Literature DB >> 16100848

Erythrocyte magnesium influx and efflux in solid tumor bearing mice.

C Feillet-Coudray1, A Nasulewicz, L Jaffrelo, S Thien, C Coudray, M Rambeau, E Gueux, Y Rayssiguier, A Opolski, F I Wolf, A Mazur.   

Abstract

Mg metabolism is modified in tumors and tumor-bearing organisms. In particular cancer patients often display elevated erythrocyte Mg levels. For a better understanding of the increased erythrocyte Mg content, we attempted to determine Mg fluxes in erythrocytes from tumor-bearing mice by Mg stable isotopes, using a method developed in our laboratory. To characterize the animal Mg status, blood and tissue Mg levels and hematological parameters were assayed. Results showed that in tumor-bearing mice total erythrocyte Mg was about 46% higher than in controls, whereas plasma and tissues Mg levels were not modified; red blood cells and hemoglobin as well as hematocrits were significantly decreased, while mean corpuscular volume and mean corpuscular hemoglobin were slightly but significantly increased in tumor-bearing mice compared to controls (by 3% and 4%, respectively), a picture corresponding to a normochromic, slightly macrocytic anemia. Erythrocyte Mg efflux was about 20% higher (404 + 59 versus 330 + 45 micromol/L, respectively, p < 0.05) in tumor-bearing mice compared to controls, whereas influx was not significantly modified (130 + 11 versus 122 + 19 micromol/L, respectively). Our data therefore exclude that the increased Mg content observed in erythrocytes of tumor-bearing mice is due to decrease of Mg efflux, or to an increase of Mg influx. On the other hand, the increased Mg content observed in erythrocytes of tumor-bearing mice could simply result from an increase of young Mg-enriched erythrocytes produced by the enhanced erythropoiesis which follows tumor-induced anemia.

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Year:  2005        PMID: 16100848

Source DB:  PubMed          Journal:  Magnes Res        ISSN: 0953-1424            Impact factor:   1.115


  3 in total

1.  Erythrocyte magnesium fluxes in mice with nutritionally and genetically low magnesium status.

Authors:  Christine Feillet-Coudray; A Trzeciakiewicz; C Coudray; M Rambeau; A Chanson; Y Rayssiguier; A Opolski; F I Wolf; A Mazur
Journal:  Eur J Nutr       Date:  2005-09-09       Impact factor: 5.614

2.  A simple spectrofluorometric assay to measure total intracellular magnesium by a hydroxyquinoline derivative.

Authors:  Giovanna Farruggia; Stefano Iotti; Luca Prodi; Nelsi Zaccheroni; Marco Montalti; Paul B Savage; Giulia Andreani; Valentina Trapani; Federica I Wolf
Journal:  J Fluoresc       Date:  2008-06-05       Impact factor: 2.217

3.  TRPM7 is essential for Mg(2+) homeostasis in mammals.

Authors:  Lillia V Ryazanova; Lusliany J Rondon; Susanna Zierler; Zhixian Hu; Joanna Galli; Terry P Yamaguchi; Andrzej Mazur; Andrea Fleig; Alexey G Ryazanov
Journal:  Nat Commun       Date:  2010-11-02       Impact factor: 14.919

  3 in total

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