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CHROMATOGRAPHY

Simultaneous Determination of Artemether and Azithromycin in Suppositories by Reversed Phase HPLC

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Pages 2732-2743 | Received 18 Oct 2010, Accepted 16 Dec 2010, Published online: 28 Oct 2011

REFERENCES

  • Abuin , S. , R. Codony , R. Compano , M. Granados , and M. D. Prat . 2006 . Analysis of macrolide antibiotics in river water by solid-phase extraction and liquid chromatography-mass spectrometry . J. Chromatogr. A 1114 : 73 – 81 .
  • Andersen , S. L. , A. Ager , P. McGreevy , B. G. Schuster , D. Wesche , R. Kuschner , C. Ohrt , W. Ellis , R. Rossan , and J. Berman . 1995 . Activity of azithromycin as a blood schizonticide against rodent and human plasmodia in vivo . Am. J. Trop. Med. Hyg. 52 : 159 – 161 .
  • Atemnkeng , M. A. , E. Marchand , and J. Plaizier-Vercammen . 2007. Assay of artemether, methylparaben and propylparaben in a formulated paediatric antimalarial dry suspension. J. Pharm. Biomed. Anal. 43: 727–732.
  • Barrett , B. , V. Borek-Dohalsky , P. Fejt , S. Vaingatova , J. Huclova , B. Nemec , and I. Jelinek . 2005 . Validated HPLC-MS-MS method for determination of azithromycin in human plasma . Anal. Bioanal. Chem. 383 : 210 – 217 .
  • Caporal-Gautier , J. , J. M. Nivet , P. Algranti , M. Guilloteau , M. Histe , M. Lallier , J. J. Nguyen-Huu , and R. Russotto . 1992 . Guide de validation analytique, rapport d'une commission SFSTP (Méthodologie) . STP Pharma Prat. 2 : 205 – 226 .
  • Chimanuka , B. , M. Gabriëls , and J. Plaizier-Vercammen . 2002 . A. Preparation of beta-artemether liposomes, their HPLC-UV evaluation and relevance for clearing recrudescent parasitaemia in Plasmodium chabaudi malaria-infected mice . J. Pharm. Biomed. Anal. 28 : 13 – 22 .
  • da Costa César , I. , F. H. Nogueira , and G. A. Pianetti . 2008 . Comparison of HPLC, UV spectrophotometry and potentiometric titration methods for the determination of lumefantrine in pharmaceutical products . J. Pharm. Biomed. Anal. 48 : 951 – 954 .
  • Debremaeker , D. , D. Visky , H. K. Chepkwony , A. Van Schepdael , E. Roets , and J. Hoogmartens . 2003 . Analysis of unknown compounds in azithromycin bulk samples with liquid chromatography coupled to ion trap mass spectrometry . Rap. Com. Mass Spec. 17 : 342 – 350 .
  • Egi , Y. , and A. Ueyanagi . 1998 . Ghost peaks and aerated sample solvent . LC GC 11 : 142 – 147 .
  • Feitosa-Felizzola , F. , and S. Chiron . 2009 . Occurrence and distribution of selected antibiotics in a small Mediterranean stream . J. Hydrol. 364 : 50 – 57 .
  • Gaudin , K. , P. Millet , F. Fawaz , P. Olliaro , N. J. White , C. Cassus-Coussère , U. Agbahoungha , and J.-P. Dubost . 2010 . Investigation of porous graphitic carbon at high-temperature liquid chromatography with evaporative light scattering detection for the analysis of the drug combination artesunate--azithromycin for the treatment of severe malaria . J. Chromatogr. A 1217 : 75 – 81 .
  • Ghasemi , J. , and S. Saaidpour . 2007 . Quantitative structure–property relationship study of n-octanol–water partition coefficients of some of diverse drugs using multiple linear regression . Anal. Chim. Acta 604 : 99 – 106 .
  • Gonzalez de la Huebra , M. J. , and U. Vincent . 2005 . Analysis of macrolide antibiotics by liquid chromatography . J. Pharm. Biomed. Anal. 39 : 376 – 398 .
  • Haynes , R. K. , H. -W. Chan , W. -Y. Ho , C. K. -F. Ko , L. Gerena , D. E. Kyle , W. Peters , and B. L. Robinson . 2005 . Convenient access both to highly antimalaria-active 10- arylaminoartemisinins, and to 10-alkyl ethers including artemether, arteether, and artelinate . Chem. Bio. Chem. 6 : 659 – 667 .
  • Heinisch , S. , and J. L. Rocca . 2004 . Sense and nonsense of high-temperature liquid chromatography . J. Chromatogr. A 1048 : 183 – 193 .
  • Hien , T. T. , and N. J. White . 1993 . Qinghaosu . Lancet 341 : 603 – 608 .
  • Hubert , P. , J. J. Nguyen-Huu , B. Boulanger , E. Chapuzet , P. Chiap , N. Cohen , et al. 2006 . Quantitative analytical procedures validation: harmonization of the approaches. Part III. Examples of application . STP Pharma Prat. 16 : 87 – 121 .
  • Hubert , P. , J. J. Nguyen-Huu , B. Boulanger , E. Chapuzet , P. Chiap , N. Cohen , et al. 2007 . Harmonization of strategies for the validation of quantitative analytical procedures. A SFSTP proposal--part II . J. Pharm. Biomed. Anal. 45 : 70 – 81 .
  • Kulikov , A. U. , and A. G. Verushkin . 2004 . Development and validation of a micellar liquid chromatographic method with UV detection for determination of azithromycin in tablets and capsules . Chromatographia 60 : 33 – 38 .
  • Liu , F. , Y. Xu , J. Huang , S. Gao , and Q. Guo . 2007. Sensitive liquid chromatography/mass spectrometry assay for the quantification of azithromycin in human plasma. Biomed. Chromatogr. 21: 1272–1278.
  • Miguel , L. , and C. Barbas . 2003 . LC determination of impurities in azithromycin tablets . J. Pharm. Biomed. Anal. 33 : 211 – 217 .
  • Mohamed , S. S. , S. A. Khalid , S. A. Ward , T. S. M. Wan , H. P. O. Tang , M. Zheng , R. K. Haynes , and G. Edwards . 1999 . Simultaneous determination of artemether and its major metabolite dihydroartemisinin in plasma by gas chromatography–mass spectrometry-selected ion monitoring . J. Chromatogr. B 731 : 251 – 260 .
  • Noedl , H. , S. Krudsood , W. Leowattana , N. Tangpukdee , and W. Thanachartwet . 2007 . In vitro antimalarial activity of azithromycin, artesunate, and quinine in combination and correlation with clinical outcome . Ant. imicrob. Agents Chemother. 51 : 651 – 656 .
  • Noedl , H. , W. H. Wernsdorfer , S. Krudsood , P. Wilairatana , H. Kollaritsch , G. Wiedermann , and S. Looareesuwan . 2001 . Antimalarial activity of azithromycin, artemisinin and dihydroartemisinin in fresh isolates of Plasmodium falciparum in Thailand . Acta Trop. 80 : 39 – 44 .
  • Sandrenan , N. , A. Sioufi , J. Godbillon , C. Netter , M. Donker , and C. Van Valkenburg . 1997 . Determination of artemether and its metabolite, dihydroartemisinin, in plasma by high-performance liquid chromatography and electrochemical detection in the reductive mode . J. Chromatogr. B 691 : 145 – 153 .
  • Shi , B. , Y. Yu , Z. Li , L. Zhang , Y. Zhong , S. Su , and S. Liang . 2006 . Quantitative analysis of artemether and its metabolite dihydroartemisinin in human plasma by LC with tandem mass spectrometry . Chromatographia 64 : 523 – 530 .
  • Souppart , C. , N. Gauduchau , N. Sandrenan , and F. Richard . 2002 . Development and validation of a high-performance liquid chromatography–mass spectrometry assay for the determination of artemether and its metabolite dihydroartemisinin in human plasma . J. Chromatogr. B 774 : 195 – 203 .
  • Yeo , A. E. , and K. H. Rieckmann . 1995 . Increased antimalarial activity of azithromycin during prolonged exposure of Plasmodium falciparum in vitro . Int. J. Parasitol. 25 : 531 – 532 .
  • Zubata , P. , R. Ceresole , M. A. Rosasco , and M. T. Pizzorno . 2002 . A new HPLC method for azithromycin quantitation . J. Pharm. Biomed. Anal. 27 : 833 – 836 .
  • Zhang , Y. , X. Liu , Y. Cui , H. Huang , N. Chi , and X. Tang . 2009 . Aspects of degradation kinetics of azithromycin in aqueous solution . Chromatogr. 70 : 67 – 73 .

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