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1.
Environ Pollut ; 170: 152-60, 2012 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-22797349

RESUMEN

Liver samples from 53 Franciscana dolphins along the Brazilian coast were analyzed for organobrominated compounds. Target substances included the following anthropogenic pollutants: polybrominated diphenyl ethers (PBDEs), polybrominated biphenyls (PBBs), pentabromoethylbenzene (PBEB), hexabromobenzene (HBB), decabromodiphenylethane (DBDPE), as well as the naturally-generated methoxylated-PBDEs (MeO-PBDEs). PBDE concentrations ranged from 6 to 1797 ng/g lw (mean 166 ± 298 ng/g lw) and were similar to those observed in cetaceans from Northern Hemisphere. PBBs were found in all sampling locations (

Asunto(s)
Delfines/metabolismo , Monitoreo del Ambiente , Hidrocarburos Bromados/metabolismo , Contaminantes Químicos del Agua/metabolismo , Animales , Océano Atlántico , Brasil , Femenino , Retardadores de Llama/análisis , Retardadores de Llama/metabolismo , Éteres Difenilos Halogenados/análisis , Éteres Difenilos Halogenados/metabolismo , Hidrocarburos Bromados/análisis , Hígado/metabolismo , Masculino , Bifenilos Polibrominados/análisis , Bifenilos Polibrominados/metabolismo , Contaminantes Químicos del Agua/análisis
2.
Environ Int ; 36(1): 60-67, 2010 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-19864024

RESUMEN

Liver samples from 51 cetaceans, comprising 10 species, stranded between 1994 and 2006 in a highly industrialized and urbanized region in Southeast Brazil, were analyzed for polybrominated diphenyl ethers (PBDEs) and methoxylated-PBDEs (MeO-PBDEs). A concentration range of PBDEs (3-5960ng/g lw) similar to that observed in Northern Hemisphere dolphins was found. MeO-PBDE concentrations in continental shelf (CS) dolphins from Brazil are among the highest detected to date in cetaceans (up to 250microg/g lw). Higher SigmaMeO-PBDE concentrations were measured in CS and oceanic dolphins than in estuarine dolphins. The SigmaPBDE/SigmaMeO-PBDE ratio varied significantly ranging from a mean value of 7.12 to 0.08 and 0.01 for estuarine, CS and oceanic species, respectively. A positive correlation was observed between SigmaPBDE and year of stranding of male estuarine dolphins (Sotalia guianensis), which suggests temporal variation in the exposure. Placental transfer of organobrominated compounds was also evidenced in S. guianensis.


Asunto(s)
Delfines/metabolismo , Retardadores de Llama/metabolismo , Éteres Difenilos Halogenados/metabolismo , Contaminantes Químicos del Agua/metabolismo , Animales , Brasil , Monitoreo del Ambiente , Femenino , Agua Dulce/química , Hidrocarburos Bromados/metabolismo , Masculino , Exposición Materna , Agua de Mar/química
3.
Eur J Pharmacol ; 536(1-2): 1-11, 2006 Apr 24.
Artículo en Inglés | MEDLINE | ID: mdl-16563372

RESUMEN

Neuronal nicotinic acetylcholine receptors subserve predominantly modulatory roles in the brain, making them attractive therapeutic targets. Natural products provide key leads in the quest for nicotinic receptor subtype-selective compounds. Cytisine, found in Leguminosae spp., binds with high affinity to alpha4beta2* nicotinic receptors. We have compared the effect of C3 and C5 halogenation of cytisine and methylcytisine (MCy) on their interaction with native rat nicotinic receptors. 3-Bromocytisine (3-BrCy) and 3-iodocytisine (3-ICy) exhibited increased binding affinity (especially at alpha7 nicotinic receptors; Ki approximately 0.1 microM) and functional potency, whereas C5-halogenation was detrimental. 3-BrCy and 3-ICy were more potent than cytisine at evoking [3H]dopamine release from striatal slices (EC50 approximately 11 nM), [3H]noradrenaline release from hippocampal slices (EC50 approximately 250 nM), increases in intracellular Ca2+ in PC12 cells and inward currents in Xenopus oocytes expressing human alpha3beta4 nicotinic receptor (EC50 approximately 2 microM). These compounds were also more efficacious than cytisine. C3-halogenation of cytisine is proposed to stabilize the open conformation of the nicotinic receptor but does not enhance subtype selectivity.


Asunto(s)
Alcaloides/farmacología , Hidrocarburos Bromados/farmacología , Agonistas Nicotínicos/farmacología , Receptores Nicotínicos/metabolismo , Alcaloides/química , Alcaloides/metabolismo , Animales , Azocinas/química , Azocinas/metabolismo , Azocinas/farmacología , Unión Competitiva/efectos de los fármacos , Encéfalo/efectos de los fármacos , Encéfalo/metabolismo , Calcio/metabolismo , Dopamina/metabolismo , Relación Dosis-Respuesta a Droga , Femenino , Humanos , Hidrocarburos Bromados/química , Hidrocarburos Bromados/metabolismo , Masculino , Potenciales de la Membrana/efectos de los fármacos , Nicotina/antagonistas & inhibidores , Nicotina/farmacología , Agonistas Nicotínicos/química , Agonistas Nicotínicos/metabolismo , Norepinefrina/metabolismo , Oocitos/efectos de los fármacos , Oocitos/fisiología , Células PC12 , Quinolizinas/química , Quinolizinas/metabolismo , Quinolizinas/farmacología , Ensayo de Unión Radioligante , Ratas , Ratas Sprague-Dawley , Receptores Nicotínicos/genética , Receptores Nicotínicos/fisiología , Xenopus
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