Osteoblast number and activity decreases with aging, contributing to the age-associated decline of bone mass, but the mechanisms underlying changes in osteoblast activity are not well understood. Here, we show that the age-associated bone loss critically depends on impairment of the ability of megakaryocytes (MKs) to support osteoblast proliferation. Co-culture of osteoblast precursors with young MKs is known to increase osteoblast proliferation and bone formation. However, co-culture of osteoblast precursors with aged MKs resulted in significantly fewer osteoblasts compared to co-culture with young MKs, and this was associated with the downregulation of transforming growth factor beta. In addition, the ability of MKs to increase bone mass ...
Introduction: In the rapidly aging U.S. population, age-induced bone loss (senile osteoporosis) repr...
The cellular mechanisms for loading-induced bone formation, from osteocyte mechano-sensation to oste...
Bone marrow(BM) niche aging contributes to hematopoietic stem cell(HSC) dysfunction and consequent i...
poster abstractEmerging evidence demonstrates that megakaryocytes (MK) play a key role in regulatin...
Emerging evidence demonstrates that megakaryocytes (MK) play key roles in regulating skeletal homeos...
MEGAKARYOCYTE-BONE CELL INTERACTIONS: THE ROLE OF GAP JUNCTIONS, MATURATION, AND LONGEVITY. Wendy A....
Aging at the cellular level is a complex process resulting from accumulation of various damages lead...
Osteoporosis is an age-related disorder characterized by bone loss and increased fracture susceptibi...
AbstractMarrow stromal cells (MSC) are thought to be stem cells with osteogenic potential and theref...
Emerging data suggest that megakaryocytes (MKs) play a significant role in skeletal homeostasis. Ind...
ABSTRACT: Age-dependent bone loss has been well documented in both human and animal models. Al-thoug...
BACKGROUND: The mechanism by which megakaryocytes (Mks) proliferate, differentiate, and release plat...
Osteoporosis is a skeletal disease with a strong aging-related prevalence. It is defined by low bone...
Loss of skeletal integrity during ageing and disease is associated with an imbalance in the opposing...
Recently, it was suggested that osteocytes are involved in the regulation of bone remodeling. We hav...
Introduction: In the rapidly aging U.S. population, age-induced bone loss (senile osteoporosis) repr...
The cellular mechanisms for loading-induced bone formation, from osteocyte mechano-sensation to oste...
Bone marrow(BM) niche aging contributes to hematopoietic stem cell(HSC) dysfunction and consequent i...
poster abstractEmerging evidence demonstrates that megakaryocytes (MK) play a key role in regulatin...
Emerging evidence demonstrates that megakaryocytes (MK) play key roles in regulating skeletal homeos...
MEGAKARYOCYTE-BONE CELL INTERACTIONS: THE ROLE OF GAP JUNCTIONS, MATURATION, AND LONGEVITY. Wendy A....
Aging at the cellular level is a complex process resulting from accumulation of various damages lead...
Osteoporosis is an age-related disorder characterized by bone loss and increased fracture susceptibi...
AbstractMarrow stromal cells (MSC) are thought to be stem cells with osteogenic potential and theref...
Emerging data suggest that megakaryocytes (MKs) play a significant role in skeletal homeostasis. Ind...
ABSTRACT: Age-dependent bone loss has been well documented in both human and animal models. Al-thoug...
BACKGROUND: The mechanism by which megakaryocytes (Mks) proliferate, differentiate, and release plat...
Osteoporosis is a skeletal disease with a strong aging-related prevalence. It is defined by low bone...
Loss of skeletal integrity during ageing and disease is associated with an imbalance in the opposing...
Recently, it was suggested that osteocytes are involved in the regulation of bone remodeling. We hav...
Introduction: In the rapidly aging U.S. population, age-induced bone loss (senile osteoporosis) repr...
The cellular mechanisms for loading-induced bone formation, from osteocyte mechano-sensation to oste...
Bone marrow(BM) niche aging contributes to hematopoietic stem cell(HSC) dysfunction and consequent i...