Varsha Parmar, Usmangani Chhalotiya, Dimal Shah, Kashyap Bhatt, and Sunil Baldania

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Applied Chemistry Volume 2013, Article ID 316137, 5 pages http://dx.doi.org/10.1155/2013/316137 Research Article Quantification of Benazepril Hydrochloride and Hydrochlorothiazide in Tablet Dosage Form by Simultaneous Equation Spectrophotometric Method Varsha Parmar, Usmangani Chhalotiya, Dimal Shah, Kashyap Bhatt, and Sunil Baldania Department of Pharmaceutical Chemistry and Analysis, Indukaka Ipcowala College of Pharmacy, Beyond GIDC Phase IV, P.O. Bar 53, Vithal Udyog nagar, New Vallabh Vidyanagar, Anand, Gujarat 388 121, India Correspondence should be addressed to Varsha Parmar; varsha.parmar1416@gmail.com Received 26 March 2013; Revised 5 August 2013; Accepted 9 August 2013 Academic Editor: Guang-Fu Yang Copyright 2013 Varsha Parmar et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Simple, accurate, precise, reproducible, requiring no prior separation, and economical procedures for simultaneous estimation of benazepril hydrochloride (BEN) and Hydrochlorothiazide (HCT) in tablet dosage form have been developed. Simultaneous equation method employs for estimation of both drugs in methanol at 240 nm and 270 nm as two analytical wavelengths. BEN and HCT at their respective λ max (240 nm and 270 nm) show linearity in a concentration range of 2 12 μg/ml and 4 14 μg/ml. Recovery studies for BEN are 100.0 100.6% and 99.8 100.0% for HCT in the case of simultaneous equation method confirming the accuracy of the proposed method. The proposed method is recommended for routine analysis since it is rapid, simple, accurate and also sensitive and specific. 1. Introduction Benazepril hydrochloride (BEN) is chemically 3-[[1- (ethoxycarbonyl)-3-phenyl-(1s)-propyl]amino]-2,3,4,5-tetrahydro-2-oxo-1h-1-(3s)-benzazepine-1-acetic acid monohydrochloride (Figure 1(a)). The empirical formula of BEN is C 24 H 28 N 2 O 5 HClwithamolecularweightof460.96g/mole [1]. It is an angiotensin converting enzyme. It is used as antihypertensive agent. Hydrochlorothiazide (HCT) is chemically 6-chloro-3,4- dihydro-2h-1,2,4-benzothiadiazine-7-sulfonamide 1,1-dioxide (Figure 1(b)). The empirical formula is C 7 H 8 ClN 3 O 4 S 2 with a molecular weight 297.73 g/mole [2]. It is a diuretic agent. BEN and HCT are official in the british Pharmacopeia and the Indian Pharmacopeia. Many methods have been reported in the literature for both determination of BEN, individually and with other drugs in combination [3 17]. However, there is no UV spectrophotometric method reported for the simultaneous estimation of BEN and HCT in pharmaceutical preparations in the literature survey. The objective of the present work is to develop and validate new analytical methods for simultaneous determination of BEN and HCT in tablet dosage form. 2. Experimental 2.1. Materials and Methods. A double-beam Shimadzu UVvisible spectrophotometer 1700 (Pharma spec), with wavelength accuracy of ±0.5 nm and a pair of 1 cm matched quartz cells, was used to measure absorbance of the resulting solution.allweighingwasdoneonanelectronicbalance (Shimadzu BL-220H). All statistical calculations were carried out using Microsoft Excel 2007 analytical tool. Analytically pure BEN and HCT were procured as gift sample from Dishman Pharmaceuticals Ltd. and Cadila Pharmaceutical Pvt. Ltd. (Ahmedabad, India). Methanol (E. Merck, Mumbai, India) analytical grade was used as a diluent. Tablet formulation (Lotensin HCT, Novartis Pharmaceutical Pvt. Ltd.) containing labelled amount of 10 mg of benazepril hydrochloride and 12.5 mg of hydrochlorothiazide was purchased from local market.

2 Applied Chemistry NH 2 SO 2 O O S NH Cl N H H N O H N CH 2 COOH C H O COCH2CH 3 CH 2 CH2 HCl (a) (b) Figure 1: (a) Structure of hydrochlorothiazide. (b) Structure of benazepril hydrochloride. 2.2. Preparation of Solutions. Accurately weighed 100 mg of BEN and HCT standards was transferred to separate 100 ml volumetric flasks and dissolved in 50 ml Methanol. The flasks were shaken, and the volume was made up to the mark with methanol to give solutions containing 1000 μg/ml BEN and 1000 μg/ml HCT, respectively. 2.3. Methodology. Selection of analytical wavelengths was done by taking pure samples of BEN and HCT, which were separately dissolved in methanol, to give two solutions of 10 μg/ml, respectively. They were scanned in the wavelength range of 200 400 nm. From the overlain spectra (Figure 2), wavelengths of 240 and 270 nm were selected for the formation of simultaneous equations. For constructing a calibration curve, two series of different concentrations in range of 2 12 μg/ml for BEN and 4 14 μg/ml for HCT were prepared from stock solutions. The calibration curves were plotted at 240 and 270 nm. The absorptivities (A1%, 1 cm) of both drugs at both wavelengths were determined. These calculated values were the mean of five independent determinations. Concentrations in the sample were obtained by using the following equations: C x = A 1ay 2 A 2 ay 1 ax 1 ay 2 ax 2 ay 1 C y = A 1ax 2 A 2 ax 1 ay 1 ax 2 ay 2 ax 1, where A 1 and A 2 areabsorbanceofmixturesat240nmand 270 nm, respectively; ax 1 and ax 2 are absorptivities of BEN at λ 1 and λ 2,respectively,ay 1 and ay 2 are absorptivities of HCT at λ 1 and λ 2 respectively. C x and C y are concentrations of BEN and HCT, respectively. 2.4. Method Validation. The proposed method was validated according to the International Conference on Harmonization (ICH) guidelines [18]. 2.5. Linearity and Range. Developed analytical method shows linearity response over the range of 2 12 μg/ml for BEN and 4 14 μg/ml for HCT at 240nm and 270nm respectively. 2.6. Precision. The intraday and interday precision study of the proposed simultaneous equation spectrophotometric (1) Abs. 1.400 1.000 0.500 BEN HCT 0.000 0.128 200.00 250.00 300.00 350.00 400.00 (nm) Figure 2: Overlain spectrum of BEN and HCT in Methanol. Table 1: Summary of validation parameters. Parameters BEN HCT Limit of detection 0.103 0.025 Limit of quantitation 0.312 0.075 Accuracy (%) 100.0 100.6 99.8 100.2 Precision Intraday (n =3) 0.47 0.74% 0.13 0.24% Interday (n =3) 0.30 0.81% 0.18 0.40% Repeatability (RSD, n=6) 1.32% 1.96% Specificity Specific Specific Robustness Robust Robust Solvent suitability Suitable for 24 hrs. Suitable for 24 hrs. Table 2: Statistical data of BEN and HCT. Parameters BENat240nm HCTat270nm Linear range 2 12 μg/ml 4 14 μg/ml Slope 0.0181 0.05 Intercept 0.0129 0.035 Standard deviation of intercept 0.0031 0.0010 Standard deviation of slope 0.0005 0.0019 Regression coefficient (R 2 ) 0.9997 0.9988 method was carried out by estimating responses three times onthesamedayandonthreedifferentdays(first,second,and

Applied Chemistry 3 Table 3: Determination of precision for BEN. BEN Conc. (μg/ml) Intraday mean ± SD (n =3) %RSD Interdaymean± SD (n =3) %RSD 6 0.12267 ± 0.00058 0.47 0.124 ± 0.001 0.81 At 240 nm 8 0.15533 ± 0.00115 0.74 0.15533 ± 0.00058 0.37 10 0.196 ± 0.001 0.51 0.19533 ± 0.00058 0.30 6 0.03067 ± 0.00058 1.88 0.03067 ± 0.00058 1.88 At 270 nm 8 0.3633 ± 0.00058 1.59 0.03667 ± 0.00058 1.58 10 0.04367 ± 0.00058 1.32 0.04767 ± 0.00058 1.21 Table 4: Determination of precision for HCT. HCT Conc. (μg/ml) Intraday mean ± SD (n =3) %RSD Interdaymean± SD (n =3) %RSD 8 0.03467 ± 0.00058 0.017 0.03433 ± 0.00058 1.68 At 240 nm 10 0.042 ± 0.001 0.024 0.04267 ± 0.00058 1.35 12 0.217 ± 0.28232 0.18 0.05433 ± 0.00058 1.06 8 0.44333 ± 0.00058 0.13 0.44467 ± 0.00153 0.34 At 270 nm 10 0.526 ± 0.001 0.19 0.52567 ± 0.00208 0.40 12 0.63367 ± 0.00153 0.24 0.63333 ± 0.00115 0.18 third days) for three different concentrations of BEN (6, 8, and 10 μg/ml) and HCT (8, 10, 12 μg/ml), and the results are reportedintermsofpercentagerelativestandarddeviation (%RSD). 2.7. Accuracy. The accuracy of the method was determined by calculating recoveries of BEN and HCT by the method of standard additions. Known amount of BEN (50%, 100%, and 150%) and HCT (50%, 100%, and 150%) was added to a pre quantified sample solutions, and the amounts of BEN and HCT were estimated by measuring the response at the appropriate wavelengths. The recovery was verified by estimation of drugs in triplicate preparations at each specified concentration level. 2.8. LOD and LOQ. Calibration curve was repeated 5 times, and the standard deviation (SD) of the intercepts was calculated.thenlodandloqweremeasuredasfollows: LOD = 3.3 σ S, LOQ =10 σ S, (2) where σ is the standard deviation of the y-intercept S is the slope of the calibration curve. 2.9. Solution Stability. Solution stability of the method was studied by observing the stability of both drug solutions at 25 ± 2 Cfor24h. 2.10. Analysis of Marketed Formulation. The pharmaceutical dosage form used in this study was Lotensin HCT tablets with a content of 10 mg BEN and 12.5 mg HCT (as per USP) per tablet. Twenty tablets of brand Lotencin HCT tablets were weighed and finely powdered. Accurately weighed tablet powder equivalent to 10 mg was taken in 100 ml volumetric flask. Few ml of methanol was added and sonicated for 5 min. The volume was made up to the mark with methanol. Aliquot portion of this solution was further diluted to achieve final concentration of 10 μg/ml for BEN and HCT. The absorbances were noted at respective wavelengths. The concentration of each drug in tablet formulation was determined using the above methods. 3. Result and Discussion A simultaneous equation spectrophotometric method was successfully developed for the determination of BEN and HCT from their combined dosage form. The proposed simultaneous equation method shows good linearity in the concentration range of 2 12 μg/ml for BEN and 4 14 μg/ml for HCT with correlation coefficient 0.9997 of BEN and 0.9988 for HCT, respectively (Table 2). The %RSD values for BEN and HCT were found to be 1.32% and 1.96%, respectively. The low values of relative standard deviation (less than 2%) indicate that the proposed method is repeatable. The %RSD values for intraday study were found to be 0.47 0.74% and 0.13 0.24% for BEN and HCT, respectively. The %RSD values for interday study were found to be 0.30 0.81% and 0.18 0.40% for BEN and HCT, respectively. The low RSD value indicates that the proposed method is precise (Tables 3 and 4). The detection limit of BENandHCTwere0.103and0.025μg/mL, while quantitation limits of BEN and HCT were 0.312 and 0.075 μg/ml, respectively.theabovedatashowsthatananogramquantity of both the drugs can be accurately and precisely determined. The validation parameters are summarized in Table 1. The accuracy of the method was determined by calculating recoveries of BEN and HCT by the method of standard additions. The percent recovery was found to be 100.0% 100.6% for BEN and 99.8% 100.2% for HCT (Table 5). The results of recovery studies indicate that the proposed method is accurate.

4 Applied Chemistry Table 5: Determination of accuracy. %level Amount of drug added (μg/ml) Recovered amount of drug (μg/ml) % recovery BEN (μg/ml) HCT (μg/ml) BEN (μg/ml) HCT (μg/ml) BEN HCT 50 6 6 6.04 6.00 100.6 100.2 100 8 8 8.01 7.98 100.1 99.89 150 10 10 10.00 9.98 100.0 99.9 Table 6: Assay results of marketed formulation. Actual concentration (μg/ml) Amount obtained (μg/ml) Formulation %BEN %HCT BEN HCT BEN HCT Tablet 4.0 5.0 3.90 4.97 98.25% 99.32% The proposed validated method was successfully applied to determine BEN and HCT in tablet dosage form. The results obtained for BEN and HCT were comparable with the corresponding labelled amounts (Table 6). No interference of the excipients with the absorbance of interest appeared; hence the proposed method is applicable for the routine simultaneous estimation of BEN and HCT in pharmaceutical dosage forms. 4. Conclusions Sensitive, precise, and accurate simultaneous UV spectroscopic method was developed and validated. The proposed method is accurate, precise, reproducible, and economic and can be successfully used for routine analysis of simultaneous estimationsofbenandhct.themethodwasvalidated as per the ICH guidelines in terms of specificity, linearity, accuracy, precision, limits of detection (LOD) and limits of quantification (LOQ), and robustness. The proposed method can be used for quality control assay of BEN and HCT in their pharmaceutical dosage form. Conflict of Interests All authors do not have conflict of interests. Acknowledgments The authors are thankful to Dishman Pharmaceuticals Ltd. for providing BEN and Cadila Pharmaceutical Pvt. Ltd. (Ahmedabad, India) for providing HCT as gratis samples. The authors are also heartily thankful to Indukaka Ipcowala College of Pharmacy, New Vallabh Vidyanagar, Anand, for funding the entire project and providing the necessary facilities for research work. References [1] British Pharmacopoeia 2011, vol. 2,The Department of Health, Social Services and Public Safety, pp. 225 226, 2011. [2] Indian Pharmacopoeia 2007, vol. 2, GovernmentofIndia, The Indian Pharmacopoeia Commission, Ghaziabad, Ministry of Health & Family Welfare, pp. 576 578, 2007. [3]P.Y.Pawar,R.S.Joshi,V.Sandhan,S.Wagh,andK.Jangale, Simultaneous spectrophotometric estimation of amlodipine besylate and benazepril HCl in pure and pharmaceutical dosage form, Der Pharmacia Lettre, vol. 3, no. 3, pp. 397 403, 2011. [4] K.R.Naidu,U.N.Kale,andM.S.Shingare, Stabilityindicating RP-HPLC method for simultaneous determination of amlodipine and benazepril hydrochloride from their combination drug product, Pharmaceutical and Biomedical Analysis, vol. 39, no. 1-2, pp. 147 155, 2005. [5]M.Sarat,P.M.krishna,andC.Rambabu, Developmentand validation of RP-HPLC method for simultaneous estimaton of amlodipine besyate and benazepril Hcl in tablet, International JournalofCurrentPharmaceuticalResearch,vol.4,no.3,pp.80 84, 2012. [6] K. Safeer, B. Anbarasi, and N. S. Kumar, Analytical method development and validation of amlodipine and hydrochlorothiazide in combined dosage form by RP-HPLC, International ChemTech Research,vol.2,no.1,pp.21 25,2010. [7] G. Patel, S. Patel, D. Prajapiti, and R. Mehta, RP-HPLC method for simultaneous estimation of amlodipine besylate and hydrochlorothiazide in combined dosage forms, Stamford Pharmaceutical Sciences,vol.3,no.1,pp.49 35,2010. [8] L. A. Rao and R. V. Bhaskara, Simultaneous estimation of valsarten and hydrochlorthiazide in tablets by RP-HPLC method, Intnational Journal Pharmaceutical & Industrial Reserch, vol.1, no.3,pp.170 174,2011. [9] M. Kharoaf, N. Malkieh, M. Abualhasan, R. Shubitah, N. Jaradat, and A. N. Zaid, Tablet formulation and development of a validated stability indicating HPLC method for quantification of valsarten and hydrochlorthiazide combination, Pharmacy and Pharmaceutical Sciences, vol. 4, pp. 683 687, 2012. [10] A.R.Chabukswar,S.C.Jagdale,B.S.Kuchekaretal., Development and validation of a RP-HPLC method for simultaneous estimation of hydrochlorothiazide and irbesartan, Der Pharma Chemica,vol.2,no.4,pp.148 156,2010. [11] R. Rosangluaia, P. Shanmugasundaram, and M. Velraj, Validated HPTLC method for simultaneous estimation of irbesartan and hydrochlorthiazide in a tablet dosage form, Der Pharma Chemica,vol.3,no.5,pp.310 317,2011. [12]S.Brijesh,D.K.Patel,andS.K.Ghosh, Developmentof reverse-phase HPLC method for simultaneous analysis of metoprolol succinate and hydrochlorothiazide in a tablet formulation, TropicalJournalofPharmaceuticalResearch,vol.8,no.6, pp. 539 543, 2009.

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