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本帖最后由 细胞海洋 于 2013-5-6 09:48 编辑 1 ~* c, B' s7 d: H+ n4 w, O
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Trends Cell Signaling Pathways Neuronal Fate Decision 2 V' c; S* R' x: y
Edited by Sabine Wislet-Gendebien
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Contents
6 _$ y3 C3 L% J( tPreface VII% b- L2 ~, l% |
Section 1 TGF-Beta Signaling and Neuronal Fate Decision 1
8 E# a0 o {" R/ aChapter 1 Role of TGF-β Signaling in Neurogenic Regions After9 I" p. D& i8 @" F
Brain Injury 3
; {# R$ a5 J( H# {0 G* q d4 vSonia Villapol, Trevor T. Logan and Aviva J. Symes8 k0 I5 u& s" j2 [% H' b! f
Chapter 2 Insulin/IGF-Signalling in Embryonic and Adult Neural
! F% D9 j, u) }" b4 A+ `; ?8 a& sProliferation and Differentiation in the Mammalian Central1 a7 s* t7 M& S
Nervous System 379 s0 d I8 G$ k& Q2 n
Tanja Vogel
6 H4 O6 O b WChapter 3 The Role of Smad Proteins for Development, Differentiation
" p* K. k+ ^8 L2 _7 c' yand Dedifferentiation of Neurons 75
! |# }1 h# z+ e4 z# A o" xUwe Ueberham and Thomas Arendt1 u+ u1 ^$ S# X( q6 e
Section 2 Wnt Signaling and Neuronal Fate Decision 113/ a4 h6 j+ _+ Q; o
Chapter 4 Wnt Signaling Roles on the Structure and Function of the" {9 p: m+ L, i. \4 h, p
Central Synapses: Involvement in Alzheimer’s Disease 115, D! x, |# c9 z7 _3 z
Nibaldo C. Inestrosa and Lorena Varela-Nallar
; E3 X- p+ k8 S' K$ F& G* t- c4 wChapter 5 Roles of Wnt/β-Catenin Signaling in Controlling the+ u5 L G. {( t, `9 K' d' p, Y
Dopaminergic Neuronal Cell Commitment of Midbrain and% W, }) P; p0 F; V
Therapeutic Application for Parkinson’s Disease 141. j" d {, a6 c2 `2 [$ e, t5 \
Liang-Wei Chen4 Y R& ^% s( k
Chapter 6 Regulation of Cell Fate in the Brain by GSK3 153/ _0 o% v, \3 `
Adam R. Cole# F0 T' S5 o/ U
Section 3 Neurotrophin and Neuronal Fate Decision 179
( Z) j! @# q7 w* [8 c1 RChapter 7 Neurotrophin Signaling and Alzheimer’s Disease
% w8 ~' z" p1 l/ @+ q2 C q1 qNeurodegeneration − Focus on BDNF/TrkB Signaling 181
1 t( q: d) p7 M! a2 n! wJenny Wong
5 j9 o. S6 G# d9 K1 `$ E( G nSection 4 NF-K-b and Neuronal Fate Decision 195
% \6 [4 Y4 ?) W9 \4 VChapter 8 NFκB Signaling Directs Neuronal Fate Decision 197. p ?) u# y; n x t3 {( I0 X
Yonggang Zhang and Wenhui Hu
9 l% J% S% ~4 n) ?, O1 u' xSection 5 Stem Cells and Signaling Pathways 215' j) n( I' e, Y* Z) E
Chapter 9 Telencephalic Neurogenesis Versus Telencephalic: y1 \# H a/ d
Differentiation of Pluripotent Stem Cells 217
2 W" n1 U* l% d f2 BRoxana Nat, Galina Apostolova and Georg Dechant
: w7 U3 ~& f- L! ^- o6 O1 B: ZChapter 10 Regulation of Basal and Injury-Induced Fate Decisions of Adult) K1 i7 y* i+ Y3 \3 d9 f
Neural Precursor Cells: Focus on SOCS2 and Related Signalling
: W0 P: `3 l; ^Pathways 241
& Q2 _; P8 L& [) _7 y/ gHarleen S. Basrai, Kimberly J. Christie and Ann M. Turnley
2 c0 W1 E% u) ^Chapter 11 Neural Stem/Progenitor Cells for Spinal Cord+ l( Y+ U$ {9 ?5 L1 S9 D& N! e
Regeneration 2715 ^$ f. H- t5 I( W. q# I$ `
Ryan Salewski, Hamideh Emrani and Michael G. Fehlings
; u4 U& y$ {" G% CChapter 12 Epigenetic Regulation of Neural Differentiation from: a+ |! N- F/ [5 s
Embryonic Stem Cells 3052 C8 l0 m% l, W3 m M
Atsushi Shimomura and Eri Hashino
, l& l0 J6 \0 E0 Q3 A# \/ CChapter 13 Neural Fate of Mesenchymal Stem Cells and Neural Crest Stem
: R. k# H8 e( T) gCells: Which Ways to Get Neurons for Cell Therapy
$ D" N/ s$ T* ^4 pPurpose? 327
3 Y1 N+ q. G# V$ `Virginie Neirinckx, Cécile Coste, Bernard Rogister and Sabine Wislet-
7 _0 u7 B. N2 @% E$ aGendebien
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