| Literature DB >> 22396906 |
Sachin Ramrao Patil1, Lokesh Kumar, Gunjan Kohli, Arvind Kumar Bansal.
Abstract
The present work explains the development and validation of a simple, rapid and sensitive liquid chromatographic method for the simultaneous determination of antipyrine (ANT), carbamazepine (CBZ), furosemide (FSD) and phenytoin (PHTN). Chromatographic analysis was carried out by a reversed phase technique on a C18 column, using water pH 3.0 and 50:50 mixtures of methanol and acetonitrile (58:42 v/v) as the mobile phase, at a flow-rate of 1.0 ml/min and a column temperature of 40°C. Detection was carried out at 205 nm for CBZ and PHTN and at 230 nm for ANT and FSD. The proposed method was evaluated for validation parameters including linearity, range, accuracy, precision, limit of detection (LOD), limit of quantification (LOQ) and specificity. Elution of drugs ANT, FSD, PHTN, and CBZ was observed at 4.1, 5.1, 12.3 and 13.5 min, respectively. The method was found to be linear (R(2) ≥ 0.999) in the concentration range of 5-100 μM, with an acceptable accuracy and relative standard deviation. Results of intra- and inter-day validation (n=3) showed the method to be efficient for routine determination of these permeability markers in Caco-2 cell monolayer permeability studies. The method was successfully utilized for determination of standard compounds in Caco-2 permeability experiments.Entities:
Keywords: Caco-2 cell monolayer; Carbamazepine; Furosemide; HPLC; Phenazone; Phenytoin; Validation
Year: 2011 PMID: 22396906 PMCID: PMC3293345 DOI: 10.3797/scipharm.1109-03
Source DB: PubMed Journal: Sci Pharm ISSN: 0036-8709
Characteristics of permeability markers used
| Drug | Structure | Molecular Formula | log P | pKa | BCS class |
|---|---|---|---|---|---|
| Antipyrine |
| C11H12N2O (188.23 g/mol) | 0.38 | 1.4 | I (HP, HS) |
| Carbamazepine |
| C15H12N2O (223.25 g/mol) | 2.45 | 14 | II (HP, LS) |
| Furosemide |
| CH12Cl11N2O5S (330.74 g/mol) | 1.4 | 3.9 | IV (LP, LS) |
| Phenytoin |
| C15H12N2O2 (252.27 g/mol) | 2.2 | 8.3 | II (HP, LS) |
HP…high permeability; LP…low permeability; HS…high solubility; LS…low solubility.
Fig. 1Chromatogram of ANT, CBZ, FSD and PHTN from mixture (100 μM) and blank HBSS buffer (lower) at 205 nm and 230 nm
Validation parameters of the HPLC method for ANT, CBZ, FSD and PHTN
| Parameter | Value | |||
|---|---|---|---|---|
|
| ||||
| ANT | CBZ | FSD | PHTN | |
| Analytical wavelength | 230 nm | 205 nm | 230 nm | 205 nm |
| Range (μM) | 5–100 | 5–100 | 5–100 | 5–100 |
| Slope (Mean ±S.D; R.S.D.) | 7668.8 ± 103.3; 1.3 | 16075.5 ± 39.3; 0.24 | 22085.1 ± 149.0; 0.67 | 13577.6 ± 18.19; 0.13 |
| Intercept (Mean ± S.D.) | −5541.3 ± 172.8 | −3746.8 ± 66.91 | 1426.1 ± 191.9 | −3443.4 ± 386.1 |
| Regression coefficient | 0.999 | 1.000 | 0.999 | 1.000 |
| LOD (μM) | 3.28 | 0.67 | 0.13 | 0.73 |
| LOQ (μM) | 5.28 | 2.24 | 0.58 | 2.04 |
Each standard curve was generated in triplicate on 3 consecutive days, across the linearity range. Values are reported as mean±SD of three calibration curves.
Data of linearity studies for ANT, CBZ, FSD, and PHTN
| Conc. (μM) | Mean Peak Area ± S.D., R.S.D. (%) | |||
|---|---|---|---|---|
|
| ||||
| ANT | CBZ | FSD | PHTN | |
| 5 | 33934.5 ± 130.8; 0.38 | 73873.3 ± 666.3; 0.91 | 106796.3 ± 1187.9; 1.11 | 61020.0 ± 400.2; 0.65 |
| 10 | 74048.5 ± 1948.1; 2.63 | 159297.5 ± 4349.4; 2.73 | 220881.0 ± 5107.4; 2.31 | 132452.5 ± 1699.2; 1.28 |
| 20 | 147243.0 ± 861.25; 0.58 | 314557.3 ± 1862.6; 0.59 | 443556.3 ± 1103.3; 0.25 | 264798.0 ± 625.1; 0.24 |
| 30 | 225102.5 ± 1723.2; 0.76 | 483318.7 ± 2727.5; 0.56 | 677090.7 ± 1529.9; 0.22 | 407881.0 ± 1223.3; 0.29 |
| 40 | 297507.0 ± 381.8; 0.13 | 644809.0 ± 1289.9; 0.20 | 900838.7 ± 2264.2; 0.25 | 544944.5 ± 1320.2; 0.24 |
| 60 | 459703.0 ± 445.9; 0.09 | 966179.0 ± 5876.6; 0.61 | 1341402.0 ± 1512.6; 0.11 | 814444.0 ± 1694.2; 0.21 |
| 80 | 614150.3 ± 1137.8; 0.18 | 1274946.0 ± 3176.9; 0.25 | 1773965.0 ± 2945.5; 0.17 | 1076016.0 ± 2026.6; 0.19 |
| 100 | 776083.0 ± 76.4; 0.01 | 1612014.0 ± 6691.5; 0.41 | 2223262.0 ± 4658.7; 0.21 | 1358006.0 ± 653.4; 0.05 |
| Equ. | y = 7765.3x − 5694 | y = 16113x − 3773 | y = 22256x + 1535.3 | y = 13596x − 3881 |
| (r2) | 0.999 | 1.000 | 0.999 | 1.000 |
Result of specificity study
| Conc. (μM) | ANT | FSD | ||
|---|---|---|---|---|
|
| ||||
| Conc. ± S.D., R.S.D. (%) | %R | Conc. ± S.D., R.S.D. (%) | %R | |
| 10 | 10.145 ± 0.137; 1.35 | 101.45 | 9.955 ± 0.095; 0.95 | 99.55 |
| 40 | 39.805 ± 0.367; 0.92 | 99.51 | 40.186 ± 0.124; 0.31 | 100.46 |
| 80 | 80.192 ± 0.444; 0.55 | 100.24 | 79.960 ± 0.137; 0.17 | 99.95 |
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| 10 | 9.929 ± 0.137; 1.38 | 99.29 | 10.123 ± 0.172; 1.70 | 101.23 |
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| 40 | 40.137 ± 0.136; 0.34 | 100.34 | 40.209 ± 0.136; 0.34 | 100.52 |
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| 80 | 79.826 ± 0.266; 0.33 | 99.78 | 79.833 ± 0.223; 0.28 | 99.79 |
%R… % recovery.
Precision studies (n = 6)
| Spiked Conc. (μM) | Measured Concentration ± S.D., R.S.D. (%) | |||
|---|---|---|---|---|
|
| ||||
| ANT | FSD | PHTN | CBZ | |
|
| ||||
| 10 | 10.247 ± 0.183; 1.78 | 10.041 ± 0.087; 0.86 | 9.936 ± 0.045; 0.45 | 10.114 ± 0.125; 1.23 |
| 40 | 40.025 ± 0.645; 1.61 | 40.589 ± 0.248; 0.61 | 40.318 ± 0.286; 0.711 | 40.252 ± 0.254; 0.63 |
| 80 | 79.787 ± 0.916; 1.14 | 80.007 ± 0.389; 0.48 | 79.706 ± 0.402; 0.50 | 79.795 ± 0.552; 0.69 |
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| 10 | 10.374 ± 0.068; 0.66 | 10.015 ± 0.03; 0.31 | 9.965 ± 0.026; 0.26 | 10.183 ± 0.115; 1.13 |
| 40 | 39.610 ± 0.189; 0.47 | 40.748 ± 0.131; 0.32 | 40.387 ± 0.121; 0.29 | 40.217 ± 0.152; 0.37 |
| 80 | 79.803 ± 0.326; 0.41 | 80.256 ± 0.267; 0.33 | 79.647 ± 0.128; 0.16 | 79.661 ± 0.126; 0.15 |