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神经氨酸酶抑制剂前药(GS - 4104)在水溶液中的双指数分解

Biexponential decomposition of a neuraminidase inhibitor prodrug (GS-4104) in aqueous solution.

作者信息

Oliyai R, Yuan L C, Dahl T C, Swaminathan S, Wang K Y, Lee W A

机构信息

Gilead Sciences, Foster City, California 94404, USA.

出版信息

Pharm Res. 1998 Aug;15(8):1300-4. doi: 10.1023/a:1011964529805.

Abstract

PURPOSE

To examine the degradation kinetics and identify the degradation products of a neuraminidase inhibitor prodrug. GS-4104.

METHODS

Degradation was studied as a function of pH and temperature using a stability-indicating RP-HPLC assay. Degradation products were isolated by RP-HPLC and identified by NMR. Specific rate constants were calculated based on a scheme defined by products(s) analysis.

RESULTS

Three distinct degradation products were observed in the pH region studied (pH 2-8): isomer I, GS-4071, and isomer II. Isomer I resulted from the N, N-migration of the acetyl group. Gs-4071 was formed by the hydrolysis of the ethyl ester. Both GS-4071 and isomer I degraded further to isomer II by N, N-acyl migration and ester hydrolysis, respectively. The N, N-acyl migration reaction was characterized using two dimensional heteronuclear multiple bond correlation (HMBC) NMR. The decomposition kinetics of GS-4104 follow a biexponential decay at pH 2-7. The degradation kinetics of Gs-4104 at pH 4.0, 70 degree C were independent of the initial GS-4104 concentration.

CONCLUSIONS

The degradation profile indicates that development of solution or solid dosage from of GS-4104 with adequate shelf-life stability at room temperature is feasible.

摘要

目的

研究一种神经氨酸酶抑制剂前药GS - 4104的降解动力学并鉴定其降解产物。

方法

采用稳定性指示反相高效液相色谱法(RP - HPLC)研究降解与pH值和温度的关系。通过RP - HPLC分离降解产物并利用核磁共振(NMR)进行鉴定。基于产物分析定义的方案计算特定速率常数。

结果

在所研究的pH范围(pH 2 - 8)内观察到三种不同的降解产物:异构体I、GS - 4071和异构体II。异构体I是由乙酰基的N,N - 迁移产生的。GS - 4071是由乙酯水解形成的。GS - 4071和异构体I分别通过N,N - 酰基迁移和酯水解进一步降解为异构体II。利用二维异核多键相关(HMBC)核磁共振对N,N - 酰基迁移反应进行了表征。GS - 4104在pH 2 - 7时的分解动力学遵循双指数衰减。GS - 4104在pH 4.0、70℃时的降解动力学与初始GS - 4104浓度无关。

结论

降解情况表明开发在室温下具有足够保质期稳定性的GS - 4104溶液或固体剂型是可行的。

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