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Alexander Weidemann, Yann M. Kerdiles, Karl X. Knaup, Christopher A. Rafie, Adam T. Boutin, Christian Stockmann, Norihiko Takeda, Miriam Scadeng, Andy Y. Shih, Volker H. Haase, M. Celeste Simon, David Kleinfeld, Randall S. Johnson
Published in Volume 119, Issue 11
J Clin Invest. 2009; 119(11):3373–3383 doi:10.1172/JCI39378
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Figure 6
Targeted deletion of HIF-2α in astrocytes reduces systemic erythropoietic response after bleeding in mice.

(A) Plasma EPO concentrations of GFAPCre+/HIF-2α+f/+f mice (n = 6) are significantly lower than in WT animals 24 hours after bleeding (GFAPCre–; n = 6). 72 hours after bleeding, plasma EPO levels are no longer significantly different. Data represent mean + SEM. (B) Representative flow cytometric experiment of total bone marrow cells (upper) and total splenic cells (lower) of control mice and mice lacking HIF-2α in astrocytes 48 hours after bleeding. Frequencies (%) of CD71hi/Ter119pos cells in gated fractions are shown. (C) Statistical analysis of the flow cytometry experiment: the frequencies of CD71hi/Ter119pos erythroid progenitor cells induced by bleeding are significantly less in GFAPCre+/HIF-2α+f/+f (n = 9) compared with GFAPCre-negative mice (n = 5) Data represent mean of fold change over unbled GFAPCre-negative. (D) The reticulocyte counts in peripheral blood 72 hours after bleeding are significantly lower in GFAPCre+/HIF-2α+f/+f mice (n = 8) compared with GFAPCre-negative animals (n = 7). Data represent mean + SEM; Mann-Whitney test.