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J Exp Med ; 200(2): 123-35, 2004 Jul 19.
Article de Anglais | MEDLINE | ID: mdl-15263023

RÉSUMÉ

Here a new, intrinsically pluripotent, CD45-negative population from human cord blood, termed unrestricted somatic stem cells (USSCs) is described. This rare population grows adherently and can be expanded to 10(15) cells without losing pluripotency. In vitro USSCs showed homogeneous differentiation into osteoblasts, chondroblasts, adipocytes, and hematopoietic and neural cells including astrocytes and neurons that express neurofilament, sodium channel protein, and various neurotransmitter phenotypes. Stereotactic implantation of USSCs into intact adult rat brain revealed that human Tau-positive cells persisted for up to 3 mo and showed migratory activity and a typical neuron-like morphology. In vivo differentiation of USSCs along mesodermal and endodermal pathways was demonstrated in animal models. Bony reconstitution was observed after transplantation of USSC-loaded calcium phosphate cylinders in nude rat femurs. Chondrogenesis occurred after transplanting cell-loaded gelfoam sponges into nude mice. Transplantation of USSCs in a noninjury model, the preimmune fetal sheep, resulted in up to 5% human hematopoietic engraftment. More than 20% albumin-producing human parenchymal hepatic cells with absence of cell fusion and substantial numbers of human cardiomyocytes in both atria and ventricles of the sheep heart were detected many months after USSC transplantation. No tumor formation was observed in any of these animals.


Sujet(s)
Lignée cellulaire , Sang foetal/cytologie , Placenta/vascularisation , Cellules souches/cytologie , Adipocytes/cytologie , Albumines/métabolisme , Animaux , Technique de Western , Os et tissu osseux/cytologie , Techniques de culture cellulaire , Différenciation cellulaire , Division cellulaire , Transplantation cellulaire , Transplantation de cellules souches de sang du cordon , Fémur/métabolisme , Cytométrie en flux , Régulation de l'expression des gènes au cours du développement , Cellules souches hématopoïétiques/cytologie , Hippocampe/cytologie , Humains , Immunophénotypage , Antigènes CD45/biosynthèse , Agranulocytes/métabolisme , Myocarde/cytologie , Myocytes cardiaques/métabolisme , Agents neuromédiateurs , Ostéoblastes/métabolisme , Phénotype , Réaction de polymérisation en chaîne , Rats , Rat Wistar , RT-PCR , Ovis , Facteurs temps , Veines ombilicales
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