Archer Marie J, Long Nina, Lin Baochuan
US Naval Research Laboratory, Center for Bio/Molecular Science & Engineering, 4555 Overlook Avenue, S W, Washington, DC, 20375, USA.
BMC Res Notes. 2010 Apr 20;3:109. doi: 10.1186/1756-0500-3-109.
The detection sensitivity of low abundance pathogenic species by polymerase chain reaction (PCR) can be significantly enhanced by removing host nucleic acids. This selective removal can be performed using a magnetic bead-based solid phase with covalently immobilized capture probes. One of the requirements to attain efficient host background nucleic acids subtraction is the capture probe characteristics.
In this study we investigate how various capture probe characteristics influence the subtraction efficiency. While the primary focus of this report is the impact of probe length, we also studied the impact of probe conformation as well as the amount of capture probe attached to the solid phase. The probes were immobilized on magnetic microbeads functionalized with a phosphorous dendrimer. The subtraction efficiency was assessed by quantitative real time PCR using a single-step capture protocol and genomic DNA as target. Our results indicate that short probes (100 to 200 bp) exhibit the best subtraction efficiency. Additionally, higher subtraction efficiencies with these probes were obtained as the amount of probe immobilized on the solid phase decreased. Under optimal probes condition, our protocol showed a 90 - 95% subtraction efficiency of human genomic DNA.
The characteristics of the capture probe are important for the design of efficient solid phases. The length, conformation and abundance of the probes determine the capture efficiency of the solid phase.
通过去除宿主核酸,可显著提高聚合酶链反应(PCR)对低丰度致病物种的检测灵敏度。这种选择性去除可使用共价固定捕获探针的磁珠基固相来进行。实现高效宿主背景核酸扣除的要求之一是捕获探针的特性。
在本研究中,我们研究了各种捕获探针特性如何影响扣除效率。虽然本报告的主要重点是探针长度的影响,但我们也研究了探针构象以及附着在固相上的捕获探针数量的影响。探针固定在由磷树枝状大分子功能化的磁性微珠上。使用单步捕获方案和基因组DNA作为靶标,通过定量实时PCR评估扣除效率。我们的结果表明,短探针(100至200 bp)表现出最佳的扣除效率。此外,随着固定在固相上的探针数量减少,使用这些探针可获得更高的扣除效率。在最佳探针条件下,我们的方案显示人类基因组DNA的扣除效率为90 - 95%。
捕获探针的特性对于高效固相的设计很重要。探针的长度、构象和丰度决定了固相的捕获效率。