Scinovex
article Open AccessTop 10% cited

Differentiation and expansion of endothelial cells from human bone marrow CD133<sup>+</sup> cells

British Journal of Haematology · 2001 · Vol. 115(1) · pp. 186–194
N. QuiriciDavide SoligoLorenza CanevaFederica ServidaPatrizia BossolascoGiorgio La Nasa

Abstract

We report a method of purifying, characterizing and expanding endothelial cells (ECs) derived from CD133(+) bone marrow cells, a subset of CD34(+) haematopoietic progenitors. Isolated using immunomagnetic sorting (mean purity 90 +/- 5%), the CD133(+) bone marrow cells were grown on fibronectin-coated flasks in M199 medium supplemented with fetal bovine serum (FBS), vascular endothelial growth factor (VEGF), basic fibroblast growth factor (bFGF) and insulin growth factor (IGF-1). The CD133(+) fraction contained 95 +/- 4% CD34(+) cells, 3 +/- 2% cells expressing VEGF receptor (VEGFR-2/KDR), but did not express von Willebrand factor (VWF), VE-cadherin, P1H12 or TE-7. After 3 weeks of culture, the cells formed a monolayer with a typical EC morphology and expanded 11 +/- 5 times. The cells were further purified using Ulex europaeus agglutinin-1 (UEA-1)-fluorescein isothiocyanate (FITC) and anti-FITC microbeads, and expanded with VEGF for a further 3 weeks. All of the cells were CD45(-) and CD14(-), and expressed several endothelial markers (UEA-1, VWF, P1H12, CD105, E-selectin, VCAM-1 and VE-cadherin) and typical Weibel-Palade bodies. They had a high proliferative potential (up to a 2400-fold increase in cell number after 3 weeks of culture) and the capacity to modulate cell surface antigens upon stimulation with inflammatory cytokines. Purified ECs were also co-cultivated with CD34(+) cells, in parallel with a purified fibroblastic cell monolayer. CD34(+) cells (10 x 10(5)) gave rise to 17,951 +/- 2422 CFU-GM colonies when grown on endothelial cells, and to 12,928 +/- 4415 CFU-GM colonies on fibroblast monolayers. The ECs also supported erythroid blast-forming unit (BFU-E) colonies better. These results suggest that bone marrow CD133(+) progenitor cells can give rise to highly purified ECs, which have a high proliferative capacity, can be activated by inflammatory cytokines and are superior to fibroblasts in supporting haematopoiesis. Our data support the hypothesis that endothelial cell progenitors are present in adult bone marrow and may contribute to neo-angiogenesis.

Angiogenesis and VEGF in CancerZebrafish Biomedical Research ApplicationsCongenital heart defects researchCD34Bone marrowBiologyMolecular biologyEndothelial stem cellTrypsinizationProgenitor cellStem cellBasic fibroblast growth factorHaematopoiesis

MeSH terms

AC133 AntigenCell DifferentiationCell SeparationColony-Forming Units AssayEndothelium, VascularFlow CytometryGlycoproteinsHematopoietic Stem CellsHumansImmunohistochemistryMicroscopy, ElectronMicroscopy, Phase-ContrastPeptidesAntigens, CDNeovascularization, Physiologic
Citations
381
FWCI
6.48
field-weighted impact
References
58
Percentile
97%
vs. same field & year
Citations per year
Cited by
Latency and reactivation of human cytomegalovirus
Journal of General Virology · 2006 · 421 citations
Endothelial Progenitor Cells
Arteriosclerosis Thrombosis and Vascular Biology · 2003 · 741 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.