Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis M Takasato, XE Pei, HS Chiu, B Maier, GJ Baillie, C Ferguson, RG Parton, ... Nature 526 (7574), 564-568, 2015 | 699 | 2015 |
Directing human embryonic stem cell differentiation towards a renal lineage generates a self-organizing kidney M Takasato, PX Er, M Becroft, JM Vanslambrouck, EG Stanley, ... Nature cell biology 16 (1), 118-126, 2014 | 510 | 2014 |
The murine homolog of SALL4, a causative gene in Okihiro syndrome, is essential for embryonic stem cell proliferation, and cooperates with Sall1 in anorectal, heart, brain and … M Sakaki-Yumoto, C Kobayashi, A Sato, S Fujimura, Y Matsumoto, ... Development 133 (15), 3005-3013, 2006 | 262 | 2006 |
Identification of multipotent progenitors in the embryonic mouse kidney by a novel colony-forming assay K Osafune, M Takasato, A Kispert, M Asashima, R Nishinakamura Development 133 (1), 151-161, 2006 | 181 | 2006 |
Generation of kidney organoids from human pluripotent stem cells M Takasato, XE Pei, HS Chiu, MH Little Nature protocols 11 (9), 1681, 2016 | 132 | 2016 |
Renal subcapsular transplantation of PSC-derived kidney organoids induces neo-vasculogenesis and significant glomerular and tubular maturation in vivo CW van den Berg, L Ritsma, MC Avramut, LE Wiersma, BM van den Berg, ... Stem cell reports 10 (3), 751-765, 2018 | 124 | 2018 |
Direct transcriptional reprogramming of adult cells to embryonic nephron progenitors CE Hendry, JM Vanslambrouck, J Ineson, N Suhaimi, M Takasato, F Rae, ... Journal of the American Society of Nephrology 24 (9), 1424-1434, 2013 | 109 | 2013 |
The origin of the mammalian kidney: implications for recreating the kidney in vitro M Takasato, MH Little Development 142 (11), 1937-1947, 2015 | 100 | 2015 |
Evaluation of variability in human kidney organoids B Phipson, XE Pei, AN Combes, TA Forbes, SE Howden, L Zappia, ... Nature methods 16 (1), 79-87, 2019 | 74 | 2019 |
Identification of kidney mesenchymal genes by a combination of microarray analysis and Sall1-GFP knockin mice M Takasato, K Osafune, Y Matsumoto, Y Kataoka, N Yoshida, H Meguro, ... Mechanisms of development 121 (6), 547-557, 2004 | 67 | 2004 |
Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis M Takasato, XE Pei, HS Chiu, B Maier, GJ Baillie, C Ferguson, RG Parton, ... Nature 536 (7615), 238, 2016 | 66 | 2016 |
Chuva de Sousa Lopes, SM, and Little M Takasato, PX Er, HS Chiu, B Maier, GJ Baillie, C Ferguson, RG Parton, ... MH, 564-568, 2015 | 57 | 2015 |
Understanding kidney morphogenesis to guide renal tissue regeneration MH Little, AN Combes, M Takasato Nature Reviews Nephrology 12 (10), 624-635, 2016 | 41 | 2016 |
Essential roles of Sall1 in kidney development R Nishinakamura, M Takasato Kidney international 68 (5), 1948-1950, 2005 | 37 | 2005 |
A strategy for generating kidney organoids: recapitulating the development in human pluripotent stem cells M Takasato, MH Little Developmental biology 420 (2), 210-220, 2016 | 29 | 2016 |
Induction of intermediate mesoderm by retinoic acid receptor signaling from differentiating mouse embryonic stem cells S Oeda, Y Hayashi, T Chan, M Takasato, Y Aihara, K Okabayashi, ... International Journal of Developmental Biology 57 (5), 383-389, 2013 | 24 | 2013 |
Generating a self-organizing kidney from pluripotent cells MH Little, M Takasato Current Opinion in Organ Transplantation 20 (2), 178-186, 2015 | 23 | 2015 |
Recreating kidney progenitors from pluripotent cells M Takasato, B Maier, MH Little Pediatric Nephrology 29 (4), 543-552, 2014 | 22 | 2014 |
Making a kidney organoid using the directed differentiation of human pluripotent stem cells M Takasato, MH Little Organ Regeneration, 195-206, 2017 | 19 | 2017 |
Trb2, a mouse homolog of tribbles, is dispensable for kidney and mouse development M Takasato, C Kobayashi, K Okabayashi, H Kiyonari, N Oshima, ... Biochemical and biophysical research communications 373 (4), 648-652, 2008 | 15 | 2008 |