Literature DB >> 11317516

Effects of human recombinant erythropoietin on differentiation and distribution of erythroid progenitor cells on murine medullary and splenic erythropoiesis during hypoxia and post-hypoxia.

S M Mide1, P Huygens, C E Bozzini, J A Fernandez Pol.   

Abstract

Hemopoietic cells, the extracellular matrix, growth factors and the microenvironment are involved in the regulation of hemopoiesis. Although the regulation of erythropoiesis is well understood at the cellular level in vivo and in vitro, the role of hemopoietic sites of erythroid progenitors production has not been well defined in both steady state conditions and in stress erythropoiesis. In this study we examined the qualitative erythroid differentiation and quantitative changes of the erythroid progenitors in different erythropoietic organs during erythropoiesis of stress in a hypoxia-induced polycythemia and post-hypoxic changes in a mice model. Chronic intermittent exposure to hypobaric hypoxia induced polycythemia in mice and the post-hypoxic period was characterized by total suppression of erythropoiesis. The number and distribution in hemopoietic sites of Immature Erythroid Burst (BFU-EI), Mature Erythroid Burst (BFU-EM) and Erythroid Colony Forming Units (CFU-E) was evaluated in bone marrow and spleen of hypoxic and post-hypoxic mice after removal from the chamber. The number of BFU-EI and CFU-E, was evaluated in both femoral bone marrow and spleen of ex-hypoxic polycythemic mice, at two times intervals after the end of hypoxia. We found that in both bone marrow and spleen, the kinetics of the CFU-E pool was characterized by a sharp fall from above normal to lower than normal levels. BFU-EM increased from normal to higher than normal levels. These results have been correlated with both erythropoietin (EPO) and the erythropoietic activity. The results show that EPO levels largely control both the differentiation and the amplification of the CFU-E pool and they suggest that EPO may acts as a "survival factor" at the CFU-E level and/or increase the flow of cells from BFU-E to CFU-E. After the termination of the period of hypoxia and during post-hypoxia there was a reduction in EPO production which subsequently caused a depletion of the CFU-E population, indicating that the size of the CFU-E pool is EPO-dependent. After the injection of 1U of recombinant human erythropoietin (rHuEPO) the size of that pool was increased and the pool of BFU-EI was decreased. It is noteworthy that our studies show that the spleen functions as a large reservoir of erythroid precursors for hypoxia-induced stress erythropoiesis.

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Year:  2001        PMID: 11317516

Source DB:  PubMed          Journal:  In Vivo        ISSN: 0258-851X            Impact factor:   2.155


  8 in total

1.  Simultaneous pharmacokinetics/pharmacodynamics modeling of recombinant human erythropoietin upon multiple intravenous dosing in rats.

Authors:  Sihem Ait-Oudhia; Jean-Michel Scherrmann; Wojciech Krzyzanski
Journal:  J Pharmacol Exp Ther       Date:  2010-05-25       Impact factor: 4.030

2.  Functional but abnormal adult erythropoiesis in the absence of the stem cell leukemia gene.

Authors:  Mark A Hall; Nicholas J Slater; C Glenn Begley; Jessica M Salmon; Leonie J Van Stekelenburg; Matthew P McCormack; Stephen M Jane; David J Curtis
Journal:  Mol Cell Biol       Date:  2005-08       Impact factor: 4.272

3.  Decreased "ineffective erythropoiesis" preserves polycythemia in mice under long-term hypoxia.

Authors:  Tomonori Harada; Isao Tsuboi; Yukio Hirabayashi; Kazuhiro Kosaku; Michiko Naito; Hiroyuki Hara; Tohru Inoue; Shin Aizawa
Journal:  Clin Exp Med       Date:  2014-06-13       Impact factor: 3.984

Review 4.  Effects of acute and chronic inflammation on B-cell development and differentiation.

Authors:  Derek Cain; Motonari Kondo; Huaiyong Chen; Garnett Kelsoe
Journal:  J Invest Dermatol       Date:  2009-02       Impact factor: 8.551

5.  Control of erythropoiesis after high altitude acclimatization.

Authors:  Gustave Savourey; Jean-Claude Launay; Yves Besnard; Angélique Guinet; Cyprien Bourrilhon; Damien Cabane; Serge Martin; Jean-Pierre Caravel; Jean-Marc Péquignot; Jean-Marie Cottet-Emard
Journal:  Eur J Appl Physiol       Date:  2004-07-10       Impact factor: 3.078

6.  Stress hematopoiesis is regulated by the Krüppel-like transcription factor ZBP-89.

Authors:  Xiangen Li; Rachael D Romain; Dongsu Park; David T Scadden; Juanita L Merchant; M Amin Arnaout
Journal:  Stem Cells       Date:  2014-03       Impact factor: 6.277

7.  PI3K-Akt Signal Transduction Molecules Maybe Involved in Downregulation of Erythroblasts Apoptosis and Perifosine Increased Its Apoptosis in Chronic Mountain Sickness.

Authors:  Chengyu Zhao; Zhanquan Li; Linhua Ji; Jie Ma; Ri-Li Ge; Sen Cui
Journal:  Med Sci Monit       Date:  2017-11-26

8.  Erythropoiesis suppression is associated with anthrax lethal toxin-mediated pathogenic progression.

Authors:  Hsin-Hou Chang; Tsung-Pao Wang; Po-Kong Chen; Yo-Yin Lin; Chih-Hsien Liao; Ting-Kai Lin; Ya-Wen Chiang; Wen-Bin Lin; Chih-Yu Chiang; Jyh-Hwa Kau; Hsin-Hsien Huang; Hui-Ling Hsu; Chi-Yuan Liao; Der-Shan Sun
Journal:  PLoS One       Date:  2013-08-19       Impact factor: 3.240

  8 in total

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