1 |
Lian JB, Stein GS, Javed A, et al. Networks and hubs for the transcriptional control of osteoblastogenesis. Rev Endocr Metab Disord,2006,7(1-2):1-16.
|
2 |
Takahashi K, Yamanaka S. Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors. Cell,2006,126(4):663-676.
|
3 |
Rizzino A. A challenge for regenerative medicine: proper genetic programming, not cellular mimicry. Dev Dyn, 2007, 236(12):3199-3207.
|
4 |
Yan J, Xu L, Welsh AM, et al. Combined immunosuppressive agents or CD4 antibodies prolong survival of human neural stem cell grafts and improve disease outcomes in amyotrophic lateral sclerosis transgenic mice. Stem Cell, 2006,24(8):1976-1985.
|
5 |
Yu J, Vodyanik MA, Smuga-Otto K, et al. Induced pluripotent stem cell lines derived from human somatic cells. Science, 2007,318(5858):1917-1920.
|
6 |
Park IH, Zhao R, West JA, et al. Reprogramming of human somatic cells to pluripotency with defined factors. Nature, 2008,451(7175):141-146.
|
7 |
Zhao R, Daley GQ. From fibroblasts to iPS cells: induced pluripotency by defined factors. J Cell Biochem, 2008,105(4):949-955.
|
8 |
Andrés V, Walsh, K. Myogenin expression, cell cycle withdrawal, and phenotypic differentiation are temporally separable events that precede cell fusion upon myogenesis. J Cell Biol, 1996,132(4):657-666.
|
9 |
Odelberg SJ, Kollhoff A, Keating MT. Dedifferentiation of mammalian myotubes induced by msx1. Cell, 2000,103(7):1099-1109.
|
10 |
Song L, Tuan RS. Transdifferentiation potential of human mesenchymal stem cells derived from bone marrow. FASEB J, 2004,18(9):980-982.
|
11 |
Selman K, Kafatos FC. Transdifferentiation in the labial gland of silk moths: is DNA required for cellular metamorphosis? Cell Differ,1974,3(2):81-94.
|
12 |
Bjornson CR, Rietze RL, Reynolds BA, et al. Turning brain into blood: a hematopoietic fate adopted by adult neural stem cells in vivo.Science, 1999,283(5401):534-537.
|
13 |
Sánchez Alvarado AS, Tsonis PA. Bridging the regeneration gap: genetic insights from diverse animal models. Nat Rev Genet, 2006,7(11):873-884.
|
14 |
Tsonis PA. Regeneration via transdifferentiation: the lens and hair cells. Hear Res, 2007,227(1-2):28-31.
|
15 |
Kashofer K, Bonnet D. Gene therapy progress and prospects: stem cell plasticity. Gene Ther, 2005,12(16):1229-1234.
|
16 |
Mertes H, Pennings G. Cross-border research on human embryonic stem cells: legal and ethical considerations. Stem Cell Rev, 2009,5(1):10-17.
|
17 |
Yu J, Vodyanik MA, Smuga-Otto K, et al. Induced pluripotent stem cell lines derived from human somatic cells. Science, 2007,318(5858):1917-1920.
|
18 |
Zaehres H, Schöler HR. Induction of pluripotency: from mouse to human. Cell, 2007,131(5):834-835.
|
19 |
Babaie Y, Herwig R, Greber B, et al. Analysis of Oct4-dependent transcriptional networks regulating self-renewal and pluripotency in human embryonic stem cells. Stem Cells, 2007,25(2):500-510.
|
20 |
Lengner CJ, Welstead GG, Jaenisch R. The pluripotency regulator Oct4: a role in somatic stem cells? Cell Cycle, 2008,7(6):725-728.
|
21 |
Lee J, Kim HK, Rho JY, et al. The human OCT-4 isoforms differ in their ability to confer self-renewal. J Biol Chem, 2006,281(44):33554-33565.
|
22 |
Li J, Pan G, Cui K, et al. A dominant-negative form of mouse SOX2 induces trophectoderm differentiation and progressive polyploidy in mouse embryonic stem cells. J Biol Chem, 2007,282(27):19481-19492.
|
23 |
Greco SJ, Liu K, Rameshwar P. Functional similarities among genes regulated by Oct4 in human mesenchymal and embryonic stem cells.Stem Cells, 2007,25(12):3143-3154.
|
24 |
Grinnell KL, Yang B, Eckert RL, et al. De-differentiation of mouse interfollicular keratinocytes by the embryonic transcription factor Oct-4.J Invest Dermatol, 2007,127(2):372-380.
|
25 |
Lengner CJ, Camargo FD, Hochedlinger K, et al. Oct4 expression is not required for mouse somatic stem cell self-renewal. Cell Stem Cell,2007,1(4):403-415.
|
26 |
Fong H, Hohenstein KA, Donovan PJ. Regulation of self-renewal and pluripotency by Sox2 in human embryonic stem cells. Stem Cells,2008,26(8):1931-1938.
|
27 |
Kerkis I, Kerkis A, Dozortsev D, et al. Isolation and characterization of a population of immature dental pulp stem cells expressing OCT-4 and other embryonic stem cell markers. Cells Tissues Organs, 2006,184(3-4):105-116.
|
28 |
Cheng PH, Snyder B, Fillos D, et al. Postnatal stem/progenitor cells derived from the dental pulp of adult chimpanzee. BMC Cell Biol,2008,9:20.
|
29 |
Agata H, Kagami H, Watanabe N, et al. Effect of ischemic culture conditions on the survival and differentiation of porcine dental pulpderived cells. Differentiation, 2008,76(9):981-993.
|
30 |
Techawattanawisal W, Nakahama K, Komaki M, et al. Isolation of multipotent stem cells from adult rat periodontal ligament by neurosphere-forming culture system. Biochem Biophys Res Commun, 2007,357(4):917-923.
|
31 |
Durcova-Hills G. Induced reprogramming of human somatic cells into pluripotency: a new way how to generate pluripotent stem cells.Differentiation, 2008,76(4):323-325.
|
32 |
Mbalaviele G, Shin CS, Civitelli R. Cell-cell adhesion and signaling through cadherins: connecting bone cells in their microenvironment. J Bone Miner Res, 2006,21(12):1821-1827.
|
33 |
Boulanger CA, Smith GH. Reprogramming cell fates in the mammary microenvironment. Cell Cycle, 2009,8(8):1127-1132.
|