Bone healing is a complex, well-organized process. Multiple factors regulate this process, including growth factors, hormones, cytokines, mechanical stimulation, and aging. One of the most important signaling pathways that affect bone healing is the Notch signaling pathway. It has a significant role in controlling the differentiation of bone mesenchymal stem cells and forming new bone. Interventions to enhance the healing of critical-sized bone defects are of great importance, and stem cell transplantations are eminent candidates for treating such defects. Understanding how Notch signaling impacts pluripotent stem cell differentiation can significantly enhance osteogenesis and improve the overall healing process upon transplantation. In Ran...
Skeletal development and remodeling of adult bone are critically controlled by activated NOTCH signa...
Objective: To investigate the role of Notch signaling pathway in the differentiation of rat bone mar...
Despite the great progress in the field of bone tissue regeneration, the early initiating mechanisms...
Bone healing is a complex, well-organized process. Multiple factors regulate this process, including...
Thesis (Ph.D.)--University of Rochester. School of Medicine & Dentistry. Dept. of Pathology, 2015.Du...
The Notch signaling pathway is an important regulator of embryological bone development, and many as...
This project contributes to our understanding of bone cell biology and sheds light on the potential ...
Osteogenic differentiation is a multi-step process controlled by a complex molecular framework. Notc...
Owing to the central role of osteoclasts in bone physiology and remodeling, manipulation of their ma...
Osteocytes comprise more than 90% of the cells in bone and are differentiated from osteoblasts via a...
Bone fractures can exhibit delayed or non-union healing. Current treatments have well- documented li...
Human adipose-derived stem cells (hASCs) have significant therapeutic potential due to their ability...
Pulsed electromagnetic fields (PEMFs) have been used to treat bone diseases, particularly non-union ...
Bone fractures can exhibit delayed or non-union healing. Current treatments have well- documented li...
Mesenchymal stem cells (MSCs) are a group of multipotent cells with key properties of multi-lineage ...
Skeletal development and remodeling of adult bone are critically controlled by activated NOTCH signa...
Objective: To investigate the role of Notch signaling pathway in the differentiation of rat bone mar...
Despite the great progress in the field of bone tissue regeneration, the early initiating mechanisms...
Bone healing is a complex, well-organized process. Multiple factors regulate this process, including...
Thesis (Ph.D.)--University of Rochester. School of Medicine & Dentistry. Dept. of Pathology, 2015.Du...
The Notch signaling pathway is an important regulator of embryological bone development, and many as...
This project contributes to our understanding of bone cell biology and sheds light on the potential ...
Osteogenic differentiation is a multi-step process controlled by a complex molecular framework. Notc...
Owing to the central role of osteoclasts in bone physiology and remodeling, manipulation of their ma...
Osteocytes comprise more than 90% of the cells in bone and are differentiated from osteoblasts via a...
Bone fractures can exhibit delayed or non-union healing. Current treatments have well- documented li...
Human adipose-derived stem cells (hASCs) have significant therapeutic potential due to their ability...
Pulsed electromagnetic fields (PEMFs) have been used to treat bone diseases, particularly non-union ...
Bone fractures can exhibit delayed or non-union healing. Current treatments have well- documented li...
Mesenchymal stem cells (MSCs) are a group of multipotent cells with key properties of multi-lineage ...
Skeletal development and remodeling of adult bone are critically controlled by activated NOTCH signa...
Objective: To investigate the role of Notch signaling pathway in the differentiation of rat bone mar...
Despite the great progress in the field of bone tissue regeneration, the early initiating mechanisms...