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推荐一本书籍:Embryonic Stem Cells - Differentiation and Pluripotent Alternatives(胚胎干细胞:分化和多能性选择)- X: n2 ~: r% ^
Edited by: Michael S. Kallos
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1 ^6 `+ E- `8 K5 _ISBN 978-953-307-632-4, Hard cover, 506 pages
4 M5 T0 o: G4 h `! f% J! i1 qPublisher: InTech( q# ~' H+ m& v4 W/ O! H
Publication date: October 2011) w" O H+ S1 U( c
Subject: Stem Cell Research
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The ultimate clinical implementation of embryonic stem cells will require methods and protocols to turn these unspecialized cells into the fully functioning cell types found in a wide variety of tissues and organs. In order to achieve this, it is necessary to clearly understand the signals and cues that direct embryonic stem cell differentiation. This book provides a snapshot of current research on the differentiation of embryonic stem cells to a wide variety of cell types, including neural, cardiac, endothelial, osteogenic, and hepatic cells. In addition, induced pluripotent stem cells and other pluripotent stem cell sources are described. The book will serve as a valuable resource for engineers, scientists, and clinicians as well as students in a wide range of disciplines.
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Table of Contents(目录)1 Z& K2 d2 [8 a/ P, I
7 Z, ~3 l# M; K3 ?/ IRole of Signaling Pathways and Epigenetic Factors in Lineage Determination During Human Embryonic Stem Cell Differentiation
1 q# c" F% }6 b" K1 a( EBioactive Lipids in Stem Cell Differentiation* q1 O% P' [- Q" ^# A- h
Retinoid Signaling is a Context-Dependent Regulator of Embryonic Stem Cells
4 J4 F- E8 G2 O0 ^: P3 @Pluripotent Stem Cells as an In Vitro Model of Neuronal Differentiation
" d& i9 B3 Q& B8 p/ F" QCharacterization of Embryonic Stem (ES) Neuronal Differentiation Combining Atomic Force, Confocal and DIC Microscopy Imaging
/ }. q5 L* h: E" x) E6 uOligodendrocyte Fate Determination in Human Embryonic Stem Cells
5 X. K( e9 G/ Z1 C1 H9 ?Stem-Cell Therapy for Retinal Diseases: V0 {" g! n, x$ [+ p* }
Transcriptional Networks of Embryonic Stem Cell-Derived Cardiomyogenesis
. _& l! U: G9 V, v2 T9 SHuman Pluripotent Stem Cells in Cardiovascular Research and Regenerative Medicine
$ q# W! u" D% a( B3 U% T9 ?3 p! ZHuman Pluripotent Stem Cell-Derived Cardiomyocytes: Maturity and Electrophysiology
) \( x: f" i" a+ N, V$ X. QMaintenance Of Calcium Homeostasis in Embryonic Stem Cell-Derived Cardiomyocytes
, E' N. a/ U- u; {; { nMyogenic Differentiation of ES Cells for Therapies in Neuromuscular Diseases: Progress to Date
: J' k9 p2 o, P; ADissecting the Signal Transduction Pathway that Directs Endothelial Differentiation Using Embryonic Stem Cell-Derived Vascular Progenitor Cells
$ \7 x% |+ t% F; i3 u% w) bEndothelial Differentiation of Embryonic Stem Cells. ?5 ~7 ^ f3 F, t' O2 y
Stem Cells for HUMAN Hepatic Tissue Engineering" N3 c5 T' }3 o, [8 H$ |# z
Hepatic Differentiation of Human Embryonic and Induced Pluripotent Stem Cells for Regenerative Medicine
$ W# _9 Y" ~# F* IOsteogenesis from Pluripotent Stem Cells: Neural Crest or Mesodermal Origin?* `8 |4 C7 f7 u+ u
The Past, Present and Future of Induced Pluripotent Stem Cells$ W' }; z+ S) V0 h- p6 X# K
New Techniques in the Generation of Induced Pluripotent Stem Cells# A* z0 q* m" D) y# N4 p7 l! u
Generation of ICM-Type Human iPS Cells from CD34+ Cord Blood Cells
4 D7 C5 r6 I |; A3 fModelling of Neurological Diseases Using Induced Pluripotent Stem Cells; c+ X0 q8 h% X6 [+ j$ e/ X$ m
Very Small Embryonic/Epiblast-Like Stem Cells (VSELs) Residing in Adult Tissues and Their Role in Tissue Rejuvenation and Regeneration, I+ B; b! E6 Z8 K# n/ ~
Multipotent Dental Stem Cells: An Alternative Adult Derived Stem Cell Source for Regenerative Medicine
) s( W z% a3 y! g+ h7 FPluripotent Stem Cells from Testis
D8 E' U* E5 Z* N* V7 @Amniotic Fluid Stem Cells: M- Z. t8 d/ {: j& b! L
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