scholarly journals Stress Degradation Studies and HPLC Method Development for Simultaneous Estimation of Prednisolone Acetate and Chloramphenicol in Topical Eye Drops

2014 ◽  
Vol 26 (22) ◽  
pp. 7817-7822
Author(s):  
M. Ahsan Hafiz ◽  
Muhammad Idrees ◽  
Imran Tariq ◽  
Sohail Amjad ◽  
Arshad Ali Shah
INDIAN DRUGS ◽  
2017 ◽  
Vol 54 (08) ◽  
pp. 54-61
Author(s):  
B. Venkateswara Rao ◽  
◽  
S. Vidyadhara ◽  
V. Basaveswara Rao

The prime aim of the present investigation was to develop and validate a novel, precise, accurate, specific, rapid and economical stability- indicating isocratic reverse phase liquid chromatography method for the quantitative simultaneous estimation of valsartan and hydrochlorothiazide in bulk and marketed formulations. Estimation of drugs in this combination was achieved with a C18 column [Kromasil 100-5 C18 column, P134 250 × 4.6 mm] kept at ambient temperature, isocratic mode using mobile phase of composition acetonitrile and phosphate buffer (40:60 V/V, pH 4). The flow rate was 0.8 ml/min and the effluents were monitored at 235 nm, using variable wavelength UV detector. The retention time of valsartan and hydrochlorothiazide were 2.65 min and 3.97 min, respectively. Validation of the method was done according to the ICH guidelines for different analytical parameters. The method was found to be linear over a range of 50-250 μg/mL for valsartan and hydrochlorothiazide. The established method was as reproducible with a %RSD value of less than 2 and having robustness and accuracy within the specified limits. Assay of marketed formulation was determined and was 99.04% and 99.8% respectively. The stressed samples were analyzed. The proposed method was found to be specific and stability indicating as no interfering peaks of degradation compounds and excipients were noticed. The proposed method can be successfully employed in the estimation of commercial formulations.


Author(s):  
A. Tanuja ◽  
S. Ganapaty ◽  
Varanasi S N Murthy

The current work aims to establish a novel and advanced reverse phase isocratic liquid chromatography system followed by validation and to conduct stability analysis in active pharmaceutical ingredients and formulations for the quantification of Solifenacin Succinate. The optimized elution was achieved with column Sunfire C8 (4.6 x 150mm, 5µm), using the mobile phase of Buffer: Methanol: Acetonitrile in the composition ratio of 45:45:10 v/v. The wavelength of detection was selected as 220nm with 1.0ml/ min flow rate and 30μl injection volume. The retention time of Solifenacin Succinate was found 2.94 min respectively. The method developed has been validated for various analytical parameters according to ICH guidelines. The Linearity was attained at 20 to100 μg/ml of concentration range. The established method was proved as reproducible. The Assay was obtained as 100.40%. The degradation studies were carried out at all degradative conditions and the results of degradation studies denote that the current method was specific, reliable, and economical. Hence, the developed method can be applied for the qualitative and quantitative determination of the selected drug and its commercial formulations.


2013 ◽  
Vol 2013 ◽  
pp. 1-5 ◽  
Author(s):  
Sadana Gangishetty ◽  
Surajpal Verma

The present work describes a simple, rapid, and reproducible reverse phase high performance liquid chromatography (RP-HPLC) method for the simultaneous estimation of clarithromycin (CLA) and paracetamol (PCM). C18 column (Kromasil ODS, 5 µm, 250 × 4.6 mm) and a mobile phase containing phosphate buffer (0.05 M) along with 1-octane sulphonic acid sodium salt monohydrate (0.005 M) adjusted to pH 3.2: acetonitrile (50 : 50 v/v) mixture was used for the separation and quantification. The flow rate was 1.0 mL/min and the eluents were detected by UV detector at 205 nm. The retention times were found to be 2.21 and 3.73 mins, respectively. The developed method was validated according to ICH guidelines Q2 (R1) and found to be linear within the range of 75–175 µg/mL for both drugs. The developed method was applied successfully for assay of clarithromycin and paracetamol in their combined in-house developed dosage forms and in vitro dissolution studies.


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