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  • 1.
    Oppong Bekoe, Samuel
    et al.
    Faculty of Health and Medical Sciences, University of Copenhagen.
    Bak, Søren Alex
    Faculty of Health and Medical Sciences, University of Copenhagen.
    Björklund, Erland
    Kristianstad University, Plattformen för molekylär analys. Kristianstad University, Faculty of Natural Science, Avdelningen för miljö- och biovetenskap. Kristianstad University, Faculty of Natural Science, Research environment MoLab. Faculty of Health and Medical Sciences, University of Copenhagen.
    Krogh, Kristine A.
    Faculty of Health and Medical Sciences, University of Copenhagen.
    Okine, Nathaniel N. N. A.
    Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.
    Adosraku, Reimmiel K.
    Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.
    Styrishave, Bjarne
    Faculty of Health and Medical Sciences, University of Copenhagen.
    Hansen, Martin
    Faculty of Health and Medical Sciences, University of Copenhagen.
    Determination of thirteen antibiotics in drug products: a new LC-MS/MS tool for screening drug product quality2014In: Analytical Methods, ISSN 1759-9660, E-ISSN 1759-9679, Vol. 6, p. 5847-5855Article in journal (Refereed)
    Abstract [en]

    Poor quality antibiotic medicines in circulation in Sub-Saharan Africa continue to be a burden. Pharmaceutical trade in substandard and counterfeit medicines is on the rise. The chemical quality of antibiotics dispensed in health facilities and recognised drug outlets in Ghana, when compromised, could be a major drawback to efforts made in fighting antibiotic resistance globally. To improve on antibiotic drug quality monitoring, a liquid chromatography-tandem mass spectrometry (LC-MS/MS) methodology, which is capable of quantifying thirteen antibiotics in drug products, was developed and validated in present work. The methodology was applied to various drug products including tablets, capsules, suspensions, syrups, intravenous and injection solutions as well as ear and eye droplets used as essential medicines in a Sub-Saharan country, Ghana.

  • 2.
    Svahn, Ola
    et al.
    Kristianstad University, Plattformen för molekylär analys. Kristianstad University, Faculty of Natural Science, Avdelningen för miljö- och biovetenskap. Kristianstad University, Faculty of Natural Science, Research environment MoLab.
    Björklund, Erland
    Kristianstad University, Plattformen för molekylär analys. Kristianstad University, Faculty of Natural Science, Avdelningen för miljö- och biovetenskap. Kristianstad University, Faculty of Natural Science, Research environment MoLab.
    Simple, fast and inexpensive large "whole water" volume sample SPE-loading using compressed air and finely ground sand2019In: Analytical Methods, ISSN 1759-9660, E-ISSN 1759-9679, Vol. 11, no 7, p. 894-896Article in journal (Refereed)
    Abstract [en]

    In environmental trace analysis there is often a need to enrich the compounds of interest from a large sample volume, where the use of solid phase extraction (SPE) is more or less the standard technique. The presence of the sample matrix can cause clogging of the SPE-column, especially at the end of a sample load. Swedish surface waters are often humic rich making the use of traditional sample loading by a vacuum manifold very limited. This obstacle forced the development of a different sample loading technique, based on compressed air and sand as an in-line-filter, designed to load larger sample volumes as needed in trace level analysis of hormones in surface water. The developed technique, combined with a UPLC MS/MS method, showed promising reproducibility and accuracy, and enabled increased sensitivity for the analysis of hormones in humic rich surface water.

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