Replicative exhaustion of endothelial cells (ECs) contributes to the pathogenesis of age-related vascular disorders, including atherosclerosis and impaired wound healing. Conversely, abnormal proliferation of ECs underlies the development of EC-derived malignancies, such as haemangioblastoma and angiosarcoma. The central objective of this thesis was to delineate mechanisms that regulate the replicative lifespan of human ECs and molecular alterations that occur during immortalisation of ECs. The gradual shortening of telomeres (chromosome-end structures) is one mechanism that restricts the replicative lifespan of human ECs. Telomere shortening initiates an irreversible growth arrest or senescence through activation of a TP53-mediated DNA dam...
AbstractNormal somatic cells have a finite life span [1] and lose telomeric DNA, present at the ends...
Proliferation of normal somatic human cells in culture is limited by replicative senescence, a growt...
Telomere dynamics are a critical component of both aging and cancer. Telomeres progressively shorten...
Cellular immortalization is a major hallmark of cancer and is a multi-step process that requires num...
Cellular immortalization is a major hallmark of cancer and is a multi-step process that requires num...
Cellular immortalization is a major hallmark of cancer and is a multi-step process that requires num...
Normal human cells exhibit a limited replicative life span in culture, eventually arresting growth b...
<div><p>Telomerase reactivation and immortalization are critical for human carcinoma progression. Ho...
In normal human somatic cells, the length of telomeres (chromosomal end structures) decreases with e...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
Our knowledge on immortalization and telomere biology is mainly based on genetically manipulated cel...
Numerous previous studies have shown an association between shorter TL and CAD. Prospective and fami...
Objective-Homocysteine can accelerate the senescence of endothelial progenitor cells or endothelial ...
The shortening of the telomeres that occurs in most somatic cells and untransformed cell cultures is...
AbstractNormal somatic cells have a finite life span [1] and lose telomeric DNA, present at the ends...
Proliferation of normal somatic human cells in culture is limited by replicative senescence, a growt...
Telomere dynamics are a critical component of both aging and cancer. Telomeres progressively shorten...
Cellular immortalization is a major hallmark of cancer and is a multi-step process that requires num...
Cellular immortalization is a major hallmark of cancer and is a multi-step process that requires num...
Cellular immortalization is a major hallmark of cancer and is a multi-step process that requires num...
Normal human cells exhibit a limited replicative life span in culture, eventually arresting growth b...
<div><p>Telomerase reactivation and immortalization are critical for human carcinoma progression. Ho...
In normal human somatic cells, the length of telomeres (chromosomal end structures) decreases with e...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
Our knowledge on immortalization and telomere biology is mainly based on genetically manipulated cel...
Numerous previous studies have shown an association between shorter TL and CAD. Prospective and fami...
Objective-Homocysteine can accelerate the senescence of endothelial progenitor cells or endothelial ...
The shortening of the telomeres that occurs in most somatic cells and untransformed cell cultures is...
AbstractNormal somatic cells have a finite life span [1] and lose telomeric DNA, present at the ends...
Proliferation of normal somatic human cells in culture is limited by replicative senescence, a growt...
Telomere dynamics are a critical component of both aging and cancer. Telomeres progressively shorten...