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The protective role of transferrin in Müller glial cells after iron-induced toxicity

PURPOSE: Transferrin (Tf) expression is enhanced by aging and inflammation in humans. We investigated the role of transferrin in glial protection. METHODS: We generated transgenic mice (Tg) carrying the complete human transferrin gene on a C57Bl/6J genetic background. We studied human (hTf) and mous...

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Autores principales: Picard, Emilie, Fontaine, Isabelle, Jonet, Laurent, Guillou, Florian, Behar-Cohen, Francine, Courtois, Yves, Jeanny, Jean-Claude
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2391081/
https://www.ncbi.nlm.nih.gov/pubmed/18509548
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author Picard, Emilie
Fontaine, Isabelle
Jonet, Laurent
Guillou, Florian
Behar-Cohen, Francine
Courtois, Yves
Jeanny, Jean-Claude
author_facet Picard, Emilie
Fontaine, Isabelle
Jonet, Laurent
Guillou, Florian
Behar-Cohen, Francine
Courtois, Yves
Jeanny, Jean-Claude
author_sort Picard, Emilie
collection PubMed
description PURPOSE: Transferrin (Tf) expression is enhanced by aging and inflammation in humans. We investigated the role of transferrin in glial protection. METHODS: We generated transgenic mice (Tg) carrying the complete human transferrin gene on a C57Bl/6J genetic background. We studied human (hTf) and mouse (mTf) transferrin localization in Tg and wild-type (WT) C57Bl/6J mice using immunochemistry with specific antibodies. Müller glial (MG) cells were cultured from explants and characterized using cellular retinaldehyde binding protein (CRALBP) and vimentin antibodies. They were further subcultured for study. We incubated cells with FeCl(3)-nitrilotriacetate to test for the iron-induced stress response; viability was determined by direct counting and measurement of lactate dehydrogenase (LDH) activity. Tf expression was determined by reverse transcriptase-quantitative PCR with human- or mouse-specific probes. hTf and mTf in the medium were assayed by ELISA or radioimmunoassay (RIA), respectively. RESULTS: mTf was mainly localized in retinal pigment epithelium and ganglion cell layers in retina sections of both mouse lines. hTf was abundant in MG cells. The distribution of mTf and hTf mRNA was consistent with these findings. mTf and hTf were secreted into the medium of MG cell primary cultures. Cells from Tg mice secreted hTf at a particularly high level. However, both WT and Tg cell cultures lose their ability to secrete Tf after a few passages. Tg MG cells secreting hTf were more resistant to iron-induced stress toxicity than those no longer secreted hTf. Similarly, exogenous human apo-Tf, but not human holo-Tf, conferred resistance to iron-induced stress on MG cells from WT mice. CONCLUSIONS: hTf localization in MG cells from Tg mice was reminiscent of that reported for aged human retina and age-related macular degeneration, both conditions associated with iron deposition. The role of hTf in protection against toxicity in Tg MG cells probably involves an adaptive mechanism developed in neural retina to control iron-induced stress.
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spelling pubmed-23910812008-05-27 The protective role of transferrin in Müller glial cells after iron-induced toxicity Picard, Emilie Fontaine, Isabelle Jonet, Laurent Guillou, Florian Behar-Cohen, Francine Courtois, Yves Jeanny, Jean-Claude Mol Vis Research Article PURPOSE: Transferrin (Tf) expression is enhanced by aging and inflammation in humans. We investigated the role of transferrin in glial protection. METHODS: We generated transgenic mice (Tg) carrying the complete human transferrin gene on a C57Bl/6J genetic background. We studied human (hTf) and mouse (mTf) transferrin localization in Tg and wild-type (WT) C57Bl/6J mice using immunochemistry with specific antibodies. Müller glial (MG) cells were cultured from explants and characterized using cellular retinaldehyde binding protein (CRALBP) and vimentin antibodies. They were further subcultured for study. We incubated cells with FeCl(3)-nitrilotriacetate to test for the iron-induced stress response; viability was determined by direct counting and measurement of lactate dehydrogenase (LDH) activity. Tf expression was determined by reverse transcriptase-quantitative PCR with human- or mouse-specific probes. hTf and mTf in the medium were assayed by ELISA or radioimmunoassay (RIA), respectively. RESULTS: mTf was mainly localized in retinal pigment epithelium and ganglion cell layers in retina sections of both mouse lines. hTf was abundant in MG cells. The distribution of mTf and hTf mRNA was consistent with these findings. mTf and hTf were secreted into the medium of MG cell primary cultures. Cells from Tg mice secreted hTf at a particularly high level. However, both WT and Tg cell cultures lose their ability to secrete Tf after a few passages. Tg MG cells secreting hTf were more resistant to iron-induced stress toxicity than those no longer secreted hTf. Similarly, exogenous human apo-Tf, but not human holo-Tf, conferred resistance to iron-induced stress on MG cells from WT mice. CONCLUSIONS: hTf localization in MG cells from Tg mice was reminiscent of that reported for aged human retina and age-related macular degeneration, both conditions associated with iron deposition. The role of hTf in protection against toxicity in Tg MG cells probably involves an adaptive mechanism developed in neural retina to control iron-induced stress. Molecular Vision 2008-05-20 /pmc/articles/PMC2391081/ /pubmed/18509548 Text en http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Picard, Emilie
Fontaine, Isabelle
Jonet, Laurent
Guillou, Florian
Behar-Cohen, Francine
Courtois, Yves
Jeanny, Jean-Claude
The protective role of transferrin in Müller glial cells after iron-induced toxicity
title The protective role of transferrin in Müller glial cells after iron-induced toxicity
title_full The protective role of transferrin in Müller glial cells after iron-induced toxicity
title_fullStr The protective role of transferrin in Müller glial cells after iron-induced toxicity
title_full_unstemmed The protective role of transferrin in Müller glial cells after iron-induced toxicity
title_short The protective role of transferrin in Müller glial cells after iron-induced toxicity
title_sort protective role of transferrin in müller glial cells after iron-induced toxicity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2391081/
https://www.ncbi.nlm.nih.gov/pubmed/18509548
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