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Journal Articles

Purification of anionic fluorescent probes through precise fraction collection with a two-point detection system using multiple-stacking preparative capillary transient isotachophoresis

Haraga, Tomoko; Tsujimura, Hiroto*; Miyauchi, Saori*; Kamimura, Takuya*; Shibukawa, Masami*; Saito, Shingo*

Electrophoresis, 41(13-14), p.1152 - 1159, 2020/07

 Times Cited Count:7 Percentile:45.07(Biochemical Research Methods)

A novel combination of CE-based separation techniques was used for the precise fractionation of ionic compounds from impurities. The combination of on-capillary concentration and separation using transient isotachophoresis, with multiple injections and a two-point detection system provided higher efficiency, and accuracy at a microliter-scale injection volume, than when CE was individually used for purification. In this paper, we present successful applications of the CE fractionation techniques for the purification of fluorescein, fluorescein-4-isothiocyanate, two fluorescent metal ion probes, and a fluorescein-modified DNA aptamer. The purity of the isolated fluorescent probes ranged from 95 to 99%. The purified probe solutions were practical for use as purified stock solutions. The method developed was useful for the purification of anionic fluorescent reagents to be of ultratrace analytical grade for use with CE-LIF.

Patent

キャピラリー等速電気泳動法を用いる複数回大容量注入-濃縮-分離-分取精製法

原賀 智子

齋藤 伸吾*; 辻村 大翔*

JP, 2012-193742  Patent licensing information  Patent publication (In Japanese)

【課題】超高純度のFTC-ABNOTA、FTC-PDA等の水溶性物質の精製法を提供する。 【解決手段】キャピラリー等速電気泳動法を用いる複数回大容量注入-濃縮-分離-分取精製法が、精製対象水溶性物質を含むトリス-塩酸緩衝液がインレット側に配置され、トリスーグリシン緩衝液がアウトレット側に配置されて、上記精製対象水溶性物質がインレット側からアウトレット側に移動させられる工程(A)、上記精製対象水溶性物質がアウトレット側からインレット側に移動させられる工程(B)、トリスーグリシン緩衝液がインレット側及びアウトレット側に配置されて、上記精製対象水溶性物質がインレット側からアウトレット側に移動させられる工程(C)を実施し、上記工程(A)、(B)がそれぞれ2回以上繰り返され、下記式(1)が満たされる。 |μGLY-|<|μL-|<|μCL-|…(1) ただし、|μGLY-|はグリシンイオンの移動度、|μL-|は上記精製対象水溶性物質イオンの移動度、|μCL-|は塩化物イオンの移動度を示す。

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