Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Christina Birka"'
Autor:
Valerie Tanneur, Thomas Wieder, Florian Lang, Stephan M. Huber, Stefan Laufer, Daniela S. Kempe, Philipp A. Lang, Christina Birka, Svetlana Myssina
Publikováno v:
Cell Death & Differentiation. 12:415-428
Hyperosmotic shock, energy depletion, or removal of extracellular Cl(-) activates Ca(2+)-permeable cation channels in erythrocyte membranes. Subsequent Ca(2+) entry induces erythrocyte shrinkage and exposure of phosphatidylserine (PS) at the erythroc
Autor:
Swetlana Myssina, Florian Lang, Christina Birka, Philipp A. Lang, Stephanie Kaiser, Christof Weinstock, Stephan M. Huber, Hinnak Northoff, Thomas Wieder
Publikováno v:
Cellular Microbiology. 6:391-400
Haemolysin Kanagawa, a toxin from Vibrio parahaemolyticus, is known to trigger haemolysis. Flux studies indicated that haemolysin forms a cation channel. In the present study, channel properties were elucidated by patch clamp and functional significa
Autor:
Karl S. Lang, Stephanie Kaiser, Philipp A. Lang, Christina Birka, Florian Lang, Daniela S. Kempe, Svetlana Myssina, Christophe Duranton, Thomas Wieder, Stephan M. Huber
Publikováno v:
Pfl�gers Archiv European Journal of Physiology. 447:121-125
Similar to a variety of nucleated cells, human erythrocytes activate a non-selective cation channel upon osmotic cell shrinkage. Further stimuli of channel activation include oxidative stress, energy depletion and extracellular removal of Cl-. The ch
Autor:
Florian, Lang, Christina, Birka, Svetlana, Myssina, Karl S, Lang, Philipp A, Lang, Valerie, Tanneur, Christophe, Duranton, Thomas, Wieder, Stephan M, Huber
Publikováno v:
Advances in experimental medicine and biology. 559
Erythrocytes lack mitochondria and nuclei, key organelles in the regulation of apoptosis. Until recently, erythrocytes were thus not considered subject to this type of cell death. However, exposure of erythrocytes to the Ca2+ ionophore ionomycin was
Autor:
Svetlana Myssina, Florian Lang, Philipp A. Lang, Karl S. Lang, Christina Birka, Stephan M. Huber, Christophe Duranton, Valerie Tanneur, Thomas Wieder
Publikováno v:
Cell Volume and Signaling ISBN: 9780387232997
Erythrocytes lack mitochondria and nuclei, key organelles in the regulation of apoptosis. Until recently, erythrocytes were thus not considered subject to this type of cell death. However, exposure of erythrocytes to the Ca2+ ionophore ionomycin was
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::cf06e232d849a35428852526d1b3db02
https://doi.org/10.1007/0-387-23752-6_20
https://doi.org/10.1007/0-387-23752-6_20
Autor:
Christina Birka, Philipp A. Lang, Daniela S. Kempe, Valerie Tanneur, Guido Henke, Maxim Krikov, Thomas Wieder, Svetlana Myssina, Florian Lang, Lena Hoefling, Stephan M. Huber, Srinivas Nammi, Christophe Duranton
Publikováno v:
Pfl�gers Archiv - European Journal of Physiology. 448
Among the sequelae of phosphate depletion is anaemia, due in part to a decreased life span of mature erythrocytes. Recent studies have disclosed that cellular stress leads to an increase of cytosolic Ca(2+) activity in erythrocytes thereby triggering
Autor:
Philipp A, Lang, Stephanie, Kaiser, Swetlana, Myssina, Christina, Birka, Christof, Weinstock, Hinnak, Northoff, Thomas, Wieder, Florian, Lang, Stephan M, Huber
Publikováno v:
Cellular microbiology. 6(4)
Haemolysin Kanagawa, a toxin from Vibrio parahaemolyticus, is known to trigger haemolysis. Flux studies indicated that haemolysin forms a cation channel. In the present study, channel properties were elucidated by patch clamp and functional significa
Autor:
Christina Birka, Björn Friedrich, Florian Lang, Teut Risler, Stephan M. Huber, Thomas Wieder, Svetlana Myssina, Karl S. Lang, Philipp A. Lang
Publikováno v:
Journal of the American Society of Nephrology : JASN. 14(11)
Recombinant human erythropoietin therapy is used to counteract anemia that is the result of renal insufficiency. It stimulates the formation of peripheral blood erythrocytes by inhibiting apoptosis of erythrocyte precursor cells. Mature erythrocytes