Quinolone Antibacterials: Commentary and Considerations Regarding UV Spectra and Chemical Structure
By: Rusu Aura, Imre Silvia, Mircia Eleonora and Hancu Gabriel
References
- 1. Andersson MI, MacGowan AP. Development of the quinolones. J Antimicrob Chemother. 2003;51:1–11.
- 2. Beale JM jr. Chapter 6: Anti-infective Agents, in Block JH, Beale JM (eds): Wilson and Gisvold’s textbook of Organic Medicinal and Pharmaceutical Chemistry. Lippincott Williams&Wilkins. Philadelphia. 2011, 179-241.
- 3. Cooper C – Chapter 12: Spectroscopy in Cooper C (ed): Organic Chemist’s Desk Reference. Taylor and Frances Group CRC Press, New York, 2011, 192-195.
- 4. Kaur K, Kumar A, Kumar Malik A, Singh B, Rao ALJ. Spectrophotometric methods for the determination of fluoroquinolones: a review. Crit Rev Anal Chem. 2008;38:2–18.
- 5. Belal F, Al-Majed AA, Al-Obaid AM. Methods of analysis of 4-quinolone antibacterials. Talanta. 1999;50:765–786.
- 6. Andreu V, Blasco C, Pico Y. Analytical strategies to determine quinolone residues in food and the environment. Trend Anal Chem. 2007;26:534-556.
- 7. Blasco C, Torres CM, Pico Y. Progress in analysis of residual antibacterials in food, Trend Anal Chem. 2007;26:895-913.
- 8. Turel I. The interactions of metal ions with quinolone antibacterial agents, Coord Chem Rev. 2002;232:27–47.
- 9. El-Gamel NE, Zayed MA. Synthesis, structural characterization and antimicrobial activity evaluation of metal complexes of sparfloxacin. Spectrochim Acta Part A. 2011;82:414–423.
- 10. Rusu A, Tóth G, Szőcs L, Kökösi J, Kraszni M, Gyéresi Á, Noszál B. Triprotic Site-specific Acid-base Equilibria and Related Properties of Fluoroquinolone Antibacterials. J Pharm Biomed Anal. 2012;66:50-57.
- 11. European Pharmacopoeia 8th edition. Council of Europe, Strasbourg, 2014, 1896, 2819, 2875
- 12. Owen T. Fundamentals of Modern UV-Visible Spectroscopy: A Primer Paperback, Hewlett-Packard Company. Germany, 1996, 67-69.
- 13. Rusu A. Hancu G. Völgyi G. Tóth G. Noszál B. Gyéresi A. Separation and determination of quinolone antibacterials by capillary electrophoresis. J Chromatogr Sci. 2014;52:919-925.
- 14. Dibbern HW, Müller RM, Wirbitzki E(eds). UV and IR Spectra, Pharmaceutical Substances (UV and IR) and Pharmaceutical and Cosmetic Excipients (IR). Editio Cantor Verlag, Aulendor, 2002.
- 15. Sugioka M. The Relationship Between UV-VIS Absorption and Structure of Organic Compounds. UV Talk Letter February. Shimadzu. 2009;2:5-6.
- 16. NIST Chemistry WebBook ()
- 17. Watson DG. Chapter 4 Ultraviolet and visible spectroscopy, in Watson DG (ed): Pharmaceutical Analysis. Churchill Livingstone Elsevier. Edinburgh, 2012, 75-96.
- 18. Faust B. Chapter 4 Ultraviolet/visible spectroscopy, in Faust B (ed): Modern Chemical Techniques - An Essential Reference for Students and Teachers. The Royal Society of Chemistry, 1997, 92-115.
- 19. Park H-R, Chung K-Y, Lee H-C, Lee J-K, Bark K-M. Ionization and Divalent Cation Complexation of Quinolone Antibiotics in Aqueous Solution. Bull Korean Chem Soc. 2000,21:849–854.
- 20. Navaneeswari R, Raveendra Reddy P. Analytical method for piperazine in an active pharmaceutical ingredient using chemical derivatization and HPLC-UV. J Chem Pharm Res. 2012;4:2854-2859.
- 21. Balfour WJ, Ram RS. The near-ultraviolet vapour phase absorption spectrum of anisole. Chem Phys Lett. 1982,92:279-282.
DOI: https://doi.org/10.1515/amma-2015-0084 | Journal eISSN: 2668-7763 (formerly 2247-6113) | Journal ISSN: 2668-7755
Language: English
Page range: 328 - 336
Submitted on: Jul 24, 2015
Accepted on: Aug 11, 2015
Published on: Jan 19, 2016
Published by: University of Medicine, Pharmacy, Science and Technology of Targu Mures
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year
Related subjects:
© 2016 Rusu Aura, Imre Silvia, Mircia Eleonora, Hancu Gabriel, published by University of Medicine, Pharmacy, Science and Technology of Targu Mures
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.