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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Separation mechanism and determination of flavanones with capillary electrophoresis and high-performance liquid chromatography
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Separation mechanism and determination of flavanones with capillary electrophoresis and high-performance liquid chromatography

机译:毛细管电泳-高效液相色谱法分离黄烷酮

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To probe separation mechanism and determination with capillary zone electrophoresis (CZE) and liquid chromatography (1,C), nine compounds with identical flavanone skeleton were studied. Optimum separation of LC was attained with gradient of acetonitrile and 5 mM phosphate buffer (pH 6.9). For CE, electrolyte buffer was 4.5 mM SDS in 32 mM sodium tetraborate buffer (pH 9.2). The distinguishing feature in this work was successful separation of monohydroxyl stereoisomers by CZE. Polarity is generally increased with hydroxyl groups. In a separation mechanism study, polarity would be reduced by intramolecular hydrogen bond between hydroxyl of C5 and carbonyl group of C4. Comparison of the retention results among monohydroxyl flavanones shows polarity with hydroxyl at C6 the least, and that at C4' and C7 nearly equal. Also, elution order of flavones and flavanones would be adverse due to the hydroxyl at C3 in LC. From the numerical value pK(3) of flavanone, the C7-OH is the smallest, and two hydroxyl groups in an adjacent position is always less than the unique one caused by forming a stable 5-membered ring. Investigation of separation mechanism yield only the effect of constituent but also reasonable explanation for contradictory results between Wulf and our laboratory, this due to the hydroxyl at C3. (c) 2007 Elsevier B.V. All rights reserved.
机译:为了探测分离机理并通过毛细管区带电泳(CZE)和液相色谱(1,C)测定,研究了9种具有相同黄烷酮骨架的化合物。用乙腈和5 mM磷酸盐缓冲液(pH 6.9)梯度可实现LC的最佳分离。对于CE,电解质缓冲液为32 mM四硼酸钠缓冲液(pH 9.2)中的4.5 mM SDS。这项工作的显着特征是通过CZE成功分离了单羟基立体异构体。极性通常随羟基而增加。在分离机理研究中,极性将通过C5的羟基与C4的羰基之间的分子内氢键降低。单羟基黄烷酮的保留结果比较表明,C6处的羟基极性最小,C4'和C7处的极性几乎相等。同样,由于LC中C3处的羟基,黄酮和黄烷酮的洗脱顺序会很不利。从黄烷酮的数值pK(3)来看,C7-OH是最小的,并且在相邻位置的两个羟基总是小于形成一个稳定的5元环所引起的唯一羟基。对分离机理的研究不仅产生了成分的作用,而且还合理解释了Wulf和我们实验室之间的矛盾结果,这是由于C3处的羟基所致。 (c)2007 Elsevier B.V.保留所有权利。

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