Literature DB >> 2833490

Comparison of high performance liquid chromatographic and microbiological methods for determination of itraconazole.

D W Warnock1, A Turner, J Burke.   

Abstract

A reversed-phase high-performance liquid chromatographic (HPLC) method, with internal standard quantification, is described for the analysis of itraconazole in human serum. No interference was encountered from over 60 drugs tested. The standard curve was linear from 10 to 10,000 micrograms/l. The detection limit of the method was 10 micrograms/l, with coefficients of variation from 2.2 to 7.8% over a range of itraconazole concentrations from 20 to 1600 micrograms/l. An agar diffusion method is also described with a lowest reproducible limit of 100 micrograms/l. This method had coefficients of variation from 11.0 to 17.1% over a range of itraconazole concentrations from 100 to 1600 micrograms/l. Comparison of the methods showed that HPLC gave much lower values of itraconazole concentrations in patient serum samples than did the microbiological method.

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Year:  1988        PMID: 2833490     DOI: 10.1093/jac/21.1.93

Source DB:  PubMed          Journal:  J Antimicrob Chemother        ISSN: 0305-7453            Impact factor:   5.790


  13 in total

1.  High-dose itraconazole in the treatment of severe mycoses.

Authors:  P K Sharkey; M G Rinaldi; J F Dunn; T C Hardin; R J Fetchick; J R Graybill
Journal:  Antimicrob Agents Chemother       Date:  1991-04       Impact factor: 5.191

2.  Standardization of a fluconazole bioassay and correlation of results with those obtained by high-pressure liquid chromatography.

Authors:  J H Rex; L H Hanson; M A Amantea; D A Stevens; J E Bennett
Journal:  Antimicrob Agents Chemother       Date:  1991-05       Impact factor: 5.191

3.  Simultaneous quantitation of five triazole anti-fungal agents by paper spray-mass spectrometry.

Authors:  Christine L Skaggs; Greta J Ren; El Taher M Elgierari; Lillian R Sturmer; Run Z Shi; Nicholas E Manicke; Lindsey M Kirkpatrick
Journal:  Clin Chem Lab Med       Date:  2020-04-28       Impact factor: 3.694

4.  Itraconazole solution: higher serum drug concentrations and better clinical response rates than the capsule formulation in acquired immunodeficiency syndrome patients with candidosis.

Authors:  J D Cartledge; J Midgely; B G Gazzard
Journal:  J Clin Pathol       Date:  1997-06       Impact factor: 3.411

5.  Food interaction and steady-state pharmacokinetics of itraconazole capsules in healthy male volunteers.

Authors:  J A Barone; J G Koh; R H Bierman; J L Colaizzi; K A Swanson; M C Gaffar; B L Moskovitz; W Mechlinski; V Van de Velde
Journal:  Antimicrob Agents Chemother       Date:  1993-04       Impact factor: 5.191

6.  Variability of Hydroxy-Itraconazole in Relation to Itraconazole Bloodstream Concentrations.

Authors:  Nathan P Wiederhold; Ilan S Schwartz; Thomas F Patterson; George R Thompson
Journal:  Antimicrob Agents Chemother       Date:  2021-03-18       Impact factor: 5.191

7.  Efficacy of intravenous itraconazole against experimental pulmonary aspergillosis.

Authors:  H M Miyazaki; S Kohno; Y Miyazaki; K Mitsutake; K Tomono; M Kaku; H Koga; K Hara
Journal:  Antimicrob Agents Chemother       Date:  1993-12       Impact factor: 5.191

Review 8.  Optimisation of itraconazole therapy using target drug concentrations.

Authors:  J M Poirier; G Cheymol
Journal:  Clin Pharmacokinet       Date:  1998-12       Impact factor: 6.447

9.  Bioassay for serum itraconazole concentrations using hydroxyitraconazole standards.

Authors:  D Law; C B Moore; D W Denning
Journal:  Antimicrob Agents Chemother       Date:  1994-07       Impact factor: 5.191

10.  Discrepancies in bioassay and chromatography determinations explained by metabolism of itraconazole to hydroxyitraconazole: studies of interpatient variations in concentrations.

Authors:  J S Hostetler; J Heykants; K V Clemons; R Woestenborghs; L H Hanson; D A Stevens
Journal:  Antimicrob Agents Chemother       Date:  1993-10       Impact factor: 5.191

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