Citation: | Huiya Yuan, Shihui Yu, Guihong Chai, Junting Liu, Qi (Tony) Zhou. An LC-MS/MS method for simultaneous analysis of the cystic fibrosis therapeutic drugs colistin, ivacaftor and ciprofloxacin[J]. Journal of Pharmaceutical Analysis, 2021, 11(6): 732-738. doi: 10.1016/j.jpha.2021.02.004 |
J.L. Bobadilla, M. Macek, J.P. Fine, etal Cystic fibrosis: a worldwide analysis of CFTR mutations-correlation with incidence data and application to screening, Hum. Mutat. 19(6) (2002) 575-606
|
K. De Boeck, F. Vermeulen, L. Dupont. The diagnosis of cystic fibrosis, Presse Med. 46(6) (2017) E97-E108
|
D. Goetz, C. Ren. Review of cystic fibrosis, Pediatr. Ann. 48(4) (2019) E154-E161
|
K. De Boeck, Cystic fibrosis in the year 2020: a disease with a new face, Acta Paediatr. 109 (2020) 893-899.
|
A. Schick, R. Kassen. Rapid diversification of Pseudomonas aeruginosa in cystic fibrosis lung-like conditions, Proc. Natl. Acad. Sci. U.S.A. 115(42) (2018) 10714-10719
|
B. Millar, J. Rendall, D. Downey, etal Does ivacaftor interfere with the antimicrobial activity of commonly used antibiotics against Pseudomonas aeruginosa?-Results of an in vitro study, J. Clin. Pharm. Therapeut. 43(6) (2018) 836-843
|
D. Hubert, R. Chiron, B. Camara, D, etal Real-life initiation of lumacaftor/ivacaftor combination in adults with cystic fibrosis homozygous for the Phe508del CFTR mutation and severe lung disease, J. Cyst. Fibros. 16(3) (2017) 388-391
|
Y.-H. Liu, S.-C. Kuo, B.-Y. Yao, Z, etal Colistin nanoparticle assembly by coacervate complexation with polyanionic peptides for treating drug-resistant gram-negative bacteria, Acta Biomater. 82 (2018) 133-142
|
W.T. Barker, S.E. Martin, C.E. Chandler, etal Small molecule adjuvants that suppress both chromosomal and mcr-1 encoded colistin-resistance and amplify colistin efficacy in polymyxin-susceptible bacteria, Bioorg. Med. Chem. 25(20) (2017) 5749-5753
|
J.M. Buyck, P.M. Tulkens, F. Van Bambeke, Activities of antibiotic combinations against resistant strains of Pseudomonas aeruginosa in a model of infected THP-1 monocytes, Antimicrob. Agents Chemother. 59(1) (2015) 258
|
A. Rehman, W. Patrick, I. Lamont, Mechanisms of ciprofloxacin resistance in Pseudomonas aeruginosa: new approaches to an old problem, J. Med. Microbiol. 68(1) (2019) 1-10
|
T.B. Tran, T. Velkov, R.L. Nation, etal Pharmacokinetics/pharmacodynamics of colistin and polymyxin B: are we there yet? Int. J. Antimicrob. 48(6) (2016) 592-597
|
N. Hoeiby, B. Frederiksen, T. Pressler, Eradication of early Pseudomonas aeruginosa infection, J. Cyst. Fibros. 4(2) (2005) 49-54
|
L.R. Reznikov, M.H. Abou Alaiwa, C.L. Dohrn, etal Antibacterial properties of the CFTR potentiator ivacaftor, J. Cyst. Fibros. 13(5) (2014) 515-519
|
E.K. Schneider, M.A. Azad, M.-L. Han, etal An “unlikely” pair: the antimicrobial synergy of polymyxin B in combination with the cystic fibrosis transmembrane conductance regulator drugs KALYDECO and ORKAMBI, ACS Infect. Dis. 2(7) (2016) 478-488
|
J. Li, R.W. Milne, R.L. Nation, J.D. Turnidge, etal A simple method for the assay of colistin in human plasma, using pre-column derivatization with 9-fluorenylmethyl chloroformate in solid-phase extraction cartridges and reversed-phase high-performance liquid chromatography, J. Chromatogr. 761(2) (2001) 167-175
|
F. Ratjen, H. Beier, H. Grasemann, Pharmacokinetics of inhaled colistin in patients with cystic fibrosis: authors' response, J. Antimicrob. Chemother. 58(1) (2006) 223-223
|
B. Jansson, M. Karvanen, O. Cars, etal Quantitative analysis of colistin A and colistin B in plasma and culture medium using a simple precipitation step followed by LC/MS/MS, J. Pharmaceut. Biomed. Anal. 49(3) (2009) 760-767
|
M. Leporati, R.O. Bua, F. Mariano, etal Determination by LC-MS/MS of colistins A and B in plasma and ultrafiltrate from critically ill patients undergoing continuous venovenous hemodiafiltration, Ther. Drug Monit. 36(2) (2014) 182-191
|
I.L. Tsai, H.-Y. Sun, G.-Y. Chen, etal Simultaneous quantification of antimicrobial agents for multidrug-resistant bacterial infections in human plasma by ultra-high-pressure liquid chromatography-tandem mass spectrometry, Talanta. 116 (2013) 593-603
|
E.K. Schneider, F. Reyes-Ortega, J.W. Wilson, etal Development of HPLC and LC-MS/MS methods for the analysis of ivacaftor, its major metabolites and lumacaftor in plasma and sputum of cystic fibrosis patients treated with ORKAMBI or KALYDECO, J. Chromatogr. 1038 (2016) 57-62
|
Z. Ma, J. Wang, J.P. Gerber, etal Determination of colistin in human plasma, urine and other biological samples using LC-MS/MS, J. Chromatogr. 862(1-2) (2008) 205
|
D.W.-M. Sin, C. Ho, Y.-C. Wong, etal Analysis of major components of residual bacitracin and colistin in food samples by liquid chromatography tandem mass spectrometry, Anal. Chim. Acta 535(1) (2005) 23-31
|
H.X. Ong, D. Traini, P.M. Young, Pharmaceutical applications of the Calu-3 lung epithelia cell line, Expert Opin. Drug Deliv. 10(9) (2013) 1287-1302
|
G. Chai, H. Park, S. Yu, etal Evaluation of co-delivery of colistin and ciprofloxacin in liposomes using an in vitro human lung epithelial cell model, Int. J. Pharm. 569 (2019)
|
D. Decolin, P. Leroy, A. Nicolas, etal Hyphenated liquid chromatographic method for the determination of colistin residues in bovine tissues, J. Chromatogr. Sci. 35(12) (1997) 557-564
|
Y. Dotsikas, C. Markopoulou, J. Koundourellis, etal Validation of a novel LC-MS/MS method for the quantitation of colistin A and B in human plasma, J. Separ. Sci. 34(1) (2011) 37-45
|
C. Govaerts, J. Rozenski, J. Orwa, etal Mass spectrometric fragmentation of cyclic peptides belonging to the polymyxin and colistin antibiotics studied by ion trap and quadrupole/orthogonal-acceleration time-of-flight technology, Rapid Commun. Mass Spectrom. 16(9) (2002) 823-833
|
C. Govaerts, J. Orwa, A.V. Schepdael, etal Characterization of polypeptide antibiotics of the polymyxin series by liquid chromatography electrospray ionization ion trap tandem mass spectrometry, J. Pept. Sci. 8(2) (2002) 45-55
|
E. Caro, R.M. Marce, P.A.G. Cormack, etal Direct determination of ciprofloxacin by mass spectrometry after a two-step solid-phase extraction using a molecularly imprinted polymer, J. Sep.Sci. 29(9) (2006) 1230-1236
|