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Blood, 15 September 2000, Vol. 96, No. 6, pp. 2022-2036
REVIEW ARTICLE
Transforming growth factor- : pleiotropic role in the
regulation of hematopoiesis
Nicolas O. Fortunel,
Antoinette Hatzfeld, and
Jacques A. Hatzfeld
From the Laboratoire de Biologie des Cellules Souches
Somatiques Humaines, Centre National de la Recherche Scientifique,
Villejuif, France.
Hematopoiesis is a remarkable cell-renewal process that leads to
the continuous generation of large numbers of multiple mature cell
types, starting from a relatively small stem cell compartment. A highly
complex but efficient regulatory network is necessary to tightly
control this production and to maintain the hematopoietic tissue in
homeostasis. During the last 3 decades, constantly growing numbers of
molecules involved in this regulation have been identified. They
include soluble cytokines and growth factors, cell-cell interaction molecules, and extracellular matrix components, which provide a
multifunctional scaffolding specific for each tissue. The cloning of
numerous growth factors and their mass production have led to their
possible use for both fundamental research and clinical application.

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