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Differentiation; Research in Biological Diversity|February 10, 2016
Modeling renal progenitors - defining the nicheShunsuke Tanigawa, Alan O Perantoni
Cell Reports|May 7, 2016
Selective In Vitro Propagation of Nephron Progenitors Derived from Embryos and Pluripotent Stem CellsShunsuke Tanigawa, Atsuhiro Taguchi, Nirmala Sharma, et al.
Stem Cell Reports|September 1, 2015
Preferential Propagation of Competent SIX2+ Nephronic Progenitors by LIF/ROCKi Treatment of the Metanephric MesenchymeShunsuke Tanigawa, Nirmala Sharma, Michael D Hall, et al.
Seminars in Cell & Developmental Biology|November 25, 2003
Renal development: perspectives on a Wnt-dependent processAlan O Perantoni
Developmental Biology|January 25, 2011
Wnt4 induces nephronic tubules in metanephric mesenchyme by a non-canonical mechanismShunsuke Tanigawa, Honghe Wang, Yili Yang, et al.
Cellular Signalling|July 14, 2010
STAT1 activation regulates proliferation and differentiation of renal progenitorsHonghe Wang, Yili Yang, Nirmala Sharma, et al.
Nature Cell Biology|August 27, 2013
Stromal-epithelial crosstalk regulates kidney progenitor cell differentiationAmrita Das, Shunsuke Tanigawa, Courtney M Karner, et al.
Differentiation; Research in Biological Diversity|December 7, 2016
Hydronephrosis in the Wnt5a-ablated kidney is caused by an abnormal ureter-bladder connectionKangsun Yun, Alan O Perantoni
Journal of the American Society of Nephrology : JASN|April 19, 2014
Sall1 maintains nephron progenitors and nascent nephrons by acting as both an activator and a repressorShoichiro Kanda, Shunsuke Tanigawa, Tomoko Ohmori, et al.
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