3 resultados para Creatinine Clearance

em Consorci de Serveis Universitaris de Catalunya (CSUC), Spain


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La sèpsia és la resposta del organisme davant una agresió externa, com a resultat de la interacció de l'agent agressor amb l'organisme agredit. Malgrat els dels avanços i les noves guias continua essent, una de les patologies més freqüents a les unitats de cures intensives. A més a més de la sospita clínica, són necesaris altres marcadors que ens ajudin al diagnóstic per a iniciar un tractament agresiu precoç. En aquest traball s'estudia una cohort de pacients, observant si la determinació dels valors lactat arterial (puntual i evolutiu) i l'aclarament de lactat com a marcadors de l'oxigenació tisular, poden servir com a guia per a una correcta resucitació, i si poden tenir valor pronòstic. Es realitza una comparació amb la resta dels biomarcadors, estudiant el seu comportament seqüencial a la sèpsia.

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We have reported in a variety of mammalian cells the reversible formation of a filamentous actin (F-actin)-enriched aggresome generated by the actin toxin jasplakinolide (Lázaro-Diéguez et al., J Cell Sci 2008; 121:1415-25). Notably, this F-actin aggresome (FAG) resembles in many aspects the pathological Hirano body, which frequently appears in some diseases such as Alzheimer's and alcoholism. Using selective inhibitors, we examined the molecular and subcellular mechanisms that participate in the clearance of the FAG. Chaperones, microtubules, proteasomes and autophagosomes all actively participate to eliminate the FAG. Here we compile and compare these results and discuss the involvement of each process. Because of its simplicity and high reproducibility, our cellular model could help to test pharmacological agents designed to interfere with the mechanisms involved in the clearance of intracellular bodies and, in particular, of those enriched in F-actin.

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Automotive painting cabins are cleaned with several solvents, being great part of them mixtures of volatile organic compounds (VOCs), where the three xylene isomers are the most important constituents. To evaluate the work-related exposition of the cleaners that use these mixtures of solvents, xylenes have been determined in the working ambient air as well as its metabolite, o-m-p-methyl hippuric acid, has been analysed in urine to establish the dermal and respiratory exposition. This evaluation has been done in order to assess the occupational exposure to VOCs and to know the working conditions of the cleaners, but also to evaluate the effectiveness of personal protective equipment (PPE), the engineering control and the work practices.The xylenes have been chosen as indicators of exposition because they are the main components in the cleaning solvents used, with a level of concentration between 50% and 85%.The Xylenes have an occupational exposure limit (8 h TWA) of 50 ppm (221 mg/m3) and a short-term exposure limit (STEL) of 100 ppm (442 mg/m3). On the other hand, the biological exposure index (BEI) for xylenes is the sum of the total methyl hippuric acids in urine at the end of the work-shift, being the value 1500 mg/g creatinine.