Multipotent cells can be generated in vitro from several adult human organs (heart, liver, and bone marrow)

Author:

Beltrami Antonio P.1,Cesselli Daniela1,Bergamin Natascha1,Marcon Patrizia1,Rigo Silvia1,Puppato Elisa1,D'Aurizio Federica1,Verardo Roberto2,Piazza Silvano2,Pignatelli Angela3,Poz Alessandra1,Baccarani Umberto1,Damiani Daniela1,Fanin Renato1,Mariuzzi Laura1,Finato Nicoletta1,Masolini Paola1,Burelli Silvia1,Belluzzi Ottorino3,Schneider Claudio2,Beltrami Carlo A.1

Affiliation:

1. Centro Interdipartimentale Medicina Rigenerativa (CIME), University of Udine, Udine;

2. Laboratorio Internazionale Consorzio Interuniversitario Biotecnologie (LNCIB), Trieste; and

3. Dipartimento Biologia, Sezione di Fisiologia e Biofisica–Centro di Neuroscienze, Universita di Ferrara, Ferrara, Italy

Abstract

Abstract The aims of our study were to verify whether it was possible to generate in vitro, from different adult human tissues, a population of cells that behaved, in culture, as multipotent stem cells and if these latter shared common properties. To this purpose, we grew and cloned finite cell lines obtained from adult human liver, heart, and bone marrow and named them human multipotent adult stem cells (hMASCs). Cloned hMASCs, obtained from the 3 different tissues, expressed the pluripotent state–specific transcription factors Oct-4, NANOG, and REX1, displayed telomerase activity, and exhibited a wide range of differentiation potential, as shown both at a morphologic and functional level. hMASCs maintained a human diploid DNA content, and shared a common gene expression signature, compared with several somatic cell lines and irrespectively of the tissue of isolation. In particular, the pathways regulating stem cell self-renewal/maintenance, such as Wnt, Hedgehog, and Notch, were transcriptionally active. Our findings demonstrate that we have optimized an in vitro protocol to generate and expand cells from multiple organs that could be induced to acquire morphologic and functional features of mature cells even embryologically not related to the tissue of origin.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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