Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However, when cocultured monocytes, but not OC precursors, with MM cells, we made a novel observation that MM cells inhibited receptor activator of nuclear factor κB ligand (RANKL)-induced increase of OC differentiation, OC gene expression, signaling pathways and bone resorption activity. Our results showed that MM cells produced multiple inhibitory cytokines of osteoclastogenesis, such as IL-10, which activated STAT3 signaling and induce OC inhibition. However, cocultures of bone marrow stromal cells (BMSCs) reversed MM-induced OC inhibition. We found that MM cells increased production of MCP-1 from BMSCs and BMSC-derived MCP-1 enhanced OC formation. Mecha...
Bone destruction is the hallmark of multiple myeloma (MM) due to the high capacity of malignant plas...
The involvement of osteocytes in multiple myeloma (MM)-induced osteoclast (OCL) formation and bone l...
The involvement of osteocytes in multiple myeloma (MM)-induced osteoclast (OCL) formation and bone l...
<div><p>Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However...
Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However, when c...
The increase of osteoclast activation and formation is mainly involved in the development of the ost...
The biologic mechanisms involved in the pathogenesis of multiple myeloma (MM) bone disease are not c...
Studies have given new insights into the pathogenesis of myeloma bone disease and demonstrated a str...
Studies have given new insights into the pathogenesis of myeloma bone disease and demonstrated a str...
The development of multiple myeloma (MM) bone disease is mediated by increased number and activity o...
Multiple myeloma (MM) is a hematologic malignancy of differentiated plasma cells that accumulates an...
The development of multiple myeloma (MM) bone disease is mediated by increased number and activity o...
Multiple myeloma (MM) is a hematologic malignancy of differentiated plasma cells that accumulates an...
MM is frequently associated with the development of osteolytic bone lesions, osteoporosis and pathol...
In multiple myeloma, an overabundance of monoclonal plasma cells in the bone marrow induces localize...
Bone destruction is the hallmark of multiple myeloma (MM) due to the high capacity of malignant plas...
The involvement of osteocytes in multiple myeloma (MM)-induced osteoclast (OCL) formation and bone l...
The involvement of osteocytes in multiple myeloma (MM)-induced osteoclast (OCL) formation and bone l...
<div><p>Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However...
Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However, when c...
The increase of osteoclast activation and formation is mainly involved in the development of the ost...
The biologic mechanisms involved in the pathogenesis of multiple myeloma (MM) bone disease are not c...
Studies have given new insights into the pathogenesis of myeloma bone disease and demonstrated a str...
Studies have given new insights into the pathogenesis of myeloma bone disease and demonstrated a str...
The development of multiple myeloma (MM) bone disease is mediated by increased number and activity o...
Multiple myeloma (MM) is a hematologic malignancy of differentiated plasma cells that accumulates an...
The development of multiple myeloma (MM) bone disease is mediated by increased number and activity o...
Multiple myeloma (MM) is a hematologic malignancy of differentiated plasma cells that accumulates an...
MM is frequently associated with the development of osteolytic bone lesions, osteoporosis and pathol...
In multiple myeloma, an overabundance of monoclonal plasma cells in the bone marrow induces localize...
Bone destruction is the hallmark of multiple myeloma (MM) due to the high capacity of malignant plas...
The involvement of osteocytes in multiple myeloma (MM)-induced osteoclast (OCL) formation and bone l...
The involvement of osteocytes in multiple myeloma (MM)-induced osteoclast (OCL) formation and bone l...