The successful ex vivo reconstruction of human bone marrow is an extraordinarily important basic scientific and clinical goal. Fundamentally, the system is the paradigm of a complex interactive tissue, in which the proliferation and regulated differentiation of one parenchymal cell type (the hematopoietic stem cell) is governed by the surrounding stromal cells. Understanding and reproducing the molecular interactions between bone marrow stromal cells and stem cells in tissue culture models is therefore the critical step in successful bone marrow tissue culture. Clinically, successful reconstruction of human bone marrow would permit the controlled production of mature blood cells for transfusion therapy, and immature bone marrow stem cells f...
Since the dawn of medicine, scientists have carefully observed, modeled and interpreted the human bo...
The bone marrow stroma consists of a heterogeneous population of cells that provide the structural a...
Three-dimensional (3D) culture systems are critical to investigate cell physiology and to engineer t...
Abstract The successful ex vivo reconstruction of human bone marrow is an extraordinarily important ...
Haematopoiesis is the process of blood production in the bone marrow (BM) tissue within the bones an...
Mesenchymal stem cells or marrow stromal cells (MSCs) represent a multipotent adult cellular populat...
The bone marrow stroma consists of a heterogeneous population of cells that provide the structural a...
Recent studies have indicated that the hematopoietic stem/progenitor cell (HSPC) niche, consisting o...
The stromal cell layer is believed to play an important role in long-term human bone marrow cultures...
Therapeutic potential of human bone marrow stromal/stem cells (hBMSC) must be developed using well d...
Bone tissue engineering is a promising field of regenerative medicine in which cultured cells, scaff...
The bone marrow microenvironment contains cellular niches that maintain the pool of hematopoietic st...
Modeling the interaction between the supportive stroma and the hematopoietic stem and progenitor cel...
The capability to expand human bone marrow mononuclear cells (BM MNC) in high density perfusion cult...
Hematopoiesis is a highly regulated process. A large variety of signaling factors, cell surface rece...
Since the dawn of medicine, scientists have carefully observed, modeled and interpreted the human bo...
The bone marrow stroma consists of a heterogeneous population of cells that provide the structural a...
Three-dimensional (3D) culture systems are critical to investigate cell physiology and to engineer t...
Abstract The successful ex vivo reconstruction of human bone marrow is an extraordinarily important ...
Haematopoiesis is the process of blood production in the bone marrow (BM) tissue within the bones an...
Mesenchymal stem cells or marrow stromal cells (MSCs) represent a multipotent adult cellular populat...
The bone marrow stroma consists of a heterogeneous population of cells that provide the structural a...
Recent studies have indicated that the hematopoietic stem/progenitor cell (HSPC) niche, consisting o...
The stromal cell layer is believed to play an important role in long-term human bone marrow cultures...
Therapeutic potential of human bone marrow stromal/stem cells (hBMSC) must be developed using well d...
Bone tissue engineering is a promising field of regenerative medicine in which cultured cells, scaff...
The bone marrow microenvironment contains cellular niches that maintain the pool of hematopoietic st...
Modeling the interaction between the supportive stroma and the hematopoietic stem and progenitor cel...
The capability to expand human bone marrow mononuclear cells (BM MNC) in high density perfusion cult...
Hematopoiesis is a highly regulated process. A large variety of signaling factors, cell surface rece...
Since the dawn of medicine, scientists have carefully observed, modeled and interpreted the human bo...
The bone marrow stroma consists of a heterogeneous population of cells that provide the structural a...
Three-dimensional (3D) culture systems are critical to investigate cell physiology and to engineer t...