4.5 Article

Environmentally friendly stability-indicating HPLC method for the determination of isotretinoin in commercial products and solubility samples

Journal

HELIYON
Volume 9, Issue 8, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.heliyon.2023.e18405

Keywords

AGREE; Isotretinoin; Environmentally friendly HPLC; Solubility; Validation

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An environmentally friendly HPLC assay was designed and verified for the quantification of ITN in commercial products and solubility samples. The assay demonstrated high performance with excellent accuracy, precision, and sensitivity. The suggested approach proved to be applicable for regular testing of ITN in procured capsules and solubility samples, providing important information on its presence and solubility.
In this study, an environmentally friendly high-performance liquid chromatography (HPLC) assay to quantify isotretinoin (ITN) in commercial products and solubility samples is designed and verified. A Nucleodur reverse-phase C18 column was used as the stationary phase to identify ITN. The ecologically friendly mobile phase was composed of ethyl acetate and ethanol (50:50 v/v), and it was delivered at a flow rate of 1.0 mL/min. ITN was measured at 354 nm in wavelength. The current HPLC method had a determination coefficient of 0.9994 and was linear in the 0.2-80 & mu;g/g range. The current protocol for ITN measurement was also rapid (retention time = 2.78 min), accurate (%recoveries = 98.60-101.52), precise (% uncertainties = 0.71-0.98), and sensitive. According to the AGREE methodology, the current procedure received an outstanding greenness profile with an AGREE score of 0.76. By determining ITN in commercial products and solubility samples, the applicability of the current approach was proven. ITN was discovered to be present in 98.43% and 100.84%, respectively, of commercial capsule brands A and B. The ITN's solubility in numerous eco-friendly solvents was successfully measured. Under different stress conditions, the current approach was able to distinguish between its degradation products, demonstrating its stability-indicating characteristics. These findings indicated that ITN in procured capsules and solubility samples might be regularly tested by the suggested approach.

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