Literature DB >> 11146156

Ineffective erythropoiesis in beta-thalassemia major is due to apoptosis at the polychromatophilic normoblast stage.

L A Mathias1, T C Fisher, L Zeng, H J Meiselman, K I Weinberg, A L Hiti, P Malik.   

Abstract

Beta-thalassemia major is characterized by ineffective erythropoiesis, although it is difficult to define the dynamics of this process from the static information revealed by analysis of bone marrow (BM) aspirates. We aimed to study the kinetics of sequential erythroid differentiation in beta-thalassemia major. We isolated the progenitor cells (CD34(+) and CD34(+)CD38(-) cells) from BM of thalassemia major patients and studied in vitro erythropoiesis. This is the first report of an in vitro study in human beta-thalassemia major from purified BM CD34(+) progenitor cells, using erythroid culture conditions, which allow unilineage differentiation to mature enucleated red blood cells. In contrast to normal donors, a high proportion of BM CD34(+) and CD34(+)CD38(-) progenitors from beta-thalassemia major coexpressed the late erythroid lineage-specific protein glycophorin A and generated a higher proportion of erythroid colonies. However, despite the marked increase in erythroid clonogenicity of the progenitor population, erythroid cultures initiated from beta-thalassemia major BM CD34(+) cells expanded 10- to 20-fold less than from normal BM. There were less viable cells during differentiation, specifically after the polychromatophilic normoblast stage. There was a progressive increase in the apoptotic erythroid progeny with differentiation, and apoptosis occurred predominantly at the polychromatophilic normoblast stage. In thalassemia major, BM progenitor cells show increased erythroid clonogenicity, increased expression of late erythroid lineage-specific proteins, and accelerated erythroid differentiation. However, despite the apparent increased erythroid commitment, ineffective erythropoiesis occurs due to apoptosis at the polychromatophil stage. Identification of the differentiation stage at which apoptosis occurs will permit further studies of the underlying mechanisms and target therapeutic strategies to improve red cell production.

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Year:  2000        PMID: 11146156     DOI: 10.1016/s0301-472x(00)00555-5

Source DB:  PubMed          Journal:  Exp Hematol        ISSN: 0301-472X            Impact factor:   3.084


  56 in total

Review 1.  Anemia, ineffective erythropoiesis, and hepcidin: interacting factors in abnormal iron metabolism leading to iron overload in β-thalassemia.

Authors:  Sara Gardenghi; Robert W Grady; Stefano Rivella
Journal:  Hematol Oncol Clin North Am       Date:  2010-10-15       Impact factor: 3.722

2.  HSP70 sequestration by free α-globin promotes ineffective erythropoiesis in β-thalassaemia.

Authors:  Jean-Benoît Arlet; Jean-Antoine Ribeil; Flavia Guillem; Olivier Negre; Adonis Hazoume; Guillaume Marcion; Yves Beuzard; Michaël Dussiot; Ivan Cruz Moura; Samuel Demarest; Isaure Chauvot de Beauchêne; Zakia Belaid-Choucair; Margaux Sevin; Thiago Trovati Maciel; Christian Auclair; Philippe Leboulch; Stany Chretien; Luba Tchertanov; Véronique Baudin-Creuza; Renaud Seigneuric; Michaela Fontenay; Carmen Garrido; Olivier Hermine; Geneviève Courtois
Journal:  Nature       Date:  2014-08-24       Impact factor: 49.962

3.  BMP4, SCF, and hypoxia cooperatively regulate the expansion of murine stress erythroid progenitors.

Authors:  John M Perry; Omid F Harandi; Robert F Paulson
Journal:  Blood       Date:  2007-02-06       Impact factor: 22.113

4.  An activin receptor IIA ligand trap corrects ineffective erythropoiesis in β-thalassemia.

Authors:  Michael Dussiot; Thiago T Maciel; Aurélie Fricot; Céline Chartier; Olivier Negre; Joel Veiga; Damien Grapton; Etienne Paubelle; Emmanuel Payen; Yves Beuzard; Philippe Leboulch; Jean-Antoine Ribeil; Jean-Benoit Arlet; Francine Coté; Geneviève Courtois; Yelena Z Ginzburg; Thomas O Daniel; Rajesh Chopra; Victoria Sung; Olivier Hermine; Ivan C Moura
Journal:  Nat Med       Date:  2014-03-23       Impact factor: 53.440

Review 5.  New strategies to target iron metabolism for the treatment of beta thalassemia.

Authors:  Paraskevi Rea Oikonomidou; Carla Casu; Stefano Rivella
Journal:  Ann N Y Acad Sci       Date:  2016-02-25       Impact factor: 5.691

Review 6.  Iron metabolism under conditions of ineffective erythropoiesis in β-thalassemia.

Authors:  Stefano Rivella
Journal:  Blood       Date:  2018-11-06       Impact factor: 22.113

7.  A mechanism of ineffective erythropoiesis in β-thalassemia/Hb E disease.

Authors:  Pathrapol Lithanatudom; Amporn Leecharoenkiat; Tirawat Wannatung; Saovaros Svasti; Suthat Fucharoen; Duncan R Smith
Journal:  Haematologica       Date:  2009-12-16       Impact factor: 9.941

8.  Decreased differentiation of erythroid cells exacerbates ineffective erythropoiesis in beta-thalassemia.

Authors:  Ilaria V Libani; Ella C Guy; Luca Melchiori; Raffaella Schiro; Pedro Ramos; Laura Breda; Thomas Scholzen; Amy Chadburn; YiFang Liu; Margrit Kernbach; Bettina Baron-Lühr; Matteo Porotto; Maria de Sousa; Eliezer A Rachmilewitz; John D Hood; M Domenica Cappellini; Patricia J Giardina; Robert W Grady; Johannes Gerdes; Stefano Rivella
Journal:  Blood       Date:  2008-05-14       Impact factor: 22.113

9.  Isolation and functional characterization of human erythroblasts at distinct stages: implications for understanding of normal and disordered erythropoiesis in vivo.

Authors:  Jingping Hu; Jing Liu; Fumin Xue; Gregory Halverson; Marion Reid; Anqi Guo; Lixiang Chen; Azra Raza; Naomi Galili; Julie Jaffray; Joseph Lane; Joel Anne Chasis; Naomi Taylor; Narla Mohandas; Xiuli An
Journal:  Blood       Date:  2013-02-19       Impact factor: 22.113

10.  Imbalanced globin chain synthesis determines erythroid cell pathology in thalassemic mice.

Authors:  Kanitta Srinoun; Saovaros Svasti; Worrakavee Chumworathayee; Jim Vadolas; Phantip Vattanaviboon; Suthat Fucharoen; Pranee Winichagoon
Journal:  Haematologica       Date:  2009-07-16       Impact factor: 9.941

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