Catherine LORIN-NEBEL

Informations


: 0467149391

Institut : UM


LIEU GEOGRAPHIQUE : MONTPELLIER



Pôles communs : Technique

Publications

2018

Masroor, W., et al. "Effect of combined stress (salinity and temperature) in European sea bass Dicentrarchus labrax osmoregulatory processes." Comp. Biochem. Physiol. A-Mol. Integr. Physiol.. 215 (2018): 45–54.
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2016

Boudour-Boucheker, N., et al. "Osmoregulation in larvae and juveniles of two recently separated Macrobrachium species: Expression patterns of ion transporter genes." Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology. 195 (2016): 39–45.
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Gerber, L., et al. "The Legs Have It: In Situ Expression of Ion Transporters V-Type H+-ATPase and Na+/K+-ATPase in the Osmoregulatory Leg Organs of the Invading Copepod Eurytemora affinis." Physiol. Biochem. Zool.. 89.3 (2016): 233–250.
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Ituarte, R. B., et al. "Immunolocalization and expression of Na+/K+ -ATPase in embryos, early larval stages and adults of the freshwater shrimp Palaemonetes argentinus (Decapoda, Caridea, Palaemonidae)." Cell Tissue Res.. 364.3 (2016): 527–541.
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2014

Boudour-Boucheker, N., et al. "Differential distribution of V-type H+-ATPase and Na+/K+-ATPase in the branchial chamber of the palaemonid shrimp Macrobrachium amazonicum." Cell and Tissue Research. 357.1 (2014): 195–206.
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Lorin-Nebel, C., et al. "4-Nonylphenol disrupts osmoregulation in the European sea-bass Dicentrarchus labrax." Journal of Xenobiotics. 4 (2014): 4905–4907.
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2013

Bossus, M., et al. "The ClC-3 chloride channel and osmoregulation in the European Sea Bass, Dicentrarchus labrax." J Comp Physiol B. 183.5 (2013): 641–662.
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Boudour-Boucheker, N., et al. "Adaptation to freshwater in the palaemonid shrimp Macrobrachium amazonicum: comparative ontogeny of osmoregulatory organs." Cell Tissue Res. 353.1 (2013): 87–98.
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Lorin-Nebel, C., et al. "Individual and combined effects of copper and parasitism on osmoregulation in the European eel Anguilla anguilla." Aquatic toxicology. 130–131 (2013): 41–50.
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2012

Lorin-Nebel, C., et al. "Osmoregulatory strategies in natural populations of the black-chinned tilapia Sarotherodon melanotheron exposed to extreme salinities in West African estuaries." J. Comp. Physiol. B-Biochem. Syst. Environ. Physiol.. 182.6 (2012): 771–780.
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Riou, V., et al. "Impact of environmental DDT concentrations on gill adaptation to increased salinity in the tilapia Sarotherodon melanotheron." Comp. Biochem. Physiol. C-Toxicol. Pharmacol.. 156.1 (2012): 7–16.
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Sucre, E., et al. "Impact of ultraviolet-B radiation on planktonic fish larvae: Alteration of the osmoregulatory function." Aquatic Toxicology. 109 (2012): 194–201.
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2011

Bossus, M., G. Charmantier, and C. Lorin-Nebel. "Transient receptor potential vanilloid 4 in the European sea bass Dicentrarchus labrax: A candidate protein for osmosensing." Comparative Biochemistry and Physiology A-Molecular & Integrative Physiology. 160.1 (2011): 43–51.
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2009

Bodinier, C., et al. "Influence of salinity on the localization and expression of the CFTR chloride channel in the ionocytes of Dicentrarchus labrax during ontogeny." Journal of Anatomy. 214.3 (2009): 318–329.
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Bodinier, C., et al. "Influence of salinity on the localization and expression of the CFTR chloride channel in the ionocytes of juvenile Dicentrarchus labrax exposed to seawater and freshwater." Comparative Biochemistry and Physiology A-Molecular & Integrative Physiology. 153.3 (2009): 345–351.
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2008

Giffard-Mena, I., et al. "Adaptation of the sea-bass (Dicentrarchus Labrax) to fresh water: Role of aquaporins and Na(+)/K(+)-ATPases." Comparative Biochemistry and Physiology a-Molecular & Integrative Physiology. 150.3 (2008): 332–338.
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Rigal, F., et al. "Osmoregulation as a potential factor for the differential distribution of two cryptic gobiid species, Pomatoschistus microps and P-marmoratus in French Mediterranean lagoons." Scientia Marina. 72.3 (2008): 469–476.
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MARBEC MARine Biodiversity, Exploitation and Conservation, est une unité de recherche qui regroupe des personnels de 4 organismes : l’IRD, l’Ifremer, l’UM et le CNRS. Son objectif est l’étude de la biodiversité marine des écosystèmes lagunaires, côtiers et hauturiers à différents niveaux d’intégration, depuis les aspects moléculaires, individuels, populationnels et communautaires, et des usages de cette biodiversité par l’Homme. Nous rejoindre