Three dimensional collagen scaffolds promote iPSC induction with higher pluripotency
Qi Gu, He Zhu, Lei Chen, Ling Shuai, Jinhui Fang, Jun Wu, Lei Liu, Wei Li, Jianwu Dai, Jie Hao, Qi Zhou
Three dimensional collagen scaffolds promote iPSC induction with higher pluripotency
[1] |
Arjonen A, Kaukonen R, Ivaska J (2011) Filopodia and adhesion in cancer cell motility. Cell Adhes Migr 5:421–430
CrossRef
Google scholar
|
[2] |
Bao X, Wu H, Zhu X, Guo X, Hutchins AP, Luo Z, Song H, Chen Y, Lai K, Yin M
CrossRef
Google scholar
|
[3] |
Baudino TA, McKay C, Pendeville-Samain H, Nilsson JA, Maclean KH, White EL, Davis AC, Ihle JN, Cleveland JL (2002) c-Myc is essential for vasculogenesis and angiogenesis during development and tumor progression. Genes Dev 16:2530–2543
CrossRef
Google scholar
|
[4] |
Blelloch R, Wang Z, Meissner A, Pollard S, Smith A, Jaenisch R (2006) Reprogramming efficiency following somatic cell nuclear transfer is influenced by the differentiation and methylation state of the donor nucleus. Stem Cells 24:2007–2013
CrossRef
Google scholar
|
[5] |
Caiazzo M, Okawa Y, Ranga A, Piersigilli A, Tabata Y, Lutolf MP (2016) Defined three-dimensional microenvironments boost induction of pluripotency. Nat Mater 15(3):344–352
CrossRef
Google scholar
|
[6] |
Di Lullo GA, Sweeney SM, Korkko J, Ala-Kokko L, San Antonio JD (2002) Mapping the ligand-binding sites and disease-associated mutations on the most abundant protein in the human, type I collagen. J Biol Chem 277:4223–4231
CrossRef
Google scholar
|
[7] |
Fujishiro SH, Nakano K, Mizukami Y, Azami T, Arai Y, Matsunari H, Ishino R, Nishimura T, Watanabe M, Abe T
CrossRef
Google scholar
|
[8] |
Gu Q, Hao J, Lu Y, Wang L, Wallace GG, Zhou Q (2015) Threedimensional bio-printing. Sci China Life Sci 58:411–419
CrossRef
Google scholar
|
[9] |
Gu Q, Tomaskovic-Crook E, Lozano R, Chen Y, Kapsa RM, Zhou Q, Wallace GG, Crook JM (2016) Functional 3D neural mini‐tissues from printed gel‐based bioink and human neural stem cells. Adv Healthcare Mater 5(12):1429–1438
CrossRef
Google scholar
|
[10] |
Jiang J, Ding G, Lin J, Zhang M, Shi L, Lv W, Yang H, Xiao H, Pei G, Li Y (2011) Different developmental potential of pluripotent stem cells generated by different reprogramming strategies. J Mol Cell Biol 3:197–199
CrossRef
Google scholar
|
[11] |
Keung AJ, Kumar S, Schaffer DV (2010) Presentation counts: microenvironmental regulation of stem cells by biophysical and material cues. Annu Rev Cell Dev Biol 26:533–556
CrossRef
Google scholar
|
[12] |
Petkov S, Glage S, Nowak-Imialek M, Niemann H (2015) Long-term culture of porcine induced pluripotent stem-like cells under feeder-free conditions in the presence of histone deacetylase inhibitors. Stem Cells Dev 1(6):e23
|
[13] |
Song T, Zhao X, Sun H, Li X, Lin N, Ding L, Dai J, Hu Y (2015) Regeneration of uterine horns in rats using collagen scaffolds loaded with human embryonic stem cell-derived endometriumlike cells. Tissue Eng Part A 21:353–361
CrossRef
Google scholar
|
[14] |
Tirone F (2001) The gene PC3(TIS21/BTG2), prototype member of the PC3/BTG/TOB family: regulator in control of cell growth, differentiation, and DNA repair? J Cell Physiol 187:155–165
CrossRef
Google scholar
|
[15] |
Twarock S, Tammi MI, Savani RC, Fischer JW (2010) Hyaluronan stabilizes focal adhesions, filopodia, and the proliferative phenotype in esophageal squamous carcinoma cells. J Biol Chem 285:23276–23284
CrossRef
Google scholar
|
/
〈 | 〉 |