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期刊文献
Development of Spinal Cord Neurons in Delicate Balance
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Development of Spinal Cord Neurons in Delicate Balance
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基本信息
引用文献
相关文献
引用格式
作者
Caitlin Sedwick[1]
作者单位
[1]Freelance Science Writer, San Diego, California, United States of America
关键词
Mesoderm,Spinal cord,Wnt signaling cascade,Embryonic stem cells,Fibroblast growth factor,Neuronal differentiation,Stem cells,Muscle differentiation
关键词译文
Mesoderm,Spinal cord,Wnt signaling cascade,Embryonic stem cells,Fibroblast growth factor,Neuronal differentiation,Stem cells,Muscle differentiation
DOI
10.1371/journal.pbio.1001938
来源信息
PLOS Biology
ISSN:1545-7885, 2014年, August卷
摘要
摘要译文
In Vitro Generation of Neuromesodermal Progenitors Reveals Distinct Roles for Wnt Signalling in the Specification of Spinal Cord and Paraxial Mesoderm Identity
In Vitro Generation of Neuromesodermal Progenitors Reveals Distinct Roles for Wnt Signalling in the Specification of Spinal Cord and Paraxial Mesoderm Identity
Niche-Independent Symmetrical Self-Renewal of a Mammalian Tissue Stem Cell
Niche-Independent Symmetrical Self-Renewal of a Mammalian Tissue Stem Cell
Epigenetic memory via concordant DNA methylation is inversely correlated to developmental potential of mammalian cells
Epigenetic memory via concordant DNA methylation is inversely correlated to developmental potential of mammalian cells
Prion Replication Occurs in Endogenous Adult Neural Stem Cells and Alters Their Neuronal Fate: Involvement of Endogenous Neural Stem Cells in Prion Diseases
Prion Replication Occurs in Endogenous Adult Neural Stem Cells and Alters Their Neuronal Fate: Involvement of Endogenous Neural Stem Cells in Prion Diseases
DIFFERENTIATION OF ADULT CANINE BONE MARROW STEM CELLS INTO NEURONS
DIFFERENTIATION OF ADULT CANINE BONE MARROW STEM CELLS INTO NEURONS
Making Human Neurons from Stem Cells after Spinal Cord Injury
Making Human Neurons from Stem Cells after Spinal Cord Injury
The Timing of Differentiation of Adult Hippocampal Neurons Is Crucial for Spatial Memory
The Timing of Differentiation of Adult Hippocampal Neurons Is Crucial for Spatial Memory
Different congenital hydrocephalus–associated mutations in Trim71 impair stem cell differentiation via distinct gain-of-function mechanisms
Different congenital hydrocephalus–associated mutations in Trim71 impair stem cell differentiation via distinct gain-of-function mechanisms
A coordinated DNA damage response promotes adult quiescent neural stem cell activation
A coordinated DNA damage response promotes adult quiescent neural stem cell activation
Coordinated Regulation of Niche and Stem Cell Precursors by Hormonal Signaling
Coordinated Regulation of Niche and Stem Cell Precursors by Hormonal Signaling
Caitlin Sedwick[1]. Development of Spinal Cord Neurons in Delicate Balance[J]. PLOS Biology, 2014,August