Literature DB >> 16293577

Identification of a primitive brain-derived neural stem cell population based on aldehyde dehydrogenase activity.

Stefania Corti1, Federica Locatelli, Dimitra Papadimitriou, Chiara Donadoni, Sabrina Salani, Roberto Del Bo, Sandra Strazzer, Nereo Bresolin, Giacomo P Comi.   

Abstract

Stem cells are undifferentiated cells defined by their ability to self-renew and differentiate to progenitors and terminally differentiated cells. Stem cells have been isolated from almost all tissues, and an emerging idea is that they share common characteristics such as the presence of ATP-binding cassette transporter G2 and high telomerase and aldehyde dehydrogenase (ALDH) activity, raising the hypothesis of a set of universal stem cell markers. In the present study, we describe the isolation of primitive neural stem cells (NSCs) from adult and embryonic murine neurospheres and dissociated tissue, based on the expression of high levels of ALDH activity. Single-cell suspension was stained with a fluorescent ALDH substrate termed Aldefluor and then analyzed by flow cytometry. A population of cells with low side scatter (SSC(lo)) and bright ALDH (ALDH(br)) activity was isolated. SSC(lo)ALDH(br) cells are capable of self-renewal and are able to generate new neurospheres and neuroepithelial stem-like cells. Furthermore, these cells are multipotent, differentiating both in neurons and macroglia, as determined by immunocytochemistry and real-time reverse transcription-polymerase chain reaction analysis. To evaluate the engraftment potential of SSC(lo)ALDH(br) cells in vivo, we transplanted them into mouse brain. Donor-derived neurons with mature morphology were detected in the cortex and subcortical areas, demonstrating the capacity of this cell population to differentiate appropriately in vivo. The ALDH expression assay is an effective method for direct identification of NSCs, and improvement of the stem cell isolation protocol may be useful in the development of a cell-mediated therapeutic strategy for neurodegenerative diseases.

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Year:  2005        PMID: 16293577     DOI: 10.1634/stemcells.2005-0217

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  109 in total

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Review 2.  The role of human aldehyde dehydrogenase in normal and cancer stem cells.

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3.  A novel method to derive and expand mice neural stem cells efficiently without neuro-sphere formation.

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4.  Aldehyde dehydrogenases in cancer stem cells: potential as therapeutic targets.

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5.  Endothelial cell-initiated signaling promotes the survival and self-renewal of cancer stem cells.

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7.  Aldehyde dehydrogenase activity identifies a population of human skeletal muscle cells with high myogenic capacities.

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Review 8.  Epigenetic programming of mesenchymal stem cells from human adipose tissue.

Authors:  Andrew C Boquest; Agate Noer; Philippe Collas
Journal:  Stem Cell Rev       Date:  2006       Impact factor: 5.739

9.  Distinct expression patterns and roles of aldehyde dehydrogenases in normal oral mucosa keratinocytes: differential inhibitory effects of a pharmacological inhibitor and RNAi-mediated knockdown on cellular phenotype and epithelial morphology.

Authors:  Hiroko Kato; Kenji Izumi; Taro Saito; Hisashi Ohnuki; Michiko Terada; Yoshiro Kawano; Kayoko Nozawa-Inoue; Chikara Saito; Takeyasu Maeda
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10.  Isolation and characterization of centroacinar/terminal ductal progenitor cells in adult mouse pancreas.

Authors:  Meritxell Rovira; Sherri-Gae Scott; Andrew S Liss; Jan Jensen; Sarah P Thayer; Steven D Leach
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