| Literature DB >> 21785594 |
Nagaraju Rajendraprasad1, Kanakapura Basavaiah, Kanakapura B Vinay.
Abstract
Titrimetric and spectrophotometric methods are described for the determination of oxcarbazepine (OXC) in bulk drug and in tablets. The methods use N-bromosuccinimide (NBS) and bromopyrogallol red (BPR) as reagents. In titrimetry (method A), an acidified solution of OXC is titrated directly with NBS using methyl orange as indicator. Spectrophotometry (method B) involves the addition of known excess of NBS to an acidified solution of OXC followed by the determination of the unreacted NBS by reacting with BPR and measuring the absorbance of the unreacted dye at 460 nm. Titrimetry allows the determination of 6-18 mg of OXC and follows a reaction stoichiometry of 1 : 1 (OXC : NBS), whereas spectrophotometry is applicable over the concentration range of 0.8-8.0 μg mL(-1). Method B with a calculated molar absorptivity of 2.52 × 10(4) L mol(-1) cm(-1) is the most sensitive spectrophotometric method ever developed for OXC. The optical characteristics such as limits of detection (LOD), quantification (LOQ), and Sandell's sensitivity values are also reported for the spectrophotometric method. The accuracy and precision of the methods were studied on intraday and interday basis. The methods described could usefully be applied to routine quality control of tablets containing OXC. No interference was observed from common pharmaceutical adjuvants. Statistical comparison of the results with a reference method shows an excellent agreement and indicates no significant difference in accuracy and precision. The reliability of the methods was further ascertained by recovery studies in standard addition procedure.Entities:
Year: 2011 PMID: 21785594 PMCID: PMC3139870 DOI: 10.1155/2011/138628
Source DB: PubMed Journal: Int J Anal Chem ISSN: 1687-8760 Impact factor: 1.885
Scheme 1Hydrolysis of NBS to produce hypobromous acid/monovalent bromine.
Scheme 2Suggested reaction pathway for the bromination of OXC.
Figure 1Absorption spectra of BPR in sulphuric acid medium and the reagent blank (bromoderivative of the dye, BPR).
Scheme 3Tentative reaction pathway for the formation of yellow coloured bromo-derivative of BPR (method B).
Figure 2Study of reaction time between NBS and OXC in sulphuric acid medium and stability of the coloured species by measuring the absorbance of the unreacted BPR after reacting with NBS.
Intraday and interday accuracy and precision.
| Method* | OXC taken | Intra-day accuracy and precision | Inter-day accuracy and precision | ||||
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| OXC found | RE% | RSD% | OXC found | RE% | RSD% | ||
| A | 6.0 | 6.17 | 2.83 | 2.22 | 6.18 | 3.12 | 2.98 |
| 12.0 | 12.28 | 2.33 | 1.98 | 11.73 | 2.22 | 3.06 | |
| 18.0 | 17.73 | 1.50 | 1.53 | 18.34 | 1.89 | 2.23 | |
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| B | 2.0 | 1.95 | 2.50 | 2.30 | 2.04 | 2.12 | 1.99 |
| 4.0 | 4.07 | 1.75 | 1.20 | 3.94 | 1.52 | 1.58 | |
| 6.0 | 5.92 | 1.33 | 2.70 | 6.13 | 2.20 | 1.60 | |
*In method A, OXC taken/found are in mg and they are μg mL−1 in method B.
Results obtained for the study of effect of matrix by the analysis of synthetic mixture.
| Method* | OXC in synthetic mixture | OXC found# | %Recovery ± SD |
|---|---|---|---|
| A | 6.0 | 5.92 | 98.66 ± 0.62 |
| 12.0 | 12.07 | 100.6 ± 1.22 | |
| 18.0 | 18.56 | 103.1 ± 1.74 | |
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| B | 2.0 | 2.03 | 101.4 ± 1.56 |
| 4.0 | 3.96 | 99.11 ± 0.85 | |
| 6.0 | 6.29 | 104.9 ± 1.14 | |
*In method A, OXC taken/found are in mg and they are μg mL−1 in method B.
#Mean value of three determinations.
Robustness and ruggedness.
| Method A | Method B | |||||||
|---|---|---|---|---|---|---|---|---|
| OXC studied mg | Robustness (RSD, %) | Ruggedness (RSD, %) | OXC studied | Robustness (RSD, %) | Ruggedness (RSD, %) | |||
| Conditions altered* | Inter-analysts ( | Inter-instruments ( | ||||||
| Volume of H2SO4 ( | Inter-analysis ( |
Inter-burettes ( | Volume of BPR ( | Reaction time ( | ||||
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| 6.0 | 3.10 | 2.22 | 2.89 | 2.0 | 3.15 | 1.52 | 2.21 | 1.89 |
| 12.0 | 2.69 | 1.89 | 2.65 | 4.0 | 3.02 | 2.56 | 1.89 | 1.56 |
| 18.0 | 2.50 | 1.56 | 2.56 | 6.0 | 2.10 | 1.26 | 2.00 | 2.13 |
*In method A, volumes of 10 M H2SO4 varied were 10 ± 1 mL, In method B, volumes of BPR varied were 1 ± 0.1 mL, and the reaction time employed was 30 ± 2 min.
Results of analysis of tablets by the proposed methods.
| Tablets analysed | Label claim, mg/tablet | Found* (Percent of label claim ± SD) | ||
|---|---|---|---|---|
| Reference method | Method A | Method B | ||
| Trioptal 300 | 300 | 98.14 ± 1.56 | 97.33 ± 0.89 | 98.66 ± 1.12 |
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| Oxetol 600 | 600 | 102.1 ± 1.26 | 101.3 ± 1.56 | 100.2 ± 0.93 |
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*Mean value of five determinations.
Accuracy assessment by recovery experiments.
| Tablets studied | Method A | Method B | ||||||
|---|---|---|---|---|---|---|---|---|
| OXC in tablet, mg | Pure OXC added,mg | Total found, mg | Pure OXC recovered*, Percent ± SD | OXC in tablet, | Pure OXC added, | Total found, | Pure OXC recovered*, Percent ± SD | |
| Oxetol 600 | 6.08 | 3.0 | 9.01 | 97.67 ± 0.56 | 2.00 | 1.00 | 3.02 | 101.6 ± 1.12 |
| 6.08 | 6.0 | 12.43 | 105.83 ± 1.78 | 2.00 | 2.00 | 4.01 | 100.6 ± 0.88 | |
| 6.08 | 9.0 | 14.78 | 96.67 ± 0.58 | 2.00 | 3.00 | 5.14 | 104.5 ± 1.45 | |
*Mean value of three determinations.