| Literature DB >> 26839821 |
Chinmoy Roy1, Lalatendu Panigrahi2, Jitamanyu Chakrabarty3.
Abstract
The objective of the current study was to establish a validated stability-indicating, high-performance liquid chromatographic method to determine the purity of benzoyl peroxide (BPO) and adapalene (ADP) in the presence of its impurities, forced degradation products, and placebo in pharmaceutical dosage forms. The desired chromatographic separation was achieved on the Kinetex(™) C18 (250 × 4.6 mm, 5 µm) column using gradient elution at 272 nm detection wavelength. The optimized mobile phase consisted of solvent A (mixture of 0.1% v/v glacial acetic acid in water and acetonitrile in the ratio of 80:20 v/v, respectively) and solvent B (mixture of acetonitrile: tetrahydrofuran: methanol in the ratio of 50:30:20 v/v/v, respectively). The stability-indicating capability of the developed method was established by analysing forced degradation samples in which the spectral purity of BPO and ADP along with separation of all degradation products from the analyte peaks was achieved. The developed method was validated as per ICH guidelines with respect to specificity, linearity, limit of detection, limit of quantification, accuracy, precision, and robustness.Entities:
Keywords: Adapalene; Benzoyl peroxide; Degradation; Development; Impurity; Validation
Year: 2015 PMID: 26839821 PMCID: PMC4727800 DOI: 10.3797/scipharm.1412-10
Source DB: PubMed Journal: Sci Pharm ISSN: 0036-8709
Fig. 1Chemical name and structure of benzoyl peroxide (a) and its impurities (b, c, d) and of adapalene (e) and its impurities (f, g, h)
System suitability results for precision and intermediate precision
Method precision results (Day 1)
Intermediate precision results (Day 2)
Intermediate precision results (Day 3)
Fig. 2Typical overlay chromatogram of the blank, placebo, and spiked sample preparation
Fig. 3A typical overlay chromatogram of (a) acid hydrolysis sample and placebo, (b) base hydrolysis sample and placebo, (c) peroxide oxidation sample and lacebo, (d) thermal-exposed sample and placebo, (e) photolytic light-exposed sample and placebo.
Results of the forced degradation study for BPO and ADP
Peak purity results for the degradation sample:
Results of precision at the limit of quantification
Fig. 4Typical chromatogram of LOQ
Evaluation of the accuracy study
Regression statistics results
Robustness result of the HPLC method
Solution stability results for the sample at 15°C
Filter compatibility results
Solution stability results for the standard at 15°C