Canonical Wnt signaling support the formation and maintenance of stem and cancer stem cells. Recent studies have elucidated epigenetic mechanisms that control pluripotency and stemness, and allow a first assessment how embryonic and tissue stem cells are generated and maintained, and how Wnt signaling might be involved. The core of this review highlights the roles of Wnt signaling in stem and cancer stem cells of tissues such as skin, intestine and mammary gland. Lastly, we refer to the characterization of novel and powerful inhibitors of canonical Wnt signaling and describe attempts to bring these compounds into preclinical and clinical studies
In mammals, Wnt/β-catenin signaling features prominently in stem cells and cancers, but how and for ...
Wnt signalling regulates several cellular functions including proliferation, differentiation, apopto...
ABSTRACT: In cancers, many signals were involved in self-renewal, differentiation and proliferation....
Aberrant regulation of Wnt signaling is a common theme seen across many tumor types. Decades of rese...
The term "Wnt signaling" does not refer to one uniform signal transduction cascade. Instead, it desc...
The adult human body is built of around 3.72 × 1013 cells. These cells display a great variation in ...
The ability of Wnt ligands to initiate a signaling cascade that results in cytoplasmic stabilization...
AbstractSignaling initiated by secreted glycoproteins of the Wnt family regulates many aspects of em...
INTRODUCTION: Wnt signalling has been implicated in stem cell regulation however its role in breast ...
Cancer recurrence and metastasis highlight the plasticity of cancer, where cancer cells can drastica...
Wnt signalling has been implicated in stem cell regulation however its role in breast cancer stem ce...
Cooperating with other signaling pathways, Wnt signaling controls cell proliferation, morphology, mo...
Wnt signalling regulates several cellular functions including proliferation, differentiation, apopto...
The importance of Wnt/β-catenin signaling in cancer stem cells (CSCs) has been acknowledged; however...
The intestinal epithelium is a self-renewing tissue which represents a unique model for studying int...
In mammals, Wnt/β-catenin signaling features prominently in stem cells and cancers, but how and for ...
Wnt signalling regulates several cellular functions including proliferation, differentiation, apopto...
ABSTRACT: In cancers, many signals were involved in self-renewal, differentiation and proliferation....
Aberrant regulation of Wnt signaling is a common theme seen across many tumor types. Decades of rese...
The term "Wnt signaling" does not refer to one uniform signal transduction cascade. Instead, it desc...
The adult human body is built of around 3.72 × 1013 cells. These cells display a great variation in ...
The ability of Wnt ligands to initiate a signaling cascade that results in cytoplasmic stabilization...
AbstractSignaling initiated by secreted glycoproteins of the Wnt family regulates many aspects of em...
INTRODUCTION: Wnt signalling has been implicated in stem cell regulation however its role in breast ...
Cancer recurrence and metastasis highlight the plasticity of cancer, where cancer cells can drastica...
Wnt signalling has been implicated in stem cell regulation however its role in breast cancer stem ce...
Cooperating with other signaling pathways, Wnt signaling controls cell proliferation, morphology, mo...
Wnt signalling regulates several cellular functions including proliferation, differentiation, apopto...
The importance of Wnt/β-catenin signaling in cancer stem cells (CSCs) has been acknowledged; however...
The intestinal epithelium is a self-renewing tissue which represents a unique model for studying int...
In mammals, Wnt/β-catenin signaling features prominently in stem cells and cancers, but how and for ...
Wnt signalling regulates several cellular functions including proliferation, differentiation, apopto...
ABSTRACT: In cancers, many signals were involved in self-renewal, differentiation and proliferation....