Development and Validation of Simple and Stable LCMS Method for the Quantification of Potential Genotoxic Impurities in Ozenoxacin Pure Drug and its Commercial Preparations

Author:

Rao P. G. Phaneendra,Rao Battula Sreenivasa,Bharathi Nagulapati Manjula

Abstract

Ozenoxacin is an antibiotic drug prescribed to treat various skin infections caused by various bacteria. Various chemical mechanisms such as stille coupling, Buchwald–Hartwig coupling, cyclization and saponification are involved during the process of synthesis of Ozenoxacin. In the process of synthesis, there is a possibility of the formation of related impurities and among them, some are genotoxic impurities. To date, in literature, there is no method reported for analysing Potential Genotoxic Impurities (PGIs) in Ozenoxacin and hence this study was initiated to develop an LCMS method for quantification of two genotoxic impurities of Ozenoxacin viz., nitroso impurity, ester impurity. The analytes were resolved on Alltima C18 column (150×4.6mm; 5 μm particle size) using 0.01 mM ammonium acetate at pH 4.8 and methanol in 80:20 (v/v) at 0.5 mL/min flow rate and 10 μ sample injection volume. The multiple reaction monitoring of the mass fragments confirms the parent ion at m/z of 364, 393 and 496 for Ozenoxacin, Nitroso and Ester impurity respectively with characteristic product ion at m/z 196. The method has a linearity range of 0.05 μg/mL to 1.0 μg/mL for three analytes with detection limits of 0.015, 0.011 and 0.015 μg/mL for Ester impurity, Ozenoxacin and Nitroso impurity respectively. The method was validated and produces acceptable results and can successfully separate the potential genotoxic impurities in spiked commercial samples. Based on the findings, it was concluded that this method can be practically useful for the identification and quantification of potential genotoxic impurities and may apply to the safe use of Ozenoxacin in clinical treatment.

Publisher

Informatics Publishing Limited

Reference17 articles.

1. Kanayama S, Ikeda F, Okamoto K, Nakajima A, Matsumoto T, Ishii R, Amano A, Matsuzaki K, Matsumoto S. In-vitro antimicrobial activity of Ozenoxacin against methicillin-susceptible Staphylococcus aureus, methicillin-resistant S. aureus and Streptococcus pyogenes isolated from clinical cutaneous specimens in Japan. J Infect Chemother. 2016; 22(10):720-3. https://doi.org/10.1016/j.jiac.2016.03.006 PMid: 27091753

2. Kanayama S, Okamoto K, Ikeda F, Ishii R, Matsumoto T, Hayashi N, Gotoh N. Bactericidal activity and postantibiotic effect of Ozenoxacin against Propioni bacterium acnes. J Infect Chemother. 2017; 23(6):374-80. https://doi. org/10.1016/j.jiac.2017.03.004PMid:28389164

3. Gropper S, Albareda N, Chelius K, Kruger D, Mitha I, Vahed Y, Gani M, García-Alonso F. Ozenoxacin in Impetigo Trial Investigators Group. Ozenoxacin 1% cream in the treatment of impetigo: A multicenter, randomized, placeboand retapamulin-controlled clinical trial. Future Microbiol. 2014; 9(9):1013-23. https://doi.org/10.2217/fmb.14.78 PMid:25340832

4. López Y, Tato M, Espinal P, Garcia-Alonso F, Gargallo- Viola D, Cantón R, Vila J. In-vitro selection of mutants resistant to Ozenoxacin compared with Levofloxacin and Ciprofloxacin in Gram-positive Cocci. J Antimicrob Chemother. 2015; 70(1):57-61. https://doi.org/10.1093/jac/ dku375 PMid:25261416

5. Dembo G, Park SB, Kharasch ED. Central nervous system concentrations of cyclooxygenase-2 inhibitors in humans. The Journal of the American Society of Anesthesiologists. 2005; 102(2):409-15. https://doi.org/10.1097/00000542- 200502000-00026 PMid:15681959

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