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1.
Anaesthesia ; 78(6): 712-721, 2023 06.
Artículo en Inglés | MEDLINE | ID: mdl-37010959

RESUMEN

Ventilator-associated pneumonia commonly occurs in critically ill patients. Clinical suspicion results in overuse of antibiotics, which in turn promotes antimicrobial resistance. Detection of volatile organic compounds in the exhaled breath of critically ill patients might allow earlier detection of pneumonia and avoid unnecessary antibiotic prescription. We report a proof of concept study for non-invasive diagnosis of ventilator-associated pneumonia in intensive care (the BRAVo study). Mechanically ventilated critically ill patients commenced on antibiotics for clinical suspicion of ventilator-associated pneumonia were recruited within the first 24 h of treatment. Paired exhaled breath and respiratory tract samples were collected. Exhaled breath was captured on sorbent tubes and then analysed using thermal desorption gas chromatography-mass spectrometry to detect volatile organic compounds. Microbiological culture of a pathogenic bacteria in respiratory tract samples provided confirmation of ventilator-associated pneumonia. Univariable and multivariable analyses of volatile organic compounds were performed to identify potential biomarkers for a 'rule-out' test. Ninety-six participants were enrolled in the trial, with exhaled breath available from 92. Of all compounds tested, the four highest performing candidate biomarkers were benzene, cyclohexanone, pentanol and undecanal with area under the receiver operating characteristic curve ranging from 0.67 to 0.77 and negative predictive values from 85% to 88%. Identified volatile organic compounds in the exhaled breath of mechanically ventilated critically ill patients show promise as a useful non-invasive 'rule-out' test for ventilator-associated pneumonia.


Asunto(s)
Neumonía Asociada al Ventilador , Compuestos Orgánicos Volátiles , Humanos , Biomarcadores , Pruebas Respiratorias/métodos , Enfermedad Crítica , Neumonía Asociada al Ventilador/diagnóstico , Neumonía Asociada al Ventilador/microbiología , Sistema Respiratorio/química , Compuestos Orgánicos Volátiles/análisis
2.
Org Biomol Chem ; 15(20): 4440-4448, 2017 May 23.
Artículo en Inglés | MEDLINE | ID: mdl-28485453

RESUMEN

Reduction of double bonds of α,ß-unsaturated carboxylic acids and esters by ene-reductases remains challenging and it typically requires activation by a second electron-withdrawing moiety, such as a halide or second carboxylate group. We showed that profen precursors, 2-arylpropenoic acids and their esters, were efficiently reduced by Old Yellow Enzymes (OYEs). The XenA and GYE enzymes showed activity towards acids, while a wider range of enzymes were active towards the equivalent methyl esters. Comparative co-crystal structural analysis of profen-bound OYEs highlighted key interactions important in determining substrate binding in a catalytically active conformation. The general utility of ene reductases for the synthesis of (R)-profens was established and this work will now drive future mutagenesis studies to screen for the production of pharmaceutically-active (S)-profens.


Asunto(s)
Antiinflamatorios no Esteroideos/metabolismo , Oxidorreductasas/metabolismo , Propionatos/química , Antiinflamatorios no Esteroideos/química , Cristalografía por Rayos X , Modelos Moleculares , Estructura Molecular , Estereoisomerismo , Nicotiana/enzimología
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