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本帖最后由 细胞海洋 于 2013-5-6 09:48 编辑
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Trends Cell Signaling Pathways Neuronal Fate Decision
; }$ u! A4 |1 |Edited by Sabine Wislet-Gendebien0 {, n1 Q! j4 a( y& i# m/ a
$ U" O5 N; d& D% J) e5 DContents
' A) j- ^; H/ a1 {, ?+ n( gPreface VII# ^7 j f% Y5 C7 G" `
Section 1 TGF-Beta Signaling and Neuronal Fate Decision 14 R) H$ l8 j$ E
Chapter 1 Role of TGF-β Signaling in Neurogenic Regions After
6 c5 I' A. k5 ~; ^1 [Brain Injury 3
6 I5 G, D6 `/ u, ZSonia Villapol, Trevor T. Logan and Aviva J. Symes. }+ F( G# p" n) P
Chapter 2 Insulin/IGF-Signalling in Embryonic and Adult Neural- z6 D1 T* d7 Q' q0 e
Proliferation and Differentiation in the Mammalian Central
) j& y I: U, ?( VNervous System 37
+ B& n0 I: t( y9 O) F( sTanja Vogel
! y) C2 f) l1 J- B8 s# aChapter 3 The Role of Smad Proteins for Development, Differentiation8 ]: a: B- L) M) @8 t
and Dedifferentiation of Neurons 75' I4 d% x2 _+ \2 h' ^# a: q, l
Uwe Ueberham and Thomas Arendt& M. E5 Y9 f* d! P2 r5 w. [
Section 2 Wnt Signaling and Neuronal Fate Decision 113
& S7 l4 R4 v% B# o1 l* l( RChapter 4 Wnt Signaling Roles on the Structure and Function of the
2 _ R( p' V/ \& B9 RCentral Synapses: Involvement in Alzheimer’s Disease 115- N) d' Z1 ^4 Z9 b
Nibaldo C. Inestrosa and Lorena Varela-Nallar( f; o6 v1 M, o0 ?3 K2 H6 b' n
Chapter 5 Roles of Wnt/β-Catenin Signaling in Controlling the# F% |4 b v8 i3 F. f9 E: Z) ]. r+ T
Dopaminergic Neuronal Cell Commitment of Midbrain and$ P7 M6 k2 n1 d% E6 \: b% s
Therapeutic Application for Parkinson’s Disease 141- Q$ Q9 s k4 q8 R3 r" N
Liang-Wei Chen
1 v& r! [8 S- IChapter 6 Regulation of Cell Fate in the Brain by GSK3 153
2 n' e* i! I- c J) PAdam R. Cole# ?, g5 e: D1 o- g
Section 3 Neurotrophin and Neuronal Fate Decision 179
) _, j# Z3 w0 DChapter 7 Neurotrophin Signaling and Alzheimer’s Disease
6 |, g! F4 }& ^5 i6 mNeurodegeneration − Focus on BDNF/TrkB Signaling 181
; T' A+ I3 M: NJenny Wong8 e. V! P3 l# {% h, W2 P- R$ V
Section 4 NF-K-b and Neuronal Fate Decision 195
8 R3 h9 p; w" k+ F+ V$ O' }2 E3 hChapter 8 NFκB Signaling Directs Neuronal Fate Decision 197
* f3 i( }' g" O2 i1 k, x" A. r8 VYonggang Zhang and Wenhui Hu* G% }- t0 C: J- G* V
Section 5 Stem Cells and Signaling Pathways 2156 [6 N9 [- _% g$ e6 a( |
Chapter 9 Telencephalic Neurogenesis Versus Telencephalic( ]1 ~: q' e! ]; |. J# n5 w; @, d
Differentiation of Pluripotent Stem Cells 217" m1 S. @; W) l, _$ [
Roxana Nat, Galina Apostolova and Georg Dechant
0 Q0 P$ G4 u! A$ N) NChapter 10 Regulation of Basal and Injury-Induced Fate Decisions of Adult/ d! h, N2 w! B( j6 a8 B
Neural Precursor Cells: Focus on SOCS2 and Related Signalling; j/ J9 L. Y2 P! N1 ?9 c2 v
Pathways 2417 Y, t% ^6 [( k2 J0 [0 c4 K/ i
Harleen S. Basrai, Kimberly J. Christie and Ann M. Turnley7 X3 }. c3 A s3 s( o/ P
Chapter 11 Neural Stem/Progenitor Cells for Spinal Cord
# W# ^0 H( h, U4 BRegeneration 2719 L; U8 A& i& R5 y- y6 ~
Ryan Salewski, Hamideh Emrani and Michael G. Fehlings
- y, d: h' Q, P/ r zChapter 12 Epigenetic Regulation of Neural Differentiation from8 ]/ ^( D5 x- r' Z7 @4 p' N
Embryonic Stem Cells 305
; s* o. C* l( T* {( f; M( ^) V/ qAtsushi Shimomura and Eri Hashino
1 P5 g: ^, l3 M v; E$ B# EChapter 13 Neural Fate of Mesenchymal Stem Cells and Neural Crest Stem
~- V. ?& v& }Cells: Which Ways to Get Neurons for Cell Therapy+ [6 O8 \ X% ^4 N6 i9 [3 F
Purpose? 327, i! h: a3 p/ w* ~4 L9 r
Virginie Neirinckx, Cécile Coste, Bernard Rogister and Sabine Wislet-
I" u: V; S( Z( D5 f0 iGendebien' ?) q1 X2 m# r: _
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