The Notch signaling pathway is a fundamental regulator of cell fate determination in homeostasis and regeneration. In this work, we aimed to determine how Notch signaling mediates the interactions between perivascular stem cells and their niches in human dental mesenchymal tissues, both in homeostatic and regenerative conditions. By single cell RNA sequencing analysis, we showed that perivascular cells across the dental pulp and periodontal human tissues all express NOTCH3, and that these cells are important for the response to traumatic injuries in vivo in a transgenic mouse model. We further showed that the behavior of perivascular NOTCH3-expressing stem cells could be modulated by cellular and molecular cues deriving from their microenvi...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
detect the expression of molecules associated with Notch signaling pathway in stem cells from human ...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Abstract The Notch signaling pathway is a fundamental regulator of cell fate determination in homeos...
The Notch signaling pathway is a fundamental regulator of cell fate determination in homeostasis and...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
AbstractNOTCH plays a role in regulating stem cell function and fate decision. It is involved in too...
Stem cells guarantee tissue repair and regeneration throughout life. The decision between cell self-...
Notch signaling plays a critical role in development and cell fate specification. Notch receptors an...
AbstractThe Notch signaling pathway regulates intestinal epithelial cell homeostasis, including stem...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
detect the expression of molecules associated with Notch signaling pathway in stem cells from human ...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
Abstract The Notch signaling pathway is a fundamental regulator of cell fate determination in homeos...
The Notch signaling pathway is a fundamental regulator of cell fate determination in homeostasis and...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
Dental pulp stem/progenitor cells guarantee tooth homeostasis, repair and regeneration throughout li...
AbstractNOTCH plays a role in regulating stem cell function and fate decision. It is involved in too...
Stem cells guarantee tissue repair and regeneration throughout life. The decision between cell self-...
Notch signaling plays a critical role in development and cell fate specification. Notch receptors an...
AbstractThe Notch signaling pathway regulates intestinal epithelial cell homeostasis, including stem...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...
detect the expression of molecules associated with Notch signaling pathway in stem cells from human ...
Multipotent human dental follicle cells (HDFCs) have been intensively studied in periodontal regener...