首页> 美国卫生研究院文献>International Journal of Tryptophan Research : IJTR >Enantiomeric Separation of Monosubstituted Tryptophan Derivatives and Metabolites by HPLC with a Cinchona Alkaloid-Based Zwitterionic Chiral Stationary Phase and Its Application to the Evaluation of the Optical Purity of Synthesized 6-Chloro-l-Tryptophan
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Enantiomeric Separation of Monosubstituted Tryptophan Derivatives and Metabolites by HPLC with a Cinchona Alkaloid-Based Zwitterionic Chiral Stationary Phase and Its Application to the Evaluation of the Optical Purity of Synthesized 6-Chloro-l-Tryptophan

机译:基于金鸡纳生物碱的两性离子手性固定相的HPLC对映体分离单取代色氨酸衍生物和代谢物及其在光学合成6-氯-1-色氨酸的光学纯度评估中的应用

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摘要

6-Chlorotryptophan possesses unique bioactivity and can be used as a precursor for several bioactive compounds in medicinal chemistry. It was enantioselectively synthesized by condensing 6-chloroindole with racemic N-acetylserine, followed by enzymatic hydrolysis with l-aminoacylase (EC 3.5.1.14). The optical purity was examined by conducting high-performance liquid chromatography with a Cinchona alkaloid-based zwitterionic chiral stationary phase (CSP) [CHIRALPAK® ZWIX(+)], which bears a chiral trans-2-aminocyclohexanesulfonic acid moiety tagged at C-9 of the Cinchona alka-loid. The zwitterionic CSP enabled efficient enantiomeric separations of monosubstituted tryptophan derivatives 1-methyltryptophan, 5-methyltryptophan, 6-methyltryptophan, 5-methoxytryptophan, and 6-chlorotryptophan with a methanol/H2O (98/2) mobile phase containing formic acid (FA) and diethylamine (DEA) additives. The mobile phase contains 25–75 mM FA and 20–50 mM DEA, enabling good separation of the enantiomers of each tryptophan derivative (α > 1.25). Thus, the optical purity of the synthesized 6-chloro-l-tryptophan was easily determined (greater than 99.0%) using HPLC with the zwitterionic CSP.
机译:6-氯色氨酸具有独特的生物活性,可以用作药物化学中多种生物活性化合物的前体。通过将6-氯吲哚与外消旋的N-乙酰丝氨酸缩合,然后用1-氨基酰化酶进行酶促水解,可对映选择性合成(EC 3.5.1.14)。通过使用具有手性反式-2-氨基环己烷磺酸的金鸡纳生物碱类两性离子手性固定相(CSP)[CHIRALPAK ® ZWIX(+)]进行高效液相色谱法检查其光学纯度。在金鸡纳生物碱的C-9处标记的酸部分。两性离子CSP能够通过含有甲酸(FA)和乙酸的甲醇/水(98/2)流动相有效地分离单取代色氨酸衍生物1-甲基色氨酸,5-甲基色氨酸,6-甲基色氨酸,5-甲氧基色氨酸和6-氯色氨酸。二乙胺(DEA)添加剂。流动相含有25–75 mM FA和20–50 mM DEA,可以很好地分离每种色氨酸衍生物的对映体(α> 1.25)。因此,使用具有两性离子CSP的HPLC容易地确定合成的6-氯-1-色氨酸的光学纯度(大于99.0%)。

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