Suchergebnisse - Niraj Trivedi
- Treffer 1 - 17 von 17
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Oxygen Tension and the VHL-Hif1α Pathway Determine Onset of Neuronal Polarization and Cerebellar Germinal Zone Exit von Jan A. Kullmann, Niraj Trivedi, Danielle Howell, Christophe Laumonnerie, Vien Nguyen, Shalini S. Banerjee, Daniel R. Stabley, Abbas Shirinifard, David H. Rowitch, David J. Solecki
Veröffentlicht 2020Artigo -
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Drebrin-mediated microtubule–actomyosin coupling steers cerebellar granule neuron nucleokinesis and migration pathway selection von Niraj Trivedi, Daniel R. Stabley, Blake Cain, Danielle Howell, Christophe Laumonnerie, Joseph S. Ramahi, Jamshid Temirov, Ryan A. Kerekes, Phillip R. Gordon‐Weeks, David J. Solecki
Veröffentlicht 2017Artigo -
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Zeb1 controls neuron differentiation and germinal zone exit by a mesenchymal-epithelial-like transition von Shalini Singh, Danielle Howell, Niraj Trivedi, Ketty Kessler, Taren Ong, Pedro Rosmaninho, Alexandre A. S. F. Raposo, Giles Robinson, Martine F. Roussel, Diogo S. Castro, David J. Solecki
Veröffentlicht 2016Artigo -
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Vector design influences hepatic genotoxicity after adeno-associated virus gene therapy von Randy J. Chandler, Matthew C. LaFave, Gaurav K. Varshney, Niraj Trivedi, Nuria Carrillo, Julien S. Senac, Weiwei Wu, Victoria Hoffmann, Abdel Elkahloun, Shawn M. Burgess, Charles P. Venditti
Veröffentlicht 2015Artigo -
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Modeling Smith-Lemli-Opitz syndrome with induced pluripotent stem cells reveals a causal role for Wnt/β-catenin defects in neuronal cholesterol synthesis phenotypes von Kevin R. Francis, Amy N. Ton, Yao Xin, Peter E O'Halloran, Christopher A. Wassif, Nasir Malik, Ian M. Williams, Céline Cluzeau, Niraj Trivedi, William J. Pavan, Wonhwa Cho, Heiner Westphal, Forbes D. Porter
Veröffentlicht 2016Artigo -
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A direct link between MITF, innate immunity, and hair graying von Melissa L. Harris, Temesgen Fufa, Joseph W. Palmer, Sandeep S. Joshi, Denise M. Larson, Arturo Incao, Derek Gildea, Niraj Trivedi, Autumne N. Lee, Chi‐Ping Day, Helen Michael, Thomas J. Hornyak, Glenn Merlino, William J. Pavan
Veröffentlicht 2018Artigo -
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Somatic mutational landscape of AML with inv(16) or t(8;21) identifies patterns of clonal evolution in relapse leukemia von Raman Sood, Nancy F. Hansen, Frank X. Donovan, Blake Carrington, Donna Bucci, Baishali Maskeri, Alice Young, Niraj Trivedi, Jessica Kohlschmidt, Richard M. Stone, Michael A. Caligiuri, Settara C. Chandrasekharappa, Guido Marcucci, James C. Mullikin, C. D. Bloomfield, Pu Liu
Veröffentlicht 2015Carta -
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Targeting proximal tubule mitochondrial dysfunction attenuates the renal disease of methylmalonic acidemia von Irini Manoli, Justin R. Sysol, Lingli Li, Pascal Houillier, Caterina Garone, Cindy Wang, Patricia M. Zerfas, Kristina Cusmano‐Ozog, Sarah P. Young, Niraj Trivedi, Jun Cheng, Jennifer L. Sloan, Randy J. Chandler, Mones Abu‐Asab, Maria Tsokos, Abdel Elkahloun, Seymour Rosen, Gregory M. Enns, Gerard T. Berry, Victoria Hoffmann, Salvatore DiMauro, Jürgen Schnermann, Charles P. Venditti
Veröffentlicht 2013Artigo -
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FGF21 underlies a hormetic response to metabolic stress in methylmalonic acidemia von Irini Manoli, Justin R. Sysol, Madeline Epping, Lina Li, Cindy Wang, Jennifer L. Sloan, Alexandra Pass, Jack Gagné, Yiouli P. Ktena, Lingli Li, Niraj Trivedi, Bazoumana Ouattara, Patricia M. Zerfas, Victoria Hoffmann, Mones Abu‐Asab, Maria Tsokos, David E. Kleiner, Caterina Garone, Kristina Cusmano‐Ozog, Gregory M. Enns, Hilary J. Vernon, Hans C. Andersson, Stephanie Grünewald, Abdel Elkahloun, C.L. Girard, Jürgen Schnermann, Salvatore DiMauro, Eva Andrés‐Mateos, Luk H. Vandenberghe, Randy J. Chandler, Charles P. Venditti
Veröffentlicht 2018Artigo
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Ähnliche Schlagworte
Biology
Gene
Genetics
Cell biology
Medicine
Biochemistry
Cancer research
Internal medicine
Chemistry
Endocrinology
Neuroscience
Stem cell
Cell
Gene expression
Immunology
Physics
Transcription factor
Axon
Biophysics
Cell cycle
Centrosome
Embryonic stem cell
Induced pluripotent stem cell
Leukemia
Methylmalonic acidemia
Microphthalmia-associated transcription factor
Microtubule
Neurogenesis
Pathology
Phenotype