Recovery and Biodistribution of Ex Vivo Expanded Human Erythroblasts Injected into NOD/SCID/IL2Rγnull mice

被引:12
作者
Ghinassi, Barbara [1 ,2 ]
Ferro, Leda [3 ]
Masiello, Francesca [4 ]
Tirelli, Valentina [4 ]
Sanchez, Massimo [4 ]
Migliaccio, Giovanni [4 ]
Whitsett, Carolyn [1 ,2 ]
Kachala, Stefan [3 ]
Riviere, Isabelle [3 ]
Sadelain, Michel [3 ]
Migliaccio, Anna Rita [1 ,2 ,4 ]
机构
[1] Mt Sinai Sch Med, Tisch Canc Inst, New York, NY 10029 USA
[2] Mt Sinai Sch Med, Myeloproliferat Dis Res Consortium MPD RC, New York, NY 10029 USA
[3] Mem Sloan Kettering Canc Ctr, Ctr Cell Engn, New York, NY 10065 USA
[4] Ist Super Sanita, I-00161 Rome, Italy
关键词
HUMAN ERYTHROID-CELLS; RED-BLOOD-CELLS; IN-VITRO; MOUSE MODELS; STEM-CELLS; EXPRESSION; PROGENITORS; EXPANSION; RECEPTOR; NICHES;
D O I
10.4061/2011/673752
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Ex vivo expanded erythroblasts (EBs) may serve as advanced transfusion products provided that lodgment occurs in the macrophage-niche of the marrow permitting maturation. EBs expanded from adult and cord blood expressed the receptors (CXCR4, VLA-4, and P-selectin ligand 1) necessary for interaction with macrophages. However, 4-days following transfusion to intact NOD/SCID/IL2R gamma(null) mice, CD235a(pos) EBs were observed inside CD235a(neg) splenic cells suggesting that they underwent phagocytosis. When splenectomized and intact NOD/SCID/IL2R gamma(null) mice were transfused using retrovirally labeled human EBs, human cells were visualized by bioluminescence imaging only in splenectomized animals. Four days after injection, human CD235a(pos) cells were detected in marrow and liver of splenectomized mice but only in spleen of controls. Human CD235a(pos) erythrocytes in blood remained low in all cases. These studies establish splenectomized NOD/SCID/IL2R gamma(null) mice as a suitable model for tracking and quantification of human EBs in vivo.
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页数:13
相关论文
共 37 条
[1]  
Brodsky RA, 2009, HEMATOLOGY BASIC PRI, P385
[2]   Erythroblastic islands: niches for erythropoiesis [J].
Chasis, Joel Anne ;
Mohandas, Narla .
BLOOD, 2008, 112 (03) :470-478
[3]  
Chaurasia P., BLOOD IN PRESS
[4]   Identification of CD13+CD36+ cells as a common progenitor for erythroid and myeloid lineages in human bone marrow [J].
Chen, Ling ;
Gao, Zhigang ;
Zhu, Jianqiong ;
Rodgers, Griffin P. .
EXPERIMENTAL HEMATOLOGY, 2007, 35 (07) :1047-1055
[5]   Mouse model of congenital polycythemia: Homologous replacement of murine gene by mutant human erythropoietin receptor gene [J].
Divoky, V ;
Liu, ZY ;
Ryan, TM ;
Prchal, JF ;
Townes, TM ;
Prchal, JT .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (03) :986-991
[6]   Maturation and enucleation of primitive erythroblasts during mouse embryogenesis is accompanied by changes in cell-surface antigen expression [J].
Fraser, Stuart T. ;
Isern, Joan ;
Baron, Margaret H. .
BLOOD, 2007, 109 (01) :343-352
[7]   Targeted elimination of prostate cancer by genetically directed human T lymphocytes [J].
Gade, TPF ;
Hassen, W ;
Santos, E ;
Gunset, G ;
Saudemont, A ;
Gong, MC ;
Brentjens, R ;
Zhong, XS ;
Stephan, M ;
Stefanski, J ;
Lyddane, C ;
Osborne, JR ;
Buchanan, IM ;
Hall, SJ ;
Heston, WD ;
Rivière, I ;
Larson, SM ;
Koutcher, JA ;
Sadelain, M .
CANCER RESEARCH, 2005, 65 (19) :9080-9088
[8]   Evidence for Organ-Specific Stem Cell Microenvironments [J].
Ghinassi, Barbara ;
Martelli, Fabrizio ;
Verrucci, Maria ;
D'Amore, Emanuela ;
Migliaccio, Giovanni ;
Vannucchi, Alessandro Maria ;
Hoffman, Ronald ;
Migliaccio, Anna Rita .
JOURNAL OF CELLULAR PHYSIOLOGY, 2010, 223 (02) :460-470
[9]   Ex vivo generation of fully mature human red blood cells from hematopoietic stem cells [J].
Giarratana, MC ;
Kobari, L ;
Lapillonne, H ;
Chalmers, D ;
Kiger, L ;
Cynober, T ;
Marden, MC ;
Wajcman, H ;
Douay, L .
NATURE BIOTECHNOLOGY, 2005, 23 (01) :69-74
[10]   SCID mouse models of human stem cell engraftment [J].
Greiner, DL ;
Hesselton, RA ;
Shultz, LD .
STEM CELLS, 1998, 16 (03) :166-177