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首页> 外文期刊>Journal of liquid chromatography and related technologies >Separation of selected bile acids by TLC. IX. Separation on silica gel 60 and on silica gel 60F(254) aluminum plates impregnated with Cu(II), Ni(II), Fe(II), and Mn(II) cations
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Separation of selected bile acids by TLC. IX. Separation on silica gel 60 and on silica gel 60F(254) aluminum plates impregnated with Cu(II), Ni(II), Fe(II), and Mn(II) cations

机译:通过TLC分离选定的胆汁酸。九。硅胶60和浸渍有Cu(II),Ni(II),Fe(II)和Mn(II)阳离子的硅胶60F(254)铝板上的分离

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摘要

Seven selected bile acids: cholic acid (C), glycocholic acid (GC), glycolithocholic acid (GLC), deoxycholic acid (DC), chenodeoxycholic acid (CDC), glycodeoxycholic acid (GDC), and lithocholic acid (LC) were separated using adsorption TLC on aluminum plates precoated with silica gel 60 and on aluminum plates precoated with silica gel 60F(254). The plates were impregnated with 1%, 2.5%, and 5% aqueous solutions of the following salts: CuSO4, MnSO4, NiSO4, and FeSO4. The mixtures of n-hexane-ethyl-acetate-acetic acid in the volume compositions: 22:20:5 and 25:20:2 (v/v/v) for both aluminum plates, 22:22:5 (v/v/v) only for #1.05554 plates and 25:20:5 (v/v/v) for #1.05553 plates were used as mobile phases. These mobile phases were not effective for the separation of bile acids on non impregnated silica gel 60 and silica 60F(254) aluminum plates at 18 degrees C. The plates impregnated with the salts whose application resulted in Delta R-F >= 0.05 and R-S > 1 for all neighboring pairs of examined bile acids were considered the most effective for bile acids separation. It was observed that impregnation of silica gel 60 and silica 60F254 aluminum plates with aqueous solutions of CuSO4, MnSO4, NiSO4, and FeSO4 improved the separation of GC/GDC and C/GLC, which separated poorly on aluminum plates precoated with non impregnated silica gel 60 and 60F(254). Moreover, it was stated that the use of a mobile phase in volume composition 25:20:2 (v/v/v) and aluminum plates precoated with silica gel 60F(254) impregnated with a 5% aqueous solution of CuSO4 made the separation of all neighboring pairs of investigated bile acids possible, in comparison with their separation on non impregnated aluminum plates.
机译:使用以下方法分离了七个选定的胆汁酸:胆酸(C),糖胆酸(GC),羟乙撑胆酸(GLC),脱氧胆酸(DC),鹅去氧胆酸(CDC),糖脱氧胆酸(GDC)和石胆酸(LC)在预先涂有硅胶60的铝板上和预先涂有硅胶60F(254)的铝板上吸附TLC。用以下盐的1%,2.5%和5%的水溶液浸渍板:CuSO4,MnSO4,NiSO4和FeSO4。两种铝板的体积组成为22:20:5和25:20:2(v / v / v)的正己烷-乙酸乙酯-乙酸的混合物22:22:5(v / v) / v)仅用于#1.05554板,而25:20:5(v / v / v)对于#1.05553板用作流动相。这些流动相对于在18摄氏度下未浸渍的硅胶60和二氧化硅60F(254)铝板上的胆汁酸分离无效。该板用盐浸渍,其施加的结果导致Delta RF> = 0.05和RS> 1对于所有相邻对的胆汁酸,被认为对分离胆汁酸最有效。观察到,用CuSO4,MnSO4,NiSO4和FeSO4的水溶液浸渍硅胶60和硅胶60F254铝板可改善GC / GDC和C / GLC的分离,这在用未浸渍硅胶预涂的铝板上分离性差。 60和60F(254)。此外,据报道,使用体积比为25:20:2(v / v / v)的流动相和预先涂有5%CuSO4水溶液的60F(254)硅胶的铝板进行了分离与在未浸渍的铝板上分离得到的胆汁酸相比,可以对所有相邻的胆汁酸进行分析。

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