首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >LC-1H NMR used for determination of the elution order of S-naproxen glucuronide isomers in two isocratic reversed-phase LC-systems.
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LC-1H NMR used for determination of the elution order of S-naproxen glucuronide isomers in two isocratic reversed-phase LC-systems.

机译:LC-1H NMR用于确定两个等度反相LC系统中S-萘普生葡糖醛酸苷异构体的洗脱顺序。

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The reactive metabolite S-naproxen-beta-1-O-acyl glucuronide was purified from human urine using solid phase extraction (SPE) and preparative HPLC. The structure was confirmed by 600 MHz 1H NMR. Directly coupled 600 MHz HPLC-1H NMR was used to assign the peaks in chromatograms obtained when analysing a sample containing S-naproxen aglycone and the 1-, 2-, 3-, and 4-isomers of S-naproxen-beta-1-O-acyl glucuronide in two simple isocratic reversed phase HPLC-systems. Using mobile phase 1 (50 mM formate buffer pH 5.75/acetonitrile 75:25 v/v) the elution order was: 4-O-acyl isomers, beta-1-O-acyl glucuronide, 3-O-acyl isomers, 2-O-acyl isomers, and S-naproxen aglycone. Using mobile phase II (25 mM potassium phosphate pH 7.40/acetonitrile 80:20 v/v) the elution order was: alpha/beta-4-O-acyl isomers, S-naproxen aglycone, beta-1-O-acyl glucuronide, 3-O-acyl isomers, and alpha/beta-2-O-acyl isomers. In both systems the elution order for the 2-, 3- and 4-O-acyl isomers corresponded with previously published results for 2-, 3-, and 4-fluorobenzoic acid glucuronide isomers determined by reversed phase HPLC-1H NMR (U.G. Sidelmann, S.H. Hansen, C. Gavaghan, A.W. Nicholls, H.A.J. Carless, J.C. Lindon, I.D. Wilson, J.K. Nicholson, J. Chromatogr. B Biomed. Appl. 685 (1996) 113-122]. The alpha-1-O-acyl isomer was found to be present at approximately 3% of the initial S-naproxen-beta-1-O-acyl glucuronide concentration in the glucuronide isomer mixture after 6 h of incubation at pH 7.40 and 37 degrees C. In both HPLC systems it eluted just before the beta-1-O-acyl glucuronide well separated from other isomers. Investigators should consider the possible formation of a alpha-1-O-acyl isomer when studying glucuronide reactivity and degradation.
机译:使用固相萃取(SPE)和制备型HPLC从人尿中纯化反应性代谢物S-萘普生-β-1-O-酰基葡萄糖醛酸。通过600MHz 1H NMR确认结构。当分析包含S-萘普生糖苷配基和S-萘普生-β-1-的1-,2-,3-和4-异构体的样品时,使用直接耦合的600 MHz HPLC-1H NMR分配色谱图中的峰。两种简单的等度反相HPLC系统中的O-酰基葡糖醛酸苷。使用流动相1(50 mM甲酸缓冲液pH 5.75 /乙腈75:25 v / v)洗脱顺序为:4-O-酰基异构体,β-1-O-酰基葡糖醛酸苷,3-O-酰基异构体,2- O-酰基异构体和S-萘普生糖苷配基。使用流动相II(25 mM磷酸钾pH 7.40 /乙腈80:20 v / v),洗脱顺序为:α/β-4-O-酰基异构体,S-萘普生糖苷配基,β-1-O-酰基葡糖醛酸苷, 3-O-酰基异构体和α/β-2-O-酰基异构体。在这两个系统中,2-,3-和4-O-酰基异构体的洗脱顺序与先前公布的通过反相HPLC-1H NMR测定的2-,3-和4-氟苯甲酸葡萄糖醛酸苷异构体的结果(UG Sidelmann ,SH Hansen,C。Gavaghan,AW Nicholls,HAJ Carless,JC Lindon,ID Wilson,JK Nicholson,J。Chromatogr。B Biomed。Appl。685(1996)113-122]。α-1-O-酰基异构体在pH 7.40和37°C下孵育6小时后,发现葡萄糖醛酸异构体混合物中的S-萘普生-β-1-O-酰基葡萄糖醛酸初始浓度约为初始浓度的3%。在两个HPLC系统中,其洗脱时间均为在将β-1-O-酰基葡糖醛酸与其他异构体充分分离之前,研究人员在研究葡糖醛酸的反应性和降解时应考虑可能形成α-1-O-酰基异构体。

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