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Separation of near-infrared fluorescent conjugates of dATP and related compounds by capillary electrophoresis

机译:毛细管电泳分离dATP和相关化合物的近红外荧光偶联物

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Capillary electrophoresis was examined as a means for the separation and quantitation of deoxyadenosine triphosphate (dATP) and other nucleotides that were labeled with the near-infrared fluorescent dye IRD700 or related tags. Under the final optimized conditions the labeled dATP was separated from several possible impurities, including the unconjugated forms of IRD700 and dATP, as well as dADP, dAMP and their corresponding IRD700 conjugates. The assay was performed under two sets of conditions. First, the sample was injected onto a 50 cmx75 mu m I.D. fused-silica capillary at 25 kV in the presence of a pH 9.5, 140 mM berate running buffer. The resulting peaks were monitored at both 254 and 680 nm, where the latter wavelength was used to identify any species that contained the IRD700 label. A second injection was then performed under the same conditions but with a fixed concentration of dTTP now being added to the running buffer; this resulted in the formation of a complex between the dTTP and any dATP, dADP or dAMP-containing components, which changed their rates of migration and allowed them to be differentiated from unconjugated IRD700 or dye contaminants. Only 6 nl of a 1:10 diluted sample were required per analysis. The limit of detection at this injection volume was approximately 1.0 mu M (or 6.10(-15) mel for a 6-nl injection) for each monitored component. The Linear range extended up to at least 80 mu M. The analysis time was 20 min per injection and the day-to-day precision was +/-2-3%. The same method was also found to be useful in examining related conjugates, such as those based on the dye IRD40. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 6]
机译:检查了毛细管电泳,作为分离和定量脱氧腺苷三磷酸(dATP)和其他用近红外荧光染料IRD700或相关标签标记的核苷酸的方法。在最终优化的条件下,将标记的dATP与几种可能的杂质分离,包括IRD700和dATP的未结合形式以及dADP,dAMP及其相应的IRD700结合物。该测定在两组条件下进行。首先,将样品注射到50cm×75μmI.D.上。在pH 9.5、140 mM贝拉特运行缓冲液存在的情况下,在25 kV下使用熔融石英毛细管。分别在254和680 nm处监测所得的峰,其中后一个波长用于识别任何包含IRD700标签的物质。然后在相同条件下进行第二次进样,但将固定浓度的dTTP加入到运行缓冲液中。这导致dTTP与任何含有dATP,dADP或dAMP的组分之间形成复合物,从而改变了它们的迁移速率并使它们与未结合的IRD700或染料污染物区分开。每次分析仅需要6毫升的1:10稀释样品。对于每个监测的组分,在此进样量下的检测极限约为1.0μM(对于6毫升进样,为6.10(-15)mel)。线性范围扩展到至少80μM。分析时间为每次进样20分钟,日常精度为+/- 2-3%。还发现相同的方法可用于检查相关的偶联物,例如基于染料IRD40的偶联物。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:6]

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