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Titlebook: Neural Stem Cells; Methods and Protocol Tanja Zigova,Paul R. Sanberg,Juan R. Sanchez-Ramos Book 20021st edition Springer Science+Business M

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书目名称Neural Stem Cells
副标题Methods and Protocol
编辑Tanja Zigova,Paul R. Sanberg,Juan R. Sanchez-Ramos
视频videohttp://file.papertrans.cn/664/663747/663747.mp4
概述Includes supplementary material:
丛书名称Methods in Molecular Biology
图书封面Titlebook: Neural Stem Cells; Methods and Protocol Tanja Zigova,Paul R. Sanberg,Juan R. Sanchez-Ramos Book 20021st edition Springer Science+Business M
描述Over the last decade, neural stem cell research has provided penetrating insights into the plasticity and regenerative potential of the brain. Stem cells have been isolated from embryonic as well as adult central nervous system (CNS). Many non-CNS mammalian tissues also contain stem cells with a more limited repertoire: the replacement of tissue-specific cells throughout the li- time of the organism. Progress has been made in understanding fundamental stem cell properties that depend on the interplay of extrinsic signaling factors with intrinsic genetic programs within critical time frames. With this growing knowledge, scientists have been able to change a neural stem cell’s fate. - der certain conditions, neural stem cells have been induced to differentiate into cells outside the expected neural lineage and conversely, stem cells from nonneural tissue have been shown to transdifferentiate into cells with distinct neural phenotypes. At the moment, there is an accelerated effort to identify a readily ava- able, socially acceptable stem cell that can be induced to proliferate in an und- ferentiated state and that can be manipulated at will to generate diverse cells types. We are on t
出版日期Book 20021st edition
版次1
doihttps://doi.org/10.1385/1592591868
isbn_ebook978-1-59259-186-2Series ISSN 1064-3745 Series E-ISSN 1940-6029
issn_series 1064-3745
copyrightSpringer Science+Business Media New York 2002
The information of publication is updating

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Seeding Neural Stem Cells on Scaffolds of PGA, PLA, and Their Copolymersir degradation can be controlled through the ratio of glycolic acid to lactic acid subunits, and the polymers have already been approved for use in a number of applications by the FDA. Furthermore, recent research has shown this family of polymers to be biocompatible in the brain (.) and spinal cord
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Book 20021st editionte into cells with distinct neural phenotypes. At the moment, there is an accelerated effort to identify a readily ava- able, socially acceptable stem cell that can be induced to proliferate in an und- ferentiated state and that can be manipulated at will to generate diverse cells types. We are on t
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Seung U. Kim,Eiji Nakagawa,Kozo Hatori,Atsushi Nagai,Myung A. Lee,Jung H. Bang
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Neural Differentiation of Embryonic Stem Cells well as a useful model to study patterns of differentiation and gene expression during the very early development of the mammalian embryo (.). Embryonic stem cells are derived from the blastocyst inner cell mass (.,.), and remain totipotent when grown on the surface of embryonic fibroblasts or on g
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Isolation of Stem and Precursor Cells from Fetal Tissue stem cells generate more restricted precursor cells, which go through additional stages of differentiation to generate fully differentiated progeny (.). Precursor cells at each stage of differentiation can be distinguished from each other on the basis of cytokine dependence, functional properties,
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