VALIDATED ABSORPTION CORRECTION METHOD FOR SIMULTANEOUS ESTIMATION OF ROSUVASTATIN CALCIUM AND EZETIMIBE IN TABLET DOSAGE FORM

Author(s):  
V. Raut
INDIAN DRUGS ◽  
2017 ◽  
Vol 54 (07) ◽  
pp. 40-45
Author(s):  
J. Saminathan ◽  
◽  
T. Vetrichelvan

A simple, accurate, precise, economical and validated uv spectrometric absorption correction method was developed for olmesartan, medoxomil amlodipine besylate and hydrochlorothiazide in bulk and its dosage form. The stock solutions were prepared in methanol followed by further dilutions with double distilled water. The λmax for olmesartan, amlodipine besylate and hydrochlorothiazide were 256.5 nm, 362 nm and 316 nm, respectively. Beer’s law was obeyed in the concentration range of 3-18 μg/mL, 1- 6μg/mL and 2-12 μg/mL, respectively. The method was validated by following the analytical performance parameters suggested by the ICH Guidelines. The percentage assay in commercial formulation was found to be in the range olmesartan 100.06%, amlodipine 99.17% and hydrochlorothiazide 100.14% by the proposed method. The method was validated with respect to linearity, precision and accuracy. recovery was found to be in the range of olmesartan 99.65%,amlodipine 99.97% and hydrochlorothiazide 99.81% by absorbance corrected method. The high recovery and low coefficients of variation conforms the suitability of the method for simultaneous analysis of three drugs in combined tablets.


2015 ◽  
Vol 1 (3) ◽  
pp. 151
Author(s):  
Sojitra Rajanit ◽  
Paras Virani ◽  
Hashumati Raj

A new simple, economical, precise and accurate method are described for the simultaneous determination of Nifedipine (NIF) and Metoprolol Succinate (MET) in combined tablet dosage form. The proposed method was applied for the determination of Nifedipine and Metoprolol Succinate in synthetic mixture, for determination of sampling wavelength, 10?g/ml of each of NIF and MET were scanned in 200-400 nm range and sampling wavelengths were 313nm for NIF and 275.40nm for MET are selected for development and validation of absorption correction method. For this method linearity observed in the range of 5-25?g/ml for NIF and 25-125?g/ml for MET, and in their pharmaceutical formulation with mean percentage recoveries 100.68 and 100.33, respectively. The method was validated according to ICH guidelines and can be applied for routine quality control testing.


Author(s):  
Rutuja M. Sanap ◽  
Sarika R. Wavhale ◽  
Vaibhavi V. Kunjir ◽  
Rajkumar V. Shete

A simple, sensitive and accurate UV- spectrophotometric absorption correction method has been developed for simultaneous determination of Telmisartan, Amlodipine and Chlorthalidone in combined tablet dosage form. Analytical method development and validation plays important role in the discovery manufacture of pharmaceuticals and development. In this paper, absorption correction method is used for multi-component analysis. The wavelengths selected for the analysis were 311nm for Telmisartan, 228nm for Chlorthalidone and 253nm for Amlodipine. Beer’s law obeyed the concentration range of 2-10 µg /ml, 2-10 µg /ml and 5-25 µg/ ml for Telmisartan, Amlodipine and Chlorthalidone. Methanol is used as a solvent. The accuracy of the method was assessed by recovery studies and was found between the range of 100% to 110% for Telmisartan, 85% to 110% for Amlodipine and 85% to 105% Chlorthalidone. The % RSD value was found to be less than 2. Thus, the method was simple, precise, economic, rapid, accurate and can be successfully applied for simultaneous determination of Telmisartan, Amlodipine and Chlorthalidone in combined tablet dosage form.


Author(s):  
Bhumi Kantariya ◽  
Greeva Bhatt ◽  
Mehul Mehta ◽  
Urmi Kanatria ◽  
Ravi Dalsaniya

A Simple, selective, precise and rapid absorption correction Spectrophotometric method has been developed and validated as per ICH guideline for the simultaneous estimation of Ranitidine Hydrochloride and Dicyclomine Hydrochloride in tablet dosage form. Method is base on UV Spectrophotometric for determination of two drug, by using Methanol as a solvent and diluted the same with 0.1N NaOH, solution. In this UV method, the two wavelength were selected, 311.4 nm and at 217 nm for RANTD and DICY, respectively. this method was validated according to ICH guideline and Linearity range, was found to be 7.5-37.5 µg/ml and 1-5 µg/ml for RANTD and DICY, respectively. The method was successfully applied to assay drugs in tablet.


2021 ◽  
Vol 7 (1) ◽  
Author(s):  
Rameshwar Gholve ◽  
Sanjay Pekamwar ◽  
Sailesh Wadher ◽  
Tukaram Kalyankar

Abstract Background The stability-indicating chromatographic method was developed and validated for simultaneous estimation of telmisartan and rosuvastatin calcium in bulk and in tablet dosage form. The RP-HPLC elution was carried out at 242.0 nm using column Oyster ODS3 (150 × 4.6 mm, 5 µm) isocratically, and a mobile phase containing 10 mM phosphate buffer with 1.1 g octane-1-sulfonic acid sodium salt having pH 2.5 (adjusted with 5% OPA) and acetonitrile, with a proportion of 500:500, v/v was pumped through the column maintained at ambient (about 25 °C) temperature with 1.0 mL/min flow rate. The proposed method was validated according to ICH Q2 (R1) guideline. Results Telmisartan and rosuvastatin were eluted at 2.553 min and 4.505 min, respectively. The method is linear from 99.9073 to 299.7218 µg/mL for telmisartan (R2 = 1.000) and 23.6841 – 71.0522 µg/mL for rosuvastatin (R2 = 0.999). The average recovery percentage was found 100.51, 99.76, and 99.14% for telmisartan and 99.68, 99.72, and 98.56% for rosuvastatin at three different levels. Results of method repeatability and intermediate precision were found within acceptable limits. Results of solution stability showed that mobile phase was stable for 2 days; standard and sample preparations are stable for 1 day at room temperature as well as in the refrigerator (2–8 °C). Also, forced degradation study results show that method is stability indicating as capable of distinguishing the active analytes peak from the degraded product. Conclusion The developed stability-indicating method is linear in studied concentration range as well as precise, accurate, specific, and robust. Hence, successfully this method can be used for routine analysis and stability study. Graphical abstract


2012 ◽  
Vol 24 (1) ◽  
pp. 15-22 ◽  
Author(s):  
P. B. Deshpande ◽  
S. V. Gandhi ◽  
N. V. Gaikwad ◽  
K. S. Khandagle

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