AIMS: Down Syndrome (DS), a genetic disease caused by a triplication of chromosome 21, is characterized by increased markers of oxidative stress. In addition to cognitive defects, patients with DS also display hematologic disorders and increased incidence of infections and leukemia. Using the Ts65Dn mouse model of DS, the goal of this study was to examine hematopoietic stem and lymphoid progenitor cell function in DS. RESULTS: Analysis of hematopoietic progenitor populations showed that Ts65Dn mice possessed fewer functional hematopoietic stem cells and a significantly decreased percentage of bone marrow lymphoid progenitors. Increased reactive oxygen species and markers of oxidative stress were detected in hematopoietic stem cell populatio...
Diverse ‘-omics’ technologies permit the comprehensive quantitative profiling of a variety of biolog...
Intellectual disabilities, hypotonia and cranio-facial dysmorphism are the cardinal characteristics ...
Mesenchymal niche cells may drive tissue failure and malignant transformation in the hematopoietic s...
AIMS: Down Syndrome (DS), a genetic disease caused by a triplication of chromosome 21, is characteri...
Trisomy of human chromosome 21 (Hsa21) results in Down syndrome (DS), a disorder that affects many a...
Background: Pathological angiogenesis represents a critical issue in the progression of many disease...
Summary: C57BL/6N (N) and C57BL/6J (J) mice possess key genetic differences, including a deletion in...
In addition to nervous system, cardiovascular and respiratory systems are primarily affected in Down...
AbstractDown Syndrome is the most common chromosomal disease and is also known for its decreased inc...
Several studies support the implication of oxidative stress (OS) in phenotypical alterations of Down...
Stem cells are central to the development and maintenance of many tissues. This is due to their capa...
AbstractIndividuals with Down syndrome (DS) have high levels of oxidative stress throughout the life...
We previously demonstrated that an integrated XIST transgene can broadly repress one chromosome 21 i...
AbstractStem cells are central to the development and maintenance of many tissues. This is due to th...
markdownabstractHematopoietic stem and progenitor cells (HSPC) proliferate and differentiate to prov...
Diverse ‘-omics’ technologies permit the comprehensive quantitative profiling of a variety of biolog...
Intellectual disabilities, hypotonia and cranio-facial dysmorphism are the cardinal characteristics ...
Mesenchymal niche cells may drive tissue failure and malignant transformation in the hematopoietic s...
AIMS: Down Syndrome (DS), a genetic disease caused by a triplication of chromosome 21, is characteri...
Trisomy of human chromosome 21 (Hsa21) results in Down syndrome (DS), a disorder that affects many a...
Background: Pathological angiogenesis represents a critical issue in the progression of many disease...
Summary: C57BL/6N (N) and C57BL/6J (J) mice possess key genetic differences, including a deletion in...
In addition to nervous system, cardiovascular and respiratory systems are primarily affected in Down...
AbstractDown Syndrome is the most common chromosomal disease and is also known for its decreased inc...
Several studies support the implication of oxidative stress (OS) in phenotypical alterations of Down...
Stem cells are central to the development and maintenance of many tissues. This is due to their capa...
AbstractIndividuals with Down syndrome (DS) have high levels of oxidative stress throughout the life...
We previously demonstrated that an integrated XIST transgene can broadly repress one chromosome 21 i...
AbstractStem cells are central to the development and maintenance of many tissues. This is due to th...
markdownabstractHematopoietic stem and progenitor cells (HSPC) proliferate and differentiate to prov...
Diverse ‘-omics’ technologies permit the comprehensive quantitative profiling of a variety of biolog...
Intellectual disabilities, hypotonia and cranio-facial dysmorphism are the cardinal characteristics ...
Mesenchymal niche cells may drive tissue failure and malignant transformation in the hematopoietic s...