ACCURACY;
ARTICLE;
CHEMICAL REACTION KINETICS;
CONCENTRATION RESPONSE;
DRUG DEGRADATION;
DRUG DETERMINATION;
DRUG FORMULATION;
PH;
ROOM TEMPERATURE;
SPECTROPHOTOMETRY;
TABLET;
VALIDATION PROCESS;
Enantiomeric determination of pantoprazole in human plasma plasma by multidimentional high performance liquid chromatography
Cass QB et al. (2001) Enantiomeric determination of pantoprazole in human plasma plasma by multidimentional high performance liquid chromatography. J Chromatogr B 766: 153-160.
Chiral resolution of pantoprazole and related sulphoxide by complex formation with bovine serum albumin in capillary electrophoresis
Eberle D et al. (1997) Chiral resolution of pantoprazole and related sulphoxide by complex formation with bovine serum albumin in capillary electrophoresis. J Chromatogr A 759: 185-192.
Reappraisal of hypothesis testing for method validation: Detection of systematic error by comparing the means of two methods or of two laboratories
Hartmann C et al. (1995) Reappraisal of hypothesis testing for method validation: Detection of systematic error by comparing the means of two methods or of two laboratories. Anal Chem 67: 4491-4499.
+-ATPase inhibitor (BY 1023/SK & F 96 022) and its sulphones metabolite in serum or plasma by direct injection and fully automated precolumn sample cleanup
+-ATPase inhibitor (BY 1023/SK & F 96 022) and its sulphones metabolite in serum or plasma by direct injection and fully automated precolumn sample cleanup. J Chromatogr B: Biomed Sci Appl 529: 389-401.
High performance liquid chromatographic determination of pantoprazole in tablet dosage form
Mansour AM and Sorour OM (2001) High performance liquid chromatographic determination of pantoprazole in tablet dosage form. Chromatographia 53: 478-479.
Determination of Iron (III) and Copper (II) by zeroeth, first and second derivative spectrophotometry with 2-thiobarbituric acid (4, 6-Dihydroxy-2- mecaptopyrimidine) as reagent
Morelli B (1983) Determination of Iron (III) and Copper (II) by zeroeth, first and second derivative spectrophotometry with 2-thiobarbituric acid (4, 6-Dihydroxy-2-mecaptopyrimidine) as reagent. Analyst 108: 870-879.
Spectrophotometric methods for the determination of lansoprazole and pantoprazole sodium sesquihydrate
Moustafa AAM (2000) Spectrophotometric methods for the determination of lansoprazole and pantoprazole sodium sesquihydrate. J Pharm Biomed Anal 22: 45-58.
First order UV-derivative spectrophotometry in the analysis of omeprazole and pantoprazole sodium via salt and corresponding impurities
Rajic KK et al. (2003) First order UV-derivative spectrophotometry in the analysis of omeprazole and pantoprazole sodium via salt and corresponding impurities. J Pharm Biomed Anal 32: 1019-1027.
Validation of the spectrophotometric determination of omeprazole and pantoprazole sodium via their metal chelates
Salama F et al. (2003) Validation of the spectrophotometric determination of omeprazole and pantoprazole sodium via their metal chelates. J Pharm Biomed Anal 33:411-421.
Spectrophotometric determination of omeprazole, lansoprazole and pantoprazole in pharmaceutical formulations
Wahbi AA et al. (2002) Spectrophotometric determination of omeprazole, lansoprazole and pantoprazole in pharmaceutical formulations. J Pharm Biomed Anal 30: 1133-142.