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应用氨基酸酰胺作为手性助剂,在二氟二硝基苯和氰尿酸氯部分,实现了硒代蛋氨酸及其与蛋氨酸和半胱氨酸混合物的高效液相色谱对映体分离。

Application of amino acid amides as chiral auxiliaries in difluoro dinitro benzene and cyanuric chloride moieties for high-performance liquid-chromatographic enantioseparation of selenomethionine and its mixture with methionine and cysteine.

机构信息

Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, 247667, India.

出版信息

Amino Acids. 2012 Apr;42(4):1417-23. doi: 10.1007/s00726-011-0838-x. Epub 2011 Feb 4.

Abstract

L-Ala-NH(2), L-Val-NH(2), L-Leu-NH(2), and D-Phg-NH(2) were used as chiral auxiliaries to synthesize four chiral derivatizing reagents (CDRs) of each of the three categories, viz., difluoro dinitro benzene (DFDNB) based chiral variants, and cyanuric chloride (CC) based monochloro-s-triazine reagents (MCTs) and dichloro-s-triazine reagents (DCTs). DFDNB based chiral variants were synthesized by substituting one of the fluorine atoms of DFDNB with respective amino acid amides. The MCTs and DCTs were synthesized by substituting chlorine atom with aforesaid amino acid amide moieties in 6-methoxy dichloro-s-triazine and in CC, respectively. In total, 12 CDRs were characterized and used for microwave-assisted synthesis (45 s at 80% of 800 W using DFDNB-based chiral variants, 80 s at 90% of 800 W power using MCTs, and 50 s at 80% of 800 W power using DCTs) of diastereomers of (A) SeMet, and (B) mixture of (1) SeMet and Met, and (2) SeMet, Met, and Cys. The diastereomers were enantioseparated by reversed-phase high-performance liquid chromatography using gradient elution with mobile phases containing aq. TFA (0.1%)--MeCN in different compositions. The method was validated for accuracy, precision, and limit of detection.

摘要

L-丙氨酸-NH(2)、L-缬氨酸-NH(2)、L-亮氨酸-NH(2)和 D-对羟基苯甘氨酸-NH(2)被用作手性助剂,以合成三类中的每一类的四种手性衍生试剂 (CDR),即二氟二硝基苯 (DFDNB) 基手性变体,以及氰尿酰氯 (CC) 基单氯-s-三嗪试剂 (MCT) 和二氯-s-三嗪试剂 (DCT)。DFDNB 基手性变体通过用相应的氨基酸酰胺取代 DFDNB 的一个氟原子来合成。MCT 和 DCT 通过用上述氨基酸酰胺部分取代 6-甲氧基二氯-s-三嗪和 CC 中的氯原子来合成。总共对 12 种 CDR 进行了表征,并用于微波辅助合成 (使用基于 DFDNB 的手性变体在 800 W 的 80%功率下进行 45 秒,使用 MCT 在 800 W 的 90%功率下进行 80 秒,使用 DCT 在 800 W 的 80%功率下进行 50 秒) (A) SeMet 和 (B) (1) SeMet 和 Met 的混合物以及 (2) SeMet、Met 和 Cys 的非对映异构体。通过使用含有 0.1% aq.TFA-MeCN 的不同组成的流动相进行梯度洗脱,在手性高效液相色谱中对非对映异构体进行对映体分离。该方法经过准确性、精密度和检测限的验证。

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