子爆发中提取相关的高度、宽度和面积特征。

结果

现已证明,对于用SYTOX-橙色染色的大小范围超过3.4个数量级(从125至5×10⁵ bp)的片段,可在流动中进行DNA片段大小测定。对于λ噬菌体DNA(λ DNA;48.5 kbp),变异系数达到了1.2%。对飞摩尔浓度的B-PE溶液的分析表明,在约30的信噪比下,用0.5 mW的激光功率可从单个分子的光子爆发中分辨出基线,每个分子大约检测到100个光子。

结论

一个紧凑、低功率、高灵敏度的系统可在流动的液流中检测小至125 bp的DNA片段或单个B-PE分子。所展示的线性、灵敏度和分辨率表明,<1.0 mW的激光功率是最佳的,这使得系统能够进一步小型化并进一步降低成本。综合分析软件利用多个二维图和门控的标准细胞计数范式,从单独分析的生物分子类别中提取特征。因此,这个完整的系统有望用于传统流式细胞仪无法适用的高灵敏度应用。

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