Isolation and Characterization of Multipotent Progenitor Cells from the Bowman’s Capsule of Adult Human Kidneys
Costanza Sagrinati,Giuseppe Stefano Netti,Benedetta Mazzinghi,Elena Lazzeri,Francesco Liotta,Francesca Frosali,Elisa Ronconi,Claudia Meini,Mauro Gacci,Roberta Squecco,Marco Carini,Loreto Gesualdo,Fabio Francini,Enrico Maggi,Francesco Annunziato,Laura Lasagni,Mario Serio,Sergio Romagnani,Paola Romagnani +18 more
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TL;DR: This study demonstrates the existence and provides the characterization of a population of resident multipotent progenitor cells in adult human glomeruli, potentially opening new avenues for the development of regenerative medicine in patients who have renal diseases.
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Abstract: Regenerative medicine represents a critical clinical goal for patients with ESRD, but the identification of renal adult multipotent progenitor cells has remained elusive. It is demonstrated that in human adult kidneys, a subset of parietal epithelial cells (PEC) in the Bowman’s capsule exhibit coexpression of the stem cell markers CD24 and CD133 and of the stem cell–specific transcription factors Oct-4 and BmI-1, in the absence of lineage-specific markers. This CD24 + CD133 + PEC population, which could be purified from cultured capsulated glomeruli, revealed self-renewal potential and a high cloning efficiency. Under appropriate culture conditions, individual clones of CD24 + CD133 + PEC could be induced to generate mature, functional, tubular cells with phenotypic features of proximal and/or distal tubules, osteogenic cells, adipocytes, and cells that exhibited phenotypic and functional features of neuronal cells. The injection of CD24 + CD133 + PEC but not of CD24 − CD133 − renal cells into SCID mice that had acute renal failure resulted in the regeneration of tubular structures of different portions of the nephron. More important, treatment of acute renal failure with CD24 + CD133 + PEC significantly ameliorated the morphologic and functional kidney damage. This study demonstrates the existence and provides the characterization of a population of resident multipotent progenitor cells in adult human glomeruli, potentially opening new avenues for the development of regenerative medicine in patients who have renal diseases.
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Citations
CD133 expression and identification of CD133/nestin positive cells in rhabdomyosarcomas and rhabdomyosarcoma cell lines
Jiri Sana,Iva Staniczková Zambo,Jan Skoda,Jakub Neradil,Petr Chlapek,Markéta Hermanová,Peter Múdry,Alzbeta Vasikova,Karel Zitterbart,Aleš Hampl,Jaroslav Sterba,Renata Veselská +11 more
TL;DR: The co-expression of CD133 and nestin as well as results of the functional assays suggest a possible presence of cancer cells with a stem-like phenotype in these tumors.
PKHhigh cells within clonal human nephrospheres provide a purified adult renal stem cell population
Silvia Bombelli,Maria A. Zipeto,Barbara Torsello,Giorgio Bovo,Vitalba Di Stefano,Cristina Bugarin,Paola Zordan,P Viganò,Giorgio Cattoretti,Guido Strada,Cristina Bianchi,Roberto A. Perego +11 more
TL;DR: The resident adult renal stem cell population isolated from nephrospheres can be used for the study of mechanisms that regulate self-renewal and differentiation in adult renal tissue as well as in renal pathological conditions.
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Role of smooth muscle protein SM22α in glomerular epithelial cell injury.
Caroline B. Marshall,Ron Krofft,Mary Blonski,Jolanta Kowalewska,Christine M. Logar,Jeffrey W. Pippin,Francis Kim,Robert Feil,Charles E. Alpers,Stuart J. Shankland +9 more
TL;DR: It is concluded that the de novo expression of SM22α in glomerular epithelial cells affects the course of crescentic glomerulonephritis, and there was decreased activation of Erk1/2 in diseased SM22 α +/+ mice.
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Ontogeny of the Kidney and Renal Developmental Markers in the Rhesus Monkey (Macaca mulatta)
Cynthia A. Batchelder,Charles C. Lee,Michele L. Martinez,Alice F. Tarantal,Alice F. Tarantal +4 more
TL;DR: These data form the basis for understanding nephrogenesis in the rhesus monkey and will be useful in translational studies that focus on embryonic stem and other progenitor cell populations for renal tissue engineering and repair.
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Stem cell therapy for the kidney
Rachel Zubko,William H. Frishman +1 more
TL;DR: Bone marrow-derived stem cells show promise in regeneration of the kidney, as in stem cell therapy for the heart, and the first phase of clinical trials of bone marrow mesenchymal cells in protection against acute kidney injury may begin shortly.
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