Recently, NOD-SLID IL2R gamma(-/-) (NSG) mice were implanted with human mesenchymal stromal cells (MSCs) in the presence of ceramic scaffolds or Matrigel to mimic the human bone marrow (BM) microenvironment. This approach allowed the engraftment of leukemic samples that failed to engraft in NSG mice without humanized niches and resulted in a better preservation of leukemic stem cell self-renewal properties. To further improve our humanized niche scaffold model, we genetically engineered human MSCs to secrete human interleukin-3 (IL-3) and thrombopoietin (TPO). In vitro, these IL-3- and TPO-producing MSCs were superior in expanding human cord blood (CB) CD34(+) hematopoietic stein/progenitor cells. MLL-AF9-transduced CB CD34(+) cells could b...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
The engraftment potential of myeloproliferative neoplasms in immunodeficient mice is low. We hypothe...
Although NOD-SCID IL2Rγ−/− (NSG) xenograft mice are currently the most frequently used model to stud...
Recently, NOD-SLID IL2R gamma(-/-) (NSG) mice were implanted with human mesenchymal stromal cells (M...
Recently, NOD-SLID IL2R gamma(-/-) (NSG) mice were implanted with human mesenchymal stromal cells (M...
Recently, NOD-SCID IL2Rγ-/-(NSG) mice were implanted with human mesenchymal stromal cells (MSCs) in ...
This work was supported by grants from the EU (FP7-PEOPLE-2010-ITN EuroCancer StemCell Training net...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
The engraftment potential of myeloproliferative neoplasms in immunodeficient mice is low. We hypothe...
Although NOD-SCID IL2Rγ−/− (NSG) xenograft mice are currently the most frequently used model to stud...
Recently, NOD-SLID IL2R gamma(-/-) (NSG) mice were implanted with human mesenchymal stromal cells (M...
Recently, NOD-SLID IL2R gamma(-/-) (NSG) mice were implanted with human mesenchymal stromal cells (M...
Recently, NOD-SCID IL2Rγ-/-(NSG) mice were implanted with human mesenchymal stromal cells (MSCs) in ...
This work was supported by grants from the EU (FP7-PEOPLE-2010-ITN EuroCancer StemCell Training net...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
Although NOD-SCID IL2R gamma(-/-) (NSG) xenograft mice are currently the most frequently used model ...
The engraftment potential of myeloproliferative neoplasms in immunodeficient mice is low. We hypothe...
Although NOD-SCID IL2Rγ−/− (NSG) xenograft mice are currently the most frequently used model to stud...