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首页> 外文期刊>Brain pathology >Real-time quantitative polymerase chain reaction: a potential tool for genetic analysis in neuropathology.
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Real-time quantitative polymerase chain reaction: a potential tool for genetic analysis in neuropathology.

机译:实时定量聚合酶链反应:在神经病理学中进行遗传分析的潜在工具。

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摘要

Since its introduction in the early- to mid-1980s, the polymerase chain reaction (PCR) has been modified and optimized for an increasing number of applications. Early on, the focus was on the amplification of a specific nucleic acid template into quantities amenable to identification and experimental manipulation. While this remains an important application, recent technology has allowed the use of PCR to accurately quantitate the amount of a specific nucleic acid template present in a complex sample. Rather than simply analyzing the final product amount following the course of sequential cycles of amplification, quantitative PCR allows one to measure the accumulation of PCR product during the course of the reaction ("real-time PCR"). Under the appropriate conditions the number of PCR cycles required for the accumulation of a specific amount of product (during the exponential phase of the reaction) is a reflection of the relative amount of nucleic acid template present in the sample under analysis. Real-time quantitative PCR allows one to analyze a relatively large number of samples in a short period of time, potentially allowing multiple markers to be applied on a sample within a time frame consistent with clinical settings. In this overview, we will highlight the uses of real-time quantitative PCR as a potential diagnostic tool in neuropathology, focusing on the analysis of CNS tumors.
机译:自从1980年代初到中期引入聚合酶链反应(PCR)以来,已经对其进行了修改和优化,以适应越来越多的应用。早期,重点是将特定核酸模板扩增为适合鉴定和实验操作的数量。尽管这仍然是重要的应用,但最近的技术已允许使用PCR准确定量复杂样品中存在的特定核酸模板的数量。定量PCR不仅可以简单地分析连续扩增循环后的最终产物量,还可以测量反应过程中PCR产物的积累(“实时PCR”)。在适当的条件下,积累一定量的产物(反应的指数阶段)所需的PCR循环数反映了分析样品中存在的核酸模板的相对量。实时定量PCR允许人们在短时间内分析相对大量的样品,从而有可能允许在与临床设置一致的时间范围内将多种标记物应用于样品。在本概述中,我们将重点介绍实时定量PCR作为神经病理学中潜在的诊断工具的用途,重点是中枢神经系统肿瘤的分析。

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