Shortening of telomeres: Evidence for replicative senescence of T cells derived from patients with Wegener's granulomatosis.BackgroundReplicative senescence describes the fact that somatic cells undergo a finite and predictable number of cell divisions before entering an irreversible state of growth arrest. Progressive shortening of the telomeres, a consequence of cell division, is a reliable indicator of replicative senescence.MethodWe analyzed telomere length of DNA derived from T cells of patients suffering from Wegener's granulomatosis by Sourthern blotting. Moreover, expression of CD28, another marker for replicative senescence, was tested by cytofluorometry.ResultsIn patients with disease for more than 5 years, short telomeres were de...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
International audienceαβ CD8+, γδ, and NK lymphocytes are fundamental effector cells against viruses...
Shortening of telomeres: Evidence for replicative senescence of T cells derived from patients with W...
Effector T lymphocytes are the progeny of a limited number of antigen- specific precursor cells and ...
The proliferative life span of human cells is limited by telomere shortening, but the specific telom...
Short telomere (ST) syndromes are the most prevalent of premature aging disorders; they manifest as ...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
A subset of patients with common variable immunodeficiency (CVID), group 1a of the Freiburg classifi...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
After extended proliferation, cells enter a state of replicative quiescence that is probably due to ...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
International audienceαβ CD8+, γδ, and NK lymphocytes are fundamental effector cells against viruses...
Shortening of telomeres: Evidence for replicative senescence of T cells derived from patients with W...
Effector T lymphocytes are the progeny of a limited number of antigen- specific precursor cells and ...
The proliferative life span of human cells is limited by telomere shortening, but the specific telom...
Short telomere (ST) syndromes are the most prevalent of premature aging disorders; they manifest as ...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
A subset of patients with common variable immunodeficiency (CVID), group 1a of the Freiburg classifi...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
After extended proliferation, cells enter a state of replicative quiescence that is probably due to ...
Progressive shortening of telomeres ultimately causes replicative senescence and is linked with agin...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
Telomeres, the ends of chromosomes, shorten with each cell division in human somatic cells, because ...
International audienceαβ CD8+, γδ, and NK lymphocytes are fundamental effector cells against viruses...