Several banned substances are illegally used by athletes in racemic mixtures for performance enhancement. These include clenbuterol, methyl hexaneamine, methamphetamines, and amphetamines. Clenbuterol is present in a large number of doping samples from Olympic and non-Olympic athletes that have adverse analytical findings (AAFs). In some cases, the presence of these substances could be the result of consumption of meat contaminated with clenbuterol. In other cases, the origin is not clear. In this study, 27 products with racemic clenbuterol were evaluated using a new analytical methodology for the resolution of R-(À) and S-(+)-enantiomers of clenbuterol by liquid chromatography-tandem mass spectrometry (LC-MS/MS) using a chiral column in 15 min with good separation. The method developed can also be used for the analysis of other biological matrices such as urine, serum, and meat. The resolution between two peaks' (R s ) value obtained using chromatographic data was 1.03. Both clenbuterol enantiomers were present in all products analyzed and the ratio was nearly 1. The origin of the product was not important for determining the presence of one or both enantiomers. All products displayed a 50:50 ratio of clenbuterol enantiomers. To the best of our knowledge, clenbuterol ratio determination of a large number of pharmaceutical preparations and black-market products has not been reported previously. The information shown could be used by national anti-doping organizations and the athletes with AAFs attributed to clenbuterol.
Clenbuterol (4-amino-α-[(tert-butylamino)methyl]-3,5-dichlorobenzylalcohol) is a β2-adrenergic agonist. The consumption of meat contaminated with clenbuterol can lead to increased heart rate, blood pressure, anxiety, palpitations and skeletal muscle tremors. Several analytical methods have been developed to identify and quantify clenbuterol in different biological matrices. In this report, we have developed a specific and sensitive analytical method for quantifying clenbuterol and performed an in-depth enantiomeric analysis in bovine urine. The method was evaluated in accordance with international guidelines, and we used an isotopically labeled analog as an internal standard. The extraction efficiency for clenbuterol in bovine urine was > 98%, the limit of detection was 0.05 ng/mL and the limit of quantification was 0.10 ng/mL. Our assay showed high specificity, no carryover was observed and the assay was linear in the range 0.10–8.0 ng/mL. Fifteen bovine urine samples were analyzed (containing clenbuterol), and an enantiomeric analysis was performed. The clenbuterol concentration range was 0.10–10.56 ng/mL across these samples. The levorotatory enantiomer was detected at greater concentrations than the dextrorotatory enantiomer, the ratio being 1.7 ± 0.6 (n = 15), and a statistical difference was observed (P < 0.05) using the Wilcoxon test.
No existen dudas que el modelo a seguir es el del Desarrollo Sustentable, a partir de la implementación de acciones que puedan contribuir a desarrollar los ejes social, económico y ambiental de forma equilibrada. De esta manera y en función de una necesidad de cumplir con ese desarrollo, surgen mundialmente los Objetivos de desarrollo Sostenible (ODS 2030).La aplicación de estos objetivos y el cumplimiento de sus metas, no pueden estar ajenos a las Universidades, es por ello que en este trabajo se quiere tomar como ejemplo un organismo dependiente del Rectorado de la Universidad Nacional del Nordeste (UNNE), el Centro de Gestión Ambiental y Ecología (CEGAE), y analizar cómo se viene trabajando la sostenibilidad desde la Investigación-Gestión-Extensión-Docencia.Realizar una reseña de la incorporación de los ODS 2030 en diferentes proyectos; analizar los ejes más relevantes en los que ha participado y aportado a la comunidad; e identificar el perfil sustentable del CEGAE basado en los pilares del Desarrollo Sostenible.
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