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Spleens of myelofibrosis patients contain malignant hematopoietic stem cells
Xiaoli Wang, … , Attilio Orazi, Ronald Hoffman
Xiaoli Wang, … , Attilio Orazi, Ronald Hoffman
Published October 1, 2012
Citation Information: J Clin Invest. 2012;122(11):3888-3899. https://doi.org/10.1172/JCI64397.
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Research Article Hematology

Spleens of myelofibrosis patients contain malignant hematopoietic stem cells

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Abstract

Cancer stem cell behavior is thought to be largely determined by intrinsic properties and by regulatory signals provided by the microenvironment. Myelofibrosis (MF) is characterized by hematopoiesis occurring not only in the marrow but also in extramedullary sites such as the spleen. In order to study the effects of these different microenvironments on primitive malignant hematopoietic cells, we phenotypically and functionally characterized splenic and peripheral blood (PB) MF CD34+ cells from patients with MF. MF spleens contained greater numbers of malignant primitive HPCs than PB. Transplantation of PB MF CD34+ cells into immunodeficient (NOD/SCID/IL2Rγnull) mice resulted in a limited degree of donor cell chimerism and a differentiation program skewed toward myeloid lineages. By contrast, transplanted splenic MF CD34+ cells achieved a higher level of chimerism and generated both myeloid and lymphoid cells that contained molecular or cytogenetic abnormalities indicating their malignant nature. Only splenic MF CD34+ cells were able to sustain hematopoiesis for prolonged periods (9 months) and were able to engraft secondary recipients. These data document the existence of MF stem cells (MF-SCs) that reside in the spleens of MF patients and demonstrate that these MF-SCs retain a differentiation program identical to that of normal hematopoietic stem cells.

Authors

Xiaoli Wang, Sonam Prakash, Min Lu, Joseph Tripodi, Fei Ye, Vesna Najfeld, Yan Li, Myron Schwartz, Rona Weinberg, Paul Roda, Attilio Orazi, Ronald Hoffman

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The JAK2V617F allele burden of various human lineage cells within the BM...

The JAK2V617F allele burden of various human lineage cells within the BM and spleens of NSG mice receiving transplants of JAK2V617F+ splenic MF CD34+ cells


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