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Impairment of circulating endothelial progenitors in Down syndrome
Valerio Costa1, Linda Sommese, Amelia Casamassimi
1Institute of Genetics and Biophysics A, Buzzati-Traverso, IGB-CNR, Naples, Italy.
Background:
Pathological angiogenesis represents a critical issue in the progression of many diseases. Down syndrome is postulated to be a systemic anti-angiogenesis disease model, possibly due to increased expression of anti-angiogenic regulators on chromosome 21. The aim of our study was to elucidate some features of circulating endothelial progenitor cells in the context of this syndrome.
Methods:
Circulating endothelial progenitors of Down syndrome affected individuals were isolated, in vitro cultured and analyzed by confocal and transmission electron microscopy. ELISA was performed to measure SDF-1α plasma levels in Down syndrome and euploid individuals. Moreover, qRT-PCR was used to quantify expression levels of CXCL12 gene and of its receptor in progenitor cells. The functional impairment of Down progenitors was evaluated through their susceptibility to hydroperoxide-induced oxidative stress with BODIPY assay and the major vulnerability to the infection with human pathogens. The differential expression of crucial genes in Down progenitor cells was evaluated by microarray analysis.
Results:
We detected a marked decrease of progenitors' number in young Down individuals compared to euploid, cell size increase and some major detrimental morphological changes. Moreover, Down syndrome patients also exhibited decreased SDF-1α plasma levels and their progenitors had a reduced expression of SDF-1α encoding gene and of its membrane receptor. We further demonstrated that their progenitor cells are more susceptible to hydroperoxide-induced oxidative stress and infection with Bartonella henselae. Further, we observed that most of the differentially expressed genes belong to angiogenesis, immune response and inflammation pathways, and that infected progenitors with trisomy 21 have a more pronounced perturbation of immune response genes than infected euploid cells.
Conclusions:
Our data provide evidences for a reduced number and altered morphology of endothelial progenitor cells in Down syndrome, also showing the higher susceptibility to oxidative stress and to pathogen infection compared to euploid cells, thereby confirming the angiogenesis and immune response deficit observed in Down syndrome individuals.
Insights
Endothelial progenitor cells are fewer and altered in Down syndrome, showing increased susceptibility to oxidative stress and infection. This confirms an angiogenesis and immune response deficit in individuals with Down syndrome.
Area of Science:
- Cell Biology
- Genetics
- Immunology
Background:
- Pathological angiogenesis is a critical factor in disease progression.
- Down syndrome is theorized as an anti-angiogenesis model due to chromosome 21 gene expression.
- Investigating endothelial progenitor cells in Down syndrome is crucial.
Purpose of the Study:
- To elucidate features of circulating endothelial progenitor cells in Down syndrome.
- To analyze the number, morphology, and function of these cells.
- To understand the implications for angiogenesis and immune response.
Main Methods:
- Isolation and in vitro culture of endothelial progenitor cells from Down syndrome and euploid individuals.
- Confocal and transmission electron microscopy for morphological analysis.
- ELISA, qRT-PCR, and microarray analysis for gene expression and plasma levels.
- Functional assays for oxidative stress and pathogen infection susceptibility.
Main Results:
- Reduced progenitor cell numbers and increased cell size in young Down syndrome individuals.
- Decreased SDF-1α plasma levels and reduced gene/receptor expression in Down syndrome progenitors.
- Higher susceptibility to oxidative stress and Bartonella henselae infection in Down syndrome progenitors.
- Differentially expressed genes in Down syndrome progenitors are linked to angiogenesis, immune response, and inflammation.
Conclusions:
- Down syndrome is characterized by a reduced number and altered morphology of endothelial progenitor cells.
- These cells exhibit increased susceptibility to oxidative stress and pathogen infection.
- Findings confirm an angiogenesis and immune response deficit in Down syndrome individuals.
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