Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regeneration research, yet the role of Notch1 in HDFCs has not been fully understood. The aim of the current study is to explore the role of Notch1 signaling in HDFCs self-renewal and proliferation. HDFCs were obtained from the extracted wisdom teeth from adolescent patients. Regulation of Notch1 signaling in the HDFCs was achieved by overexpressing the exogenous intracellular domain of Notch1 (ICN1) or silencing Notch1 by shRNA. The regulatory effects of Notch1 on HDFC proliferation, cell cycle distribution and the expression of cell cycle regulators were investigated through various molecular technologies, including plasmid construction, retroviru...
Abstract The Notch signaling pathway is a fundamental regulator of cell fate determination in homeos...
Objective: Human dental pulp-derived stem cells (hDPSCs) are becoming an attractive source for cell-...
The continuously growing rodent incisor is an emerging model for the study of renewal of mineralized...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
<div><p>Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Notch signaling plays a critical role in development and cell fate specification. Notch receptors an...
detect the expression of molecules associated with Notch signaling pathway in stem cells from human ...
The Notch signaling pathway is a fundamental regulator of cell fate determination in homeostasis and...
Aim: To detect the expression of molecules associated with Notch signaling pathway in stem cells fro...
To establish model of dental pulp cells with activated Notch signaling pathway, and investigate the ...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Abstract The Notch signaling pathway is a fundamental regulator of cell fate determination in homeos...
Objective: Human dental pulp-derived stem cells (hDPSCs) are becoming an attractive source for cell-...
The continuously growing rodent incisor is an emerging model for the study of renewal of mineralized...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
<div><p>Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Notch signaling plays a critical role in development and cell fate specification. Notch receptors an...
detect the expression of molecules associated with Notch signaling pathway in stem cells from human ...
The Notch signaling pathway is a fundamental regulator of cell fate determination in homeostasis and...
Aim: To detect the expression of molecules associated with Notch signaling pathway in stem cells fro...
To establish model of dental pulp cells with activated Notch signaling pathway, and investigate the ...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Abstract The Notch signaling pathway is a fundamental regulator of cell fate determination in homeos...
Objective: Human dental pulp-derived stem cells (hDPSCs) are becoming an attractive source for cell-...
The continuously growing rodent incisor is an emerging model for the study of renewal of mineralized...