Frank Costantini

Affiliations: 
Columbia University, New York, NY 
Area:
Genetics, Anatomy Biology, Cell Biology
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"Frank Costantini"

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Shankar Srinivas grad student Columbia (Cell Biology Tree)
Tomoko Watanabe grad student 2004 Columbia
Reena Shakya grad student 2005 Columbia
Benson C. Lu grad student 2008 Columbia
Paul N. Riccio grad student 2013 Columbia
Shifaan Thowfeequ post-doc Columbia (Cell Biology Tree)
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Publications

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Good PI, Li L, Hurst HA, et al. (2023) Low nephron endowment increases susceptibility to renal stress and chronic kidney disease. Jci Insight
Packard A, Klein WH, Costantini F. (2021) Ret signaling in ureteric bud epithelial cells controls cell movements, cell clustering and bud formation. Development (Cambridge, England). 148
Costantini F. (2019) Generating Genetic Mosaic Mouse Embryos or Organoids for Studies of Kidney Development. Methods in Molecular Biology (Clifton, N.J.). 1926: 3-21
Riccio P, Cebrian C, Zong H, et al. (2016) Ret and Etv4 Promote Directed Movements of Progenitor Cells during Renal Branching Morphogenesis. Plos Biology. 14: e1002382
Leclerc K, Costantini F. (2016) Mosaic analysis of cell rearrangements during ureteric bud branching in dissociated/reaggregated kidney cultures and in vivo. Developmental Dynamics : An Official Publication of the American Association of Anatomists. 245: 483-96
Akagi T, Kuure S, Uranishi K, et al. (2015) ETS-related transcription factors ETV4 and ETV5 are involved in proliferation and induction of differentiation-associated genes in embryonic stem (ES) cells. The Journal of Biological Chemistry. 290: 22460-73
Weiss AC, Airik R, Bohnenpoll T, et al. (2014) Nephric duct insertion requires EphA4/EphA7 signaling from the pericloacal mesenchyme. Development (Cambridge, England). 141: 3420-30
Yun K, Ajima R, Sharma N, et al. (2014) Non-canonical Wnt5a/Ror2 signaling regulates kidney morphogenesis by controlling intermediate mesoderm extension. Human Molecular Genetics. 23: 6807-14
Cebrian C, Asai N, D'Agati V, et al. (2014) The number of fetal nephron progenitor cells limits ureteric branching and adult nephron endowment. Cell Reports. 7: 127-37
Ihermann-Hella A, Lume M, Miinalainen IJ, et al. (2014) Mitogen-activated protein kinase (MAPK) pathway regulates branching by remodeling epithelial cell adhesion. Plos Genetics. 10: e1004193
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