Multipotent haematopoietic stem cells (HSCs) supply the organism with mature blood cells of all lineages throughout adult life. These cells first originate in the dorsal aorta (DA) of the vertebrate embryo, and a multitude of signalling pathways regulate their specification in the embryo. The emergence of HSCs is dependent on appropriate arterial specification and vessel maturation, processes which are heavily dependent on Notch signalling. This arterial involvement of Notch obscures its later roles in HSC specification. The Notch ligand dll4 is crucially involved in arterial development in the mammalian embryo, while zebrafish embryos deficient for dll4 activity only exhibit minor arterial defects at the time...
The mechanisms by which arterial fate is established and maintained are not clearly understood. Alth...
BACKGROUND: In mouse embryos, homozygous or heterozygous deletions of the gene encoding the Notch li...
This thesis provides the first in vivo characterization of dlc1, dlc3 and cndp2 during embryonic dev...
Hematopoietic stem cells (HSCs) are generated during embryonic development and possess the ability t...
In vertebrates, haematopoiesis is maintained by self-renewing multipotent haematopoietic stem cells ...
OBJECTIVE: To study whether Notch signaling, which regulates cell fate decisions and vessel morphoge...
Objective-To study whether Notch signaling, which regulates cell fate decisions and vessel morphogen...
Objective: To study whether Notch signaling, which regulates cell fate decisions and vessel morphoge...
Objective-To study whether Notch signaling, which regulates cell fate decisions and vessel morphogen...
The hematopoietic stem cell (HSC) sustains blood homeostasis throughout life in vertebrates. During ...
Delta-like homologue 1 (Dlk1) and Dlk2 encode vertebrate-specific transmembrane proteins belonging t...
Haematopoietic stem and progenitor cells (HSPCs) are de novo generated within in the ventral aspects...
OBJECTIVE: To study whether Notch signaling, which regulates cell fate decisions and vessel morphoge...
Differentiation of arteries and veins is essential for the development of a functional circulatory s...
Notch signaling is essential for definitive hematopoiesis, but its role in human embryonic hematopoi...
The mechanisms by which arterial fate is established and maintained are not clearly understood. Alth...
BACKGROUND: In mouse embryos, homozygous or heterozygous deletions of the gene encoding the Notch li...
This thesis provides the first in vivo characterization of dlc1, dlc3 and cndp2 during embryonic dev...
Hematopoietic stem cells (HSCs) are generated during embryonic development and possess the ability t...
In vertebrates, haematopoiesis is maintained by self-renewing multipotent haematopoietic stem cells ...
OBJECTIVE: To study whether Notch signaling, which regulates cell fate decisions and vessel morphoge...
Objective-To study whether Notch signaling, which regulates cell fate decisions and vessel morphogen...
Objective: To study whether Notch signaling, which regulates cell fate decisions and vessel morphoge...
Objective-To study whether Notch signaling, which regulates cell fate decisions and vessel morphogen...
The hematopoietic stem cell (HSC) sustains blood homeostasis throughout life in vertebrates. During ...
Delta-like homologue 1 (Dlk1) and Dlk2 encode vertebrate-specific transmembrane proteins belonging t...
Haematopoietic stem and progenitor cells (HSPCs) are de novo generated within in the ventral aspects...
OBJECTIVE: To study whether Notch signaling, which regulates cell fate decisions and vessel morphoge...
Differentiation of arteries and veins is essential for the development of a functional circulatory s...
Notch signaling is essential for definitive hematopoiesis, but its role in human embryonic hematopoi...
The mechanisms by which arterial fate is established and maintained are not clearly understood. Alth...
BACKGROUND: In mouse embryos, homozygous or heterozygous deletions of the gene encoding the Notch li...
This thesis provides the first in vivo characterization of dlc1, dlc3 and cndp2 during embryonic dev...