Muscle satellite cells are multipotential stem cells that exhibit myogenic, osteogenic, and adipogenic differentiation A Asakura, MA Rudnicki, M Komaki Differentiation 68 (4-5), 245-253, 2001 | 1068 | 2001 |
Myogenic specification of side population cells in skeletal muscle A Asakura, P Seale, A Girgis-Gabardo, MA Rudnicki Journal of Cell Biology 159 (1), 123-134, 2002 | 892 | 2002 |
Reduced Differentiation Potential of Primary MyoD−/− Myogenic Cells Derived from Adult Skeletal Muscle LA Sabourin, A Girgis-Gabardo, P Seale, A Asakura, MA Rudnicki The Journal of cell biology 144 (4), 631-643, 1999 | 467 | 1999 |
Side population cells from diverse adult tissues are capable of in vitro hematopoietic differentiation A Asakura, MA Rudnicki Experimental hematology 30 (11), 1339-1345, 2002 | 385 | 2002 |
MyoD and Myf-5 differentially regulate the development of limb versus trunk skeletal muscle B Kablar, K Krastel, C Ying, A Asakura, SJ Tapscott, MA Rudnicki Development 124 (23), 4729-4738, 1997 | 365 | 1997 |
The potential of muscle stem cells P Seale, A Asakura, MA Rudnicki Developmental cell 1 (3), 333-342, 2001 | 354 | 2001 |
Constitutive Notch activation upregulates Pax7 and promotes the self-renewal of skeletal muscle satellite cells Y Wen, P Bi, W Liu, A Asakura, C Keller, S Kuang Molecular and cellular biology 32 (12), 2300-2311, 2012 | 335 | 2012 |
Muscle satellite cell cross-talk with a vascular niche maintains quiescence via VEGF and notch signaling M Verma, Y Asakura, BSR Murakonda, T Pengo, C Latroche, B Chazaud, ... Cell stem cell 23 (4), 530-543. e9, 2018 | 306 | 2018 |
Muscle satellite cell heterogeneity and self-renewal N Motohashi, A Asakura Frontiers in cell and developmental biology 2, 1, 2014 | 257 | 2014 |
MyoD regulates apoptosis of myoblasts through microRNA-mediated down-regulation of Pax3 H Hirai, M Verma, S Watanabe, C Tastad, Y Asakura, A Asakura Journal of Cell Biology 191 (2), 347-365, 2010 | 230 | 2010 |
neuroD2 and neuroD3: Distinct Expression Patterns and Transcriptional Activation Potentials within the neuroD Gene Family MB McCormick, RM Tamimi, L Snider, A Asakura, D Bergstrom, ... Molecular and cellular biology 16 (10), 5792-5800, 1996 | 210 | 1996 |
MyoD induces myogenic differentiation through cooperation of its NH2- and COOH-terminal regions J Ishibashi, RL Perry, A Asakura, MA Rudnicki The Journal of cell biology 171 (3), 471-482, 2005 | 206 | 2005 |
NeuroD2 is necessary for development and survival of central nervous system neurons JM Olson, A Asakura, L Snider, R Hawkes, A Strand, J Stoeck, A Hallahan, ... Developmental biology 234 (1), 174-187, 2001 | 194 | 2001 |
Increased survival of muscle stem cells lacking the MyoD gene after transplantation into regenerating skeletal muscle A Asakura, H Hirai, B Kablar, S Morita, J Ishibashi, BA Piras, AJ Christ, ... Proceedings of the national academy of sciences 104 (42), 16552-16557, 2007 | 161 | 2007 |
Stem cells in adult skeletal muscle A Asakura Trends in cardiovascular medicine 13 (3), 123-128, 2003 | 148 | 2003 |
Isolation, culture, and transplantation of muscle satellite cells N Motohashi, Y Asakura, A Asakura Journal of visualized experiments: JoVE, 50846, 2014 | 147 | 2014 |
The regulation of MyoD gene expression: conserved elements mediate expression in embryonic axial muscle A Asakura, GE Lyons, SJ Tapscott Developmental biology 171 (2), 386-398, 1995 | 134 | 1995 |
Xenotransplantation of long-term-cultured swine bone marrow-derived mesenchymal stem cells Y Nakamura, X Wang, C Xu, A Asakura, M Yoshiyama, AHL From, ... Stem cells 25 (3), 612-620, 2007 | 117 | 2007 |
MyoD and Myf-5 define the specification of musculature of distinct embryonic origin B Kablar, A Asakura, K Krastel, C Ying, LL May, DJ Goldhamer, ... Biochemistry and cell biology 76 (6), 1079-1091, 1998 | 109 | 1998 |
Resident endothelial precursors in muscle, adipose, and dermis contribute to postnatal vasculogenesis G Grenier, A Scimè, F Le Grand, A Asakura, C Perez-Iratxeta, ... Stem cells 25 (12), 3101-3110, 2007 | 102 | 2007 |