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发表于 2009-10-29 19:08 |只看该作者 |倒序浏览 |打印
A review of gene and stem cell therapy in cutaneous wound healing ) `6 R& h/ I1 z9 E' g
A Stem Cell Niche for Intermediate Progenitor Cells of the Embryonic Cortex ; w( n6 o' Q! W0 f$ M+ q2 z) _6 i
Acute Complications of Stem Cell Transplant 5 r6 _2 ~2 U. v: r6 l$ ]# S) n! V
Adhesion within the stem cell niches
5 k+ A- y4 E8 _% _Allogeneic Stem Cell Transplantation Is Able to Induce Long-Term Remissions in Angioimmunoblastic T-Cell Lymphoma $ e' w3 ^9 X4 L
Beliefs About Science and News Frames in Audience Evaluations of Embryonic and Adult Stem Cell Research
' n) ]" Z7 w& }, e# E; n5 v6 M" w" T8 ~6 jbone-What is the true nature of the osteoblastic hematopoietic stem cell niche
# v. x: ^0 Y* v! m1 K( h1 DApoptosis signaling in cancer stem cells
. @( g% u- Z( h3 \: t, bNonmyeloablative and Reduced-Intensity Conditioning for Allogeneic Hematopoietic Stem Cell Transplantation
3 q$ T& g! h: r4 s/ WRecurrence cancer stem cells ; ~* P6 C" J2 z4 u
Stem cells in melanoma development
7 A/ Z' X! o$ R5 d4 X! s+ E6 l7 MCompetitive Interactions Between Cells
; Y8 i+ q( l8 r# [9 A: eCord blood stem cells for hematopoietic stem cell transplantation in the UK # F+ m! l4 p8 ^. I) x
A chronic 1 year assessment of MRI contrast agent-labelled neural stem cell transplants in stroke * Y" Z; j6 o/ c5 _' ]8 X: ]* q9 V
Cardiac stem-progenitor cells, secreted proteins, and proteomics / ]* V0 Y$ V, O9 l, z6 |
Cardiovascular stem cells in regenerative medicine
. s* E' W+ J- t# i  m+ ?: ZEndogenous stem cells in patients undergoing coronary artery bypass
" M7 F& U# a+ M3 D- |' O7 nEnhancing cardiac stem cell differentiation into cardiomyocytes
6 H' |: x5 D6 M$ \8 Q% t1 UIn Vivo Imaging of Stem Cells and Beta Cells Using Direct Cell Labeling and Reporter Gene Methods ( @2 p; A" }0 J( N
Resident cardiac stem-progenitor cells for cardiac regeneration
: l  Q# u" f6 |0 e+ x7 KS1+ Stem Cell Survival and Engraftment in the Infarcted Heart
- S# C: `' K$ z0 {0 P* ~Stem cell engineering for treatment of heart diseases 4 R( e! E$ m$ D# j$ o
Stem cell therapy in acute myocardial infarction : Z$ y& a5 B' d; n( o6 |! ~( a' G/ c
Stem Cell Therapy Is Proarrhythmic
% Q4 i5 h% p, H, s9 fStem Cell Therapy-A Primer for Interventionalists and Imagers 5 T  \0 A+ n0 M* e
diabetes-Mesenchymal stem cells-Stem cell therapy perspectives for type 1 diabetes
3 s* P. N- L  u6 x6 YEmbryonic stem cells as a model for cardiac development and disease
9 [# z7 `6 j) }Epigenetic dynamics of stem cells and cell lineage commitment 5 P1 K, c6 ~# g$ q" v( [# t4 D& q
Epileptic Spasms After Stem Cell Transplantation for Chronic Epstein-Barr Virus Infection ) @, Q/ r+ \3 {7 g, I2 A
Expanding Indications for Stem Cell Transplantation 7 E6 S1 I1 K0 `* w1 u! R
Fatal nephrotic syndrome complicating allogeneic stem cell transplantation
1 n/ o1 x! }( i( W; `+ WGrowth Factors, Matrices, and Forces Combine and Control Stem Cells
1 M: v% `5 L5 K- W7 {Hematopoietic stem cell origin of adipocytes 0 D1 E, S! v  ~8 m1 e6 t9 k( _' E
Hepatic response after high-dose melphalan and stem cell transplantation in patients with AL amyloidosis ' U+ x, H  C! e3 P1 F
Long-term microcarrier suspension cultures of human embryonic stem cells 0 ]" Z8 D+ x6 y: i* B: g4 {
Microsphere-based tracing and molecular delivery in embryonic stem cells 0 k: m2 E$ K) d
Microspheres as a vehicle for biomolecule delivery to neural stem cells
. K7 @2 a' a* P9 |7 s# b: ?New insights into liver stem cells
  M, B$ l  K! t, u( ~$ @4 ?A NEUROSURGEON'S GUIDE TO STEM CELLS, CANCER STEM CELLS, AND BRAIN TUMOR STEM CELLS
! b4 B* f, [( Z! N4 t, PRegeneration of the ischemic brain by engineered stem cells & x$ w3 f2 S$ x% @& h* r
Stem cell-based cell replacement strategies for the central nervous system
; S" K: ?# E5 K# h, ~+ qPercutaneous intramyocardial stem cell injection in patients with acute myocardial infarction
; X: U1 t% r6 L! b3 _( d) rPeripheral blood stem cell mobilisation by granulocyte-colony stimulating factor in patients with acute and old myocardial infarction + p: ?( i; {; F, P, L! w: f: K
Pluripotent stem cells as new drugs
" R; {1 K: D  `! e- a* Pregenerative-The complexity of cellular dedifferentiation-implications for regenerative medicine # C+ s6 s* D7 G1 l
respir-Cell therapy approaches for lung diseases 5 i* X* N4 \6 `- u
Risk factors for therapy-related myelodysplastic syndrome and acute myeloid leukemia treated with allogeneic stem cell transplantation " {3 ?4 ?  e8 o9 A" @6 [, Y4 {
Role of epigenetics in liver-specific gene transcription, hepatocyte differentiation and stem cell reprogrammation 7 e9 N8 U3 d& r( g. I
Role of Hematopoietic Stem Cell Transplant in the Management of Follicular Lymphoma
# V9 g) U/ e+ EStatus of adult marrow stem cell biology 9 ^8 P4 i. q3 X
Stem cell and genetic therapies for the fetus ; T# N: X& T1 `3 r; h( y7 h, Q4 c
Stem cell decision making and critical-like exploratory networks 3 L5 r7 J& ~% S! J7 F  s- Y
Stem Cell Therapy for Heart Failure
+ a9 s/ q; E) _+ _( D$ R0 AStem Cell Therapy for the Kidney 8 x4 i  G4 N$ m  S
Stem Cells and Liver Regeneration
8 X. P9 x$ G  n. K5 Y- D4 cStem cells, microenvironment mechanics, and growth factor activation
- M+ e" B- x. Y, l8 O0 m7 @Stem cells-The highs and lows of pluripotency 3 c- f3 |! X  ~% }& t
Successful unrelated donor stem cell transplantation for advanced myelofibrosis in an adult patient with history of orthotopic liver transplantation 6 E" m( x0 R! t5 P! [$ F
Survivorship Issues in Hematopoietic Stem Cell Transplantation
( g+ J* z  J7 oTelomere length maintenance in stem cell populations 7 s0 \; M6 u" @: N
Teratoma formation by human embryonic stem cells , u6 N: _- g# s3 o7 `
The Development of Inflammatory Arthritis and Other Rheumatic Diseases Following Stem Cell Transplantation
) k1 g6 ]5 I, l; e  \" e$ cThe Increasing Complexity of the Cancer Stem Cell Paradigm ; d$ N) y& |& _+ S1 ^% n1 \% _
The therapeutic potential of bone marrow-derived mesenchymal stem cells on hepatic cirrhosis 8 {% ^5 S: k7 m; |0 g
Transcripts of unknown function in multiple-signaling pathways involved in human stem cell differentiation 4 [8 t$ D+ t2 a
Variation in the safety of induced pluripotent stem cell lines
0 S$ c" T* |) OA niche play for stem cells
; t0 \8 P9 w# M7 O5 OA niche play for stem cells
$ m2 d9 t: v& d8 |, _2 f* GA parallel circuit of LIF signalling pathways maintains pluripotency of mouse ES cells % X2 ^# A2 j3 B
Acute Complications of Stem Cell Transplant
7 N7 b6 ]6 w! E  F0 OAdipose-Derived Stem Cells
3 `: |5 `$ m) W, V' _* Y: \Adult neural stem cells in the mammalian central nervous system 3 s* w' W3 e2 Q" H/ n
Apoptosis Signaling in Cancer Stem Cells 0 R+ O6 k1 `* V: D
Automated selection and collection of pluripotent stem cell colonies using the CellCelector
; D! Q3 X  Q7 K5 ]3 h8 ABCOR regulates mesenchymal stem cell function by epigenetic mechanisms
4 T, t. _6 L) ]1 y8 z8 \Bmi-1, stem cells and cancer 3 [  h6 _, e! B3 N
cancer stem cell marker 0 X" W0 Z0 x) S7 U: ~- @+ W0 z
Cancer stem cells
* c/ p, X1 K2 Y5 X& |" K1 S1 {Clinical Applications of Blood-Derived and Marrow-Derived Stem Cells for Nonmalignant Diseases
6 X/ l' G3 q  C) O/ ECompetitive Interactions Between Cells-Death, Growth, and Geography + h, V& i1 v8 q- S
Potential novel pharmacological therapies for myocardial remodelling
* @- }( m3 T0 w& z3 m* ~7 j3 `+ {0 KDisease-corrected haematopoietic progenitors from Fanconi anaemia induced pluripotent stem cells $ U% Q. |& Y$ q  c% \
Elite and stochastic models for induced pluripotent stem cell generation 2 R1 `% b8 v- c; Y. G
Embryonic stem (ES) cell-derived cardiomyocytes $ `) K& L- u1 c0 u; ]
Emerging Immunology of Stem Cell Transplantation - Y% q- Y6 ]5 X- Y& |
Ethical Issues in Stem Cell Research + L. }: x+ s, l6 t" V2 F4 B
FDA Regulation of Stem Cell Based Products 9 U1 y- ?3 v2 R
Growth Factors, Matrices, and Forces Combine and Control Stem Cells % I+ y2 M6 I, x4 Z
Human embryonic stem cells and cardiac repair 8 b& `. @1 u' V2 a
Human Fetal Membranes-A Source of Stem Cells for Tissue Regeneration and Repair
$ w- o- ?  J* GHuman ISL1 heart progenitors generate diverse multipotent cardiovascular cell lineages , R( S) @, G- d, ]! q, F
IFN-wakes up sleeping hematopoietic stem cells 1 [* w( f" @* [. P: Z  x
Imaging Stem Cell Implant for Cellular-Based Therapies
; V: ~; [$ H( z, T: S8 TImplications of the Cancer Stem-Cell Hypothesis for Breast Cancer Prevention and Therapy ' L$ O& F: {) z5 e* a1 k
Induced pluripotent stem cells and the stability of the differentiated state
( H) {( l- a' E% wInstructing an Embryonic Stem Cell-Derived Oocyte Fate - @: B2 G- T5 ?* D/ `3 @
Medical Innovation Versus Stem Cell Tourism
. e# q2 [( w1 D8 n! }In Search of Adrenocortical Stem and Progenitor Cells 4 Z! X0 c% k% ]2 _5 ^1 j5 N
Neural stem cells aplenty
- v/ S3 t# L% K4 A- SPancreatic cancer stem cells " S: M  c+ x( L: ?
Paracrine Mechanisms in Adult Stem Cell Signaling and Therapy 9 B8 ~7 [5 s* `# ~: t
Psychological Issues of Stem Cell Transplant
( j: F0 e. z. \0 @4 N/ G% b! h  }Regeneration of the ischemic brain by engineered stem cells 2 T( h8 ~+ L+ i* w
Regulatory circuits underlying pluripotency and reprogramming : Y/ n) w! H# ?1 j6 S/ \, Y
respir-Cell therapy approaches for lung diseases   G' n0 {' \6 j! _
Role of epigenetics in liver-specific gene transcription, hepatocyte differentiation and stem cell reprogrammation 4 \3 e4 w. C# i5 x9 ~( n! W
specific microRNAs promote induced pluripotency
: Z) m- X, @/ W1 WStem Cell Therapy for the Kidney
5 n7 J5 B3 U8 }3 t: d* @stem cell therapy in cutaneous wound healing
& ?0 _1 u- h1 N/ EStem cell therapy perspectives for type 1 diabetes , i! V" R0 Z* X4 L* M) y) F
Stem Cells and Liver Regeneration
* l, N( @2 T! Y8 \2 r  pStem cells based transplantation for cardiovascular diseases in China
' |, X, C3 _' e# ?Stem-cell therapy faces more scrutiny in China
! h5 y! F, D" s8 @2 a( f6 cSteps to the Clinic
% z- |; Q0 T. R8 c! e; GStepwise differentiation of pluripotent stem cells into retinal cells 8 K" `% f9 M& e1 x
Sustained in vitro intestinal epithelial culture within a Wnt-dependent stem cell niche
5 {. K" W0 i, O8 EThe Increasing Complexity of the Cancer Stem Cell Paradigm
: l9 H& ~; B6 Q3 Y% h9 fThe NIH Draft Guidelines on Human Stem Cell Research # e8 X3 R- z  X, G
The pluripotency factor Oct4 interacts with Ctcf and also controls X-chromosome pairing and counting
* |& O. R) a( n, x0 HThe Role of Stromal Stem Cells in Tissue Regeneration and Wound Repair % D- h" g5 T' d1 R* n' C6 X
The tumor stem cell concept
% S" v* [- A5 n1 I2 R, FUmbilical cord blood stem cells-Towards a proteomic approach
+ m4 w) P. f# v7 @7 i# |0 QUS regulator wades into stem cell therapies for heart disease
+ F- ?3 P& U/ ?$ v1 D' u: v) mApoptosis Signaling in Cancer Stem Cells
; o1 M# f8 C: J0 V6 iPancreatic cancer stem cells ! G; e4 J. C) T3 s9 G
Acute Complications of Stem Cell Transplant
5 E0 y( }) r0 O, t4 zAutologous Stem-Cell Transplantation in Patients With HIV-Related Lymphoma
1 b: ]+ ^1 ~( [7 mDeconstructing Stem Cell Tumorigenicity-A Roadmap to Safe Regenerative Medicine 8 Y+ O  }+ Q* \: o( F
Emerging Immunology of Stem Cell Transplantation
. [% U6 |- ]7 A+ x' s. kManagement Issues In Hematopoietic Stem Cell Transplantation 4 [$ q' w6 D2 T1 v' f* {0 p7 M
Psychological Issues of Stem Cell Transplant
% b2 d- x4 S9 V' J+ t# P0 d1 H) \The NIH Draft Guidelines on Human Stem Cell Research 5 @9 b6 f4 }1 n  H  x
The therapeutic potential of bone marrow-derived mesenchymal stem cells on hepatic cirrhosis
3 u5 l4 m6 N2 B9 l" M1 S' @  E, EBone Marrow-derived Stem-Progenitor Cells-Their Use in Clinical Studies for the Treatment of Myocardial Infarction : H  F9 d' P: {; |0 Q  B4 t
Embryonic stem (ES) cell-derived cardiomyocytes
9 T! c. S3 a1 j: B" n2 aEmbryonic stem cells as a model for cardiac development and disease ) ~- T$ p  W& e; W
Endogenous stem cells in patients undergoing coronary artery bypass graft surgery
; j, t% l1 R3 S0 \. jHuman embryonic stem cells and cardiac repair ( r1 n8 v: q% k" d9 {8 U( o" w3 @
Percutaneous intramyocardial stem cell injection in patients with acute myocardial infarction
5 x4 ^! B+ r; `Promise of Blood-and Bone Marrow-Derived Stem Cell Transplantation for Functional Cardiac Repair
  \! y$ w$ u' B# p0 j; g6 I) ?Stem Cell Therapy for Heart Failure * H; e4 |' h& B3 M2 c% ^
Epithelial metaplasia-adult stem cell reprogramming and (pre)neoplastic transformation mediated by inflammation
. k/ r. I) m/ [: L+ M3 r5 o/ [Full text access provided to Peking university
$ ?$ M, `# @* U4 f( L" JImproving stem cell mobilization strategies-future directions + T) ?* t( S" a; N4 E7 P
Induced pluripotent stem cells from a spinal muscular atrophy patient 2 A2 M, |* _2 H
Induced pluripotent stem cells-current progress and potential for regenerative medicine
* _+ w+ x9 [' MInterferon regulatory factor-2 protects quiescent hematopoietic stem cells from type I interferon鈥揹ependent exhaustion 4 M; A+ R( @/ o1 G
Low-risk reprogramming ; c8 u0 _1 E* \6 Z  @
Molecular cues for pluripotency, genetic reprogramming of adult stem cells, and widely multipotent adult cells 0 |7 t2 p# E' M- ]& R9 R
piggyBac transposition reprograms fibroblasts to induced pluripotent stem cells 4 ?4 r1 q, s6 i
Pluripotent stem cells as new drugs
& P6 {+ Z- ]# c* w8 `$ Dproteome-Umbilical cord blood stem cells-Towards a proteomic approach
4 [9 Z: v5 {. \; f0 r+ VRegeneration of the ischemic brain by engineered stem cells & ?: X1 M+ ]$ E
Researchers Generally Happy With Final Stem Cell Rules
3 r! e* w* Z% x' p' pStem Cell Niche 6 u0 u' R% ~0 ~3 u; m8 P3 M
Stem cell therapy perspectives for type 1 diabetes
, u* O! L8 K& j' wStem Cells and Liver Regeneration
1 L4 T$ r7 C( x# z4 SStem cells-Fast and furious , R: e& Z( ^& i$ g
Survivorship Issues in Hematopoietic Stem Cell Transplantation - i& Q6 G& D! z5 w- l$ f
The NIH Draft Guidelines on Human Stem Cell Research $ l! }% X2 [2 h- P. ]; a  v
The origins of the identification and isolation of hematopoietic stem cells, and their capability to induce donor-specific transplantation tolerance and treat autoimmune diseases
, V( Y) j9 U4 EUS stem-cell research expands " Z' V5 f$ k- M$ [. ^1 ?+ e% l/ P
Virus-free induction of pluripotency and subsequent excision of reprogramming factors : W8 S( U+ T8 g' @! Z
Wnt Signaling, Lgr5, and Stem Cells in the Intestine and Skin

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沙发
发表于 2009-11-8 14:39 |只看该作者
谢谢!

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藤椅
发表于 2009-11-9 14:28 |只看该作者
谢谢楼主
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