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Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells.

Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells. Research Abstract Details 

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  • Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells. Abstract Text:

    s j morrisonS J Morrison,p m whiteP M White,c zockC Zock,d j andersonD J Anderson,

    Multipotent and self-renewing neural stem cells have been isolated in culture, but equivalent cells have not yet been prospectively identified in neural tissue. Using cell surface markers and flow cytometry, we have isolated neural crest stem cells (NCSCs) from mammalian fetal peripheral nerve. These cells are phenotypically and functionally indistinguishable from NCSCs previously isolated by culturing embryonic neural tube explants. Moreover, in vivo BrdU labeling indicates that these stem cells self-renew in vivo. NCSCs freshly isolated from nerve tissue can be directly transplanted in vivo, where they generate both neurons and glia. These data indicate that neural stem cells persist in peripheral nerve into late gestation by undergoing self-renewal. Such persistence may explain the origins of some PNS tumors in humans.

    Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells. Publishing Authors By Initials

    sj morrisonSJ Morrison,pm whitePM White,c zockC Zock,dj andersonDJ Anderson,

    For similar peptides: intercellular signaling peptides and proteins: cytokines: transforming growth factor beta research abstracts see: peptides: intercellular signaling peptides and proteins: cytokines: transforming growth factor beta research

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    Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells. Journal Published:

    PUBLICATION TYPE: Research Support, U.S. Gov't,

    Journal: Cell

    VOLUME: 96

    Page Numbers: 737-49

    Journal Abbreviation: Cell

    ISSN: 0092-8674

    DAY: 5

    MONTH: Mar

    YEAR: 1999

    Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 413066

    Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells. Keywords Mesh Terms:

    KEYWORDS: Transforming Growth Factor beta

    MESH TERMS: drug effects

    Chemical & Substance for Abstract: Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells. Information

    Substance Name: bone morphogenetic protein 2

    Registry Number: 0

    Grant and Affiliation Information for Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells.

    AFFILIATION: Division of Biology 216-76, California Institute of Technology, Pasadena 91125, USA.

    Country: UNITED STATES

    UNITED STATES Research PublicationUNITED STATES Research Publication

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    MEDLINETA: Cell

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    Prospective identification, isolation by flow cytometry, and in vivo self-renewal of multipotent mammalian neural crest stem cells Related Publications

     

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