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1.
Mycoses ; 62(10): 945-948, 2019 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-31313395

RESUMO

BACKGROUND: Invasive pulmonary aspergillosis (IPA) remains a life-threatening opportunistic infection, but can be difficult to diagnose. New biomarkers are therefore needed. Gliotoxin (GT), a secondary metabolite of Aspergillus fumigatus, and bis(methylthio)gliotoxin (bmGT), a degradation product of GT, have been proposed as potential biomarkers. However, these findings have yet to be confirmed. OBJECTIVES: To identify the diagnostic potential of GT and bmGT in serum and bronchoalveolar lavage fluid (BALf) in haematology patients compared to galactomannan (GM). MATERIALS AND METHODS: We prospectively collected culture supernatant, serum and BALf from patients with culture-positive IPA and measured GT and bmGT concentrations using ultra high-performance liquid chromatography-quadrupole time of flight mass spectrometry. Galactomannan was detected using a commercially available enzyme immunoassay. RESULTS: We included 18 patients with proven (n = 6) and probable (n = 12) IPA, all with positive cultures for Aspergillus fumigatus. BmGT was only detected in serum from one patient (5.6%), whereas GM was positive (optical density ≥ 0.5) in 11/18 patients (61.1%, P = 0.002). We could not find GT in any serum sample. In BALf, bmGT was detected in 8/18 patients (44.4%) and GT in 9/18 patients (50%), compared to GM (optical density ≥ 1.0) in all patients (100%). CONCLUSIONS: Gliotoxin and bis(methylthio)gliotoxin had a very poor performance for diagnosing IPA. As other biomarkers are more sensitive and easier to detect, we would not recommend serum or BALf GT/bmGT to be used in the diagnosis of IPA.


Assuntos
Biomarcadores/sangue , Testes Diagnósticos de Rotina/métodos , Gliotoxina/análogos & derivados , Gliotoxina/sangue , Aspergilose Pulmonar Invasiva/diagnóstico , Líquido da Lavagem Broncoalveolar/química , Galactose/análogos & derivados , Humanos , Mananas/sangue , Estudos Prospectivos , Soro/química
2.
Forensic Sci Int ; 143(2-3): 133-9, 2004 Jul 16.
Artigo em Inglês | MEDLINE | ID: mdl-15240033

RESUMO

The neolignan-type substance 2,4-dimethyl-3,5-bis(4'-methoxyphenyl) tetrahydrofuran is presented as a new forensic marker compound for the peracid oxidation of anethole. It is hypothesized that the formation of a stable intermediary carbocation in the hydrolysis reaction of anethole epoxide is not only responsible for the presence of 1,2-diols (and its esters) and 4-methoxyphenyl-2-propanone (PMP2P) but can also be the cause for the creation of this neolignan impurity due to interaction with anethole itself. Moreover, the applicability of this new forensic marker is demonstrated by its retrieval in clandestinely manufactured 4-methoxyamphetamine (PMA) preparations.


Assuntos
Anfetaminas/química , Anisóis/análise , Contaminação de Medicamentos , Furanos/análise , Alucinógenos/química , Drogas Ilícitas/química , Derivados de Alilbenzenos , Anisóis/química , Medicina Legal , Cromatografia Gasosa-Espectrometria de Massas , Oxirredução
3.
Forensic Sci Int ; 133(1-2): 159-70, 2003 Apr 23.
Artigo em Inglês | MEDLINE | ID: mdl-12742705

RESUMO

These days, MDMA is one of the most popular drugs of abuse. Due to its illegality, MDMA and its chemical precursors are watched by governmental organizations in many countries. To avoid conflicts with legal instances, underground chemists have tried to market several new unregulated amphetamine analogues, such as 4-MTA. Para-methoxyamphetamine (PMA), on the other hand, is regulated by law but its precursors are easily obtained since they are cheap and unwatched. This article presents such a case, namely the large scale synthesis of PMA using anethole, a main constituent of anise oil, as precursor. Anethole has been converted to its phenyl acetone analogue via peracid oxidation, while PMA itself has been synthesized using this ketone as precursor in the Leuckart synthesis. The synthesis of PMA using anethole as starting product has been investigated applying GC/MS and GC-HSPME/MS techniques, hereby discovering new specific (4-methoxyphenol) and already identified synthesis impurities (4-methyl-5-(4-methoxyphenyl)pyrimidine, N-(beta-4-methoxyphenylisopropyl)-4-methoxybenzyl methyl ketimine, 1-(4-methoxyphenyl)-N-(2-(4-methoxyphenyl)-1-methylethyl-2-propanamine, 1-(4-methoxyphenyl)-N-methyl-N-(2-(4-methoxyphenyl)-1-methylethyl-2-propanamine, N-(beta-4-methoxyphenylisopropyl)-4-methoxybenzaldimine). The new impurity 4-methoxyphenol is specific for the application of a peracid oxidation method where anethole is used as precursor.

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