Mariana B. Alonso
Rio de Janeiro State University
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Featured researches published by Mariana B. Alonso.
Environmental Science & Technology | 2013
Pablo Gago-Ferrero; Mariana B. Alonso; Carolina P. Bertozzi; Juliana Marigo; Lupércio de Araújo Barbosa; Marta Cremer; Eduardo R. Secchi; Alexandre F. Azevedo; José Lailson-Brito; João Paulo Machado Torres; Olaf Malm; Ethel Eljarrat; M. Silvia Díaz-Cruz; Damià Barceló
Most current bioexposure assessments for UV filters focus on contaminants concentrations in fish from river and lake. To date there is not information available on the occurrence of UV filters in marine mammals. This is the first study to investigate the presence of sunscreen agents in tissue liver of Franciscana dolphin (Pontoporia blainvillei), a species under special measures for conservation. Fifty six liver tissue samples were taken from dead individuals accidentally caught or found stranded along the Brazilian coastal area (six states). The extensively used octocrylene (2-ethylhexyl-2-cyano-3,3-diphenyl-2-propenoate, OCT) was frequently found in the samples investigated (21 out of 56) at concentrations in the range 89-782 ng·g(-1) lipid weight. São Paulo was found to be the most polluted area (70% frequency of detection). Nevertheless, the highest concentration was observed in the dolphins from Rio Grande do Sul (42% frequency of detection within that area). These findings constitute the first data reported on the occurrence of UV filters in marine mammals worldwide.
Environment International | 2012
Mariana B. Alonso; Maria Luisa Feo; Cayo Corcellas; Lara G. Vidal; Carolina P. Bertozzi; Juliana Marigo; Eduardo R. Secchi; Manuela Bassoi; Alexandre F. Azevedo; Paulo Renato Dorneles; João Paulo Machado Torres; José Lailson-Brito; Olaf Malm; Ethel Eljarrat; Damià Barceló
The present study constitutes the first investigation to demonstrate pyrethroid bioaccumulation in marine mammals, despite the assumption that these insecticides are converted to non-toxic metabolites by hydrolysis in mammals. Twelve pyrethroids were determined in liver samples from 23 male franciscana dolphins from Brazil. The median concentration values for total pyrethroids were 7.04 and 68.4 ng/g lw in adults and calves, respectively. Permethrin was the predominant compound, contributing for 55% of the total pyrethroids. Results showed a distinct metabolic balance of pyrethroids through dolphin life. High loads are received at the beginning of their lives and, when they reach sexual maturity, these mammals seem to degrade/metabolize pyrethroids. Maternal transfer of these compounds was also evaluated through the analysis of breast milk and placenta samples. Pyrethroids were detected in both matrices, with values between 2.53-4.77 ng/g lw and 331-1812 ng/g lw, respectively. Therefore, for the first time, a study shows mother-to-calf transfer of pyrethroids by both gestational and lactation pathways in dolphins.
Environmental Pollution | 2012
Mariana B. Alonso; Ethel Eljarrat; Marina Gorga; Eduardo R. Secchi; Manuela Bassoi; Lupércio de Araújo Barbosa; Carolina P. Bertozzi; Juliana Marigo; Marta Cremer; Camila Domit; Alexandre F. Azevedo; Paulo Renato Dorneles; João Paulo Machado Torres; José Lailson-Brito; Olaf Malm; Damià Barceló
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 (<LOQ to 57 ng/g lw). DBDPE was detected in 42% of the dolphins from the most industrialized Brazilian state and the concentrations ranging from <LOQ to 352 ng/g lw. Franciscana dolphins from the tropical Brazilian shore presented the highest MeO-PBDE concentrations ever reported for coastal cetaceans (up to 14 μg/g lw). Eight MeO-PBDE congeners were detected and the present investigation constituted the first record of occurrence of six of them in marine mammal livers.
Science of The Total Environment | 2014
Mariana B. Alonso; Alexandre F. Azevedo; João Paulo Machado Torres; Paulo Renato Dorneles; Ethel Eljarrat; Damià Barceló; José Lailson-Brito; Olaf Malm
This paper reviews the available data on brominated flame retardants, the polybrominated diphenyl ethers (PBDEs), as well as on the naturally-produced methoxylated polybrominated diphenyl ethers (MeO-PBDEs) in cetacean tissues around the world. Levels and possible sources of both compound classes are discussed. Odontocete cetaceans accumulate higher PBDE concentrations than mysticete species. PBDE contamination was higher in cetaceans from the Northern hemisphere, whereas MeO-PBDE levels were higher in animals from the Southern hemisphere. Southern resident killer whales from NE Pacific presented the highest levels reported in biota, followed by bottlenose dolphins from North Atlantic (U.K. and U.S. coast). Many species presented PBDE concentrations above threshold levels for health effects in odontocetes. Time trend studies indicate that PBDE concentrations in odontocetes from Japan, China, U.S. and Canada coastal zones have increased significantly over the past 30 years. Studies from U.K. waters and NE Atlantic showed a decrease and/or stability of PBDE levels in cetacean tissues in recent decades. The highest MeO-PBDE concentrations were found in dolphins from Tanzania (Indian Ocean), bottlenose dolphins from Queensland, Australia (SW Pacific), and odontocetes from coastal and continental shelf waters off southeastern Brazil (SW Atlantic). The upwelling phenomenon and the presence of coral reef complexes in these tropical oceans may explain the large amounts of the naturally-produced organobromines. Considering that these bioaccumulative chemicals have properties that could cause many deleterious effects in those animals, future studies are required to evaluate the potential ecotoxicological risks.
Science of The Total Environment | 2013
Paulo Renato Dorneles; Paloma Sanz; Gauthier Eppe; Alexandre F. Azevedo; Carolina P. Bertozzi; María Ángeles Martínez; Eduardo R. Secchi; Lupércio de Araújo Barbosa; Marta Cremer; Mariana B. Alonso; João Paulo Machado Torres; José Lailson-Brito; Olaf Malm; Ethel Eljarrat; Damià Barceló; Krishna Das
Blubber samples from three delphinid species (false killer whale, Guiana and rough-toothed dolphin), as well as liver samples from franciscana dolphins were analyzed for dioxins and related compounds (DRCs). Samples were collected from 35 cetaceans stranded or incidentally captured in a highly industrialized and urbanized area (Southeast and Southern Brazilian regions). Dioxin-like PCBs accounted for over 83% of the total TEQ for all cetaceans. Non-ortho coplanar PCBs, for franciscanas (82%), and mono-ortho PCBs (up to 80%), for delphinids, constituted the groups of highest contribution to total TEQ. Regarding franciscana dolphins, significant negative correlations were found between total length (TL) and three variables, ΣTEQ-DRCs, ΣTEQ-PCDF and ΣTEQ non-ortho PCB. An increasing efficiency of the detoxifying activity with the growth of the animal may be a plausible explanation for these findings. This hypothesis is reinforced by the significant negative correlation found between TL and PCB126/PCB169 concentration ratio. DRC concentrations (ng/g lipids) varied from 36 to 3006, for franciscana dolphins, as well as from 356 to 30,776, for delphinids. The sum of dioxin-like and indicator PCBs varied from 34,662 to 279,407 ng/g lipids, for Guiana dolphins from Rio de Janeiro state, which are among the highest PCB concentrations ever reported for cetaceans. The high concentrations found in our study raise concern not only on the conservation of Brazilian coastal cetaceans, but also on the possibility of human health problem due to consumption of fish from Brazilian estuaries.
Environmental Science & Technology | 2017
Mariana B. Alonso; Keith A. Maruya; Nathan G. Dodder; José Lailson-Brito; Alexandre F. Azevedo; Elitieri B. Santos-Neto; João Paulo Machado Torres; Olaf Malm; Eunha Hoh
To catalog the diversity and abundance of halogenated organic compounds (HOCs) accumulating in high trophic marine species from the southwestern Atlantic Ocean, tissue from bottlenose dolphins (Tursiops truncatus) stranded or incidentally captured along the coast of Rio de Janeiro, Brazil, were analyzed by a nontargeted approach based on GC×GC/TOF-MS. A total of 158 individual HOCs from 32 different structural classes were detected in the blubber of 4 adult male T. truncatus. Nearly 90% of the detected compounds are not routinely monitored in the environment. DDT-related and mirex/dechlorane-related compounds were the most abundant classes of anthropogenic origin. Methoxy-brominated diphenyl ethers (MeO-BDEs) and chlorinated methyl- and dimethyl bipyrroles (MBPs and DMBPs) were the most abundant natural products. Reported for the first time in southwestern Atlantic cetaceans and in contrast to North American marine mammals, chlorinated MBPs and DMBPs were more abundant than their brominated and/or mixed halogenated counterparts. HOC profiles in coastal T. truncatus from Brazil and California revealed a distinct difference, with a higher abundance of MeO-BDEs, mirex/dechloranes and chlorinated bipyrroles in the Brazilian dolphins. Thirty-six percent of the detected HOCs had an unknown structure. These results suggest broad geographical differences in the patterns of bioaccumulative chemicals found in the marine environment and indicate the need to develop more complete catalogs of HOCs from various marine environments.
Science of The Total Environment | 2019
Òscar Aznar-Alemany; Xuefei Yang; Mariana B. Alonso; Erli Schneider Costa; João Paulo Machado Torres; Olaf Malm; Damià Barceló; Ethel Eljarrat
Eight PBDE congeners, three emerging brominated flame retardants, five dechloranes and eight MeO-PBDEs were monitored in tissues (muscular, adipose, brain) and fur of southern elephant seal and Antarctic fur seal of the South Shetland Islands, Antarctic Peninsula. Total PBDEs and total dechloranes concentrations ranged between n.d.-6 ng/g lw. While PBDEs were not detected in brain tissue, Dec 602 was found in brain tissue of both seal species indicating that dechloranes -with potential neurological toxicity- could cross the blood-brain barrier. Emerging brominated flame retardants were not detected in any sample and only two MeO-PBDEs, which are of natural origin, were found. The presence of the detected compounds in biota from the Antarctic evidences their long-range transportation, being of special interest the detection of emerging compounds such as dechloranes. This is the first time that these contaminants have been detected in marine mammals from the Antarctic. BDE-47 concentrations were lower than previously reported for the same species, suggesting a successful effect of the existing regulation and bans on PBDEs. CAPSULE ABSTRACT: Halogenated flame retardants were in tissues of Antarctic seals proving long-range transport. Dechloranes showed similar behaviour to PBDEs, additionally they crossed the BBB.
Environmental Pollution | 2015
Mariana B. Alonso; Maria Luisa Feo; Cayo Corcellas; Pablo Gago-Ferrero; Carolina P. Bertozzi; Juliana Marigo; Leonardo Flach; Ana Carolina Oliveira de Meirelles; Vitor Luz Carvalho; Alexandre F. Azevedo; João Paulo Machado Torres; José Lailson-Brito; Olaf Malm; M. Silvia Díaz-Cruz; Ethel Eljarrat; Damià Barceló
Latin American Journal of Aquatic Mammals | 2010
Enrique A. Crespo; Daniela Alarcon; Mariana B. Alonso; Mariel Bazzalo; Monica Borobia; Gislaine Filla; Liliane Lodi; Fagner A. Magalhães; Juliana Marigo; Helder Lima De; John E. Reynolds; Yara Schaeffer; Paulo Renato Dorneles; José Lailson-Brito; Dana L. Wetzel
Science of The Total Environment | 2018
Daniel Molins-Delgado; Ramón Muñoz; Sylvia Nogueira; Mariana B. Alonso; João Paulo Machado Torres; Olaf Malm; Roberta Lourenço Ziolli; Rachel Ann Hauser-Davis; Ethel Eljarrat; Damià Barceló; M. Silvia Díaz-Cruz