Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple myeloma (MM) clones due to stromal cell-tumor cell interactions, which confer survival advantage and drug resistance. Defining the sequelae of tumor cell interactions within the MM niches on an individualized basis may provide the rationale for personalized therapies. To mimic the MM niche, we here describe a new 3D co-culture ex-vivo model in which primary MM patient BM cells are co-cultured with mesenchymal stem cells (MSC) in a hydrogel 3D system. In the 3D model, MSC with conserved phenotype (CD73+CD90+CD105+) formed compact clusters with active fibrous connections, and retained lineage differentiation capacity. Extracellular matrix molecu...
Interactions within the hematopoietic niche in the BM microenvironment are essential for maintenance...
Despite the wide variety of existing therapies, multiple myeloma (MM) remains a disease with dismal ...
Substantial advances have been made in understanding the biology of multiple myeloma (MM) through th...
Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple m...
Bone marrow niches support multiple myeloma, providing signals and cell-cell interactions essential ...
The bone marrow microenvironment is the preferred location of multiple myeloma, supporting tumor gro...
Multiple myeloma (MM) is a hematologic malignancy of monoclonal plasma cells which remains incurable...
Multiple myeloma, the second most common hematological cancer, is currently incurable due to refract...
The interaction with bone marrow (BM) plays a crucial role in pathophysiological features of multipl...
<div><p>Multiple myeloma, the second most common hematological cancer, is currently incurable due to...
The interaction with bone marrow (BM) plays a crucial role in pathophysiological features of multipl...
The bone marrow is a complex tissue within the bones, responsible for the production of blood cells....
Multiple myeloma (MM) is a malignancy of terminally-differentiated plasma cells that develops mainly...
The unique properties of the bone marrow (BM) allow for migration and proliferation of multiple myel...
Interactions within the hematopoietic niche in the BM microenvironment are essential for maintenance...
Interactions within the hematopoietic niche in the BM microenvironment are essential for maintenance...
Despite the wide variety of existing therapies, multiple myeloma (MM) remains a disease with dismal ...
Substantial advances have been made in understanding the biology of multiple myeloma (MM) through th...
Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple m...
Bone marrow niches support multiple myeloma, providing signals and cell-cell interactions essential ...
The bone marrow microenvironment is the preferred location of multiple myeloma, supporting tumor gro...
Multiple myeloma (MM) is a hematologic malignancy of monoclonal plasma cells which remains incurable...
Multiple myeloma, the second most common hematological cancer, is currently incurable due to refract...
The interaction with bone marrow (BM) plays a crucial role in pathophysiological features of multipl...
<div><p>Multiple myeloma, the second most common hematological cancer, is currently incurable due to...
The interaction with bone marrow (BM) plays a crucial role in pathophysiological features of multipl...
The bone marrow is a complex tissue within the bones, responsible for the production of blood cells....
Multiple myeloma (MM) is a malignancy of terminally-differentiated plasma cells that develops mainly...
The unique properties of the bone marrow (BM) allow for migration and proliferation of multiple myel...
Interactions within the hematopoietic niche in the BM microenvironment are essential for maintenance...
Interactions within the hematopoietic niche in the BM microenvironment are essential for maintenance...
Despite the wide variety of existing therapies, multiple myeloma (MM) remains a disease with dismal ...
Substantial advances have been made in understanding the biology of multiple myeloma (MM) through th...