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Basic principles of fluorescence and energy transfer applied to real-time PCR

机译:荧光和能量转移的基本原理应用于实时PCR

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Fluorescence is highly sensitive to environment, and the distance separating fluorophores and quencher molecules can provide the basis for effective homogeneous nucleic acid hybridization assays. Molecular interactions leading to fluorescence quenching include collisions, ground state and excited state complex formation, and long-range dipole-coupled energy transfer. These processes are well understood and equations are provided for estimating the effects of each process on fluorescence intensity. Estimates for the fluorescein-tetramethylrhodamine donor-acceptor pair reveal the relative contributions of dipole-coupled energy transfer, collisional quenching, and static quenching in several common assay formats, and illustrate that the degree of quenching is dependent upon the hybridization complex formed and the manner of label attachment.
机译:荧光对环境高度敏感,并且分隔荧光团和猝灭剂分子的距离可以为有效的均相核酸杂交测定提供基础。导致荧光猝灭的分子相互作用包括碰撞,基态和激发态复合物的形成,以及长距离偶极耦合的能量转移。这些过程是众所周知的,并且提供了方程式以估计每个过程对荧光强度的影响。荧光素-四甲基罗丹明供体-受体对的估计揭示了偶极耦合能量转移,碰撞猝灭和静态猝灭在几种常见测定形式中的相对贡献,并说明了猝灭程度取决于形成的杂交复合物和方式标签附件。

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