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| 1 | Deficiency of glutaredoxin 5 reveals Fe-S clusters are required for vertebrate haem synthesis 显示文摘 | Wingert R A Galloway J L Barut B | 2005 | Nature2005,436,7053: | 1 |
| 2 | x-Bond anisotropy and C - D??? Q hydrogen bonding in the crystal structure of deuterionitromethane显示文摘 | Jeffrey G A Ruble] R Wingert L M | 1985 | J Am Chern Soc1985,107,: | 1 |
| 3 | The zebrafish proneptuos : a model to study nephron segmentation显示文摘 | WINGERT R A DAVIDSON A J | 2008 | Kidney Int2008,73,: | 1 |
| 4 | The cdx genes and retinoic acid control the positioning and segmentation of the zebrafish pronephros 显示文摘 | WINGERT R A SELLECK R YU J | 2007 | PEoS Genet2007,3,: | 1 |
| 5 | Regenerative medicine for the kidney: stem cell prospects & challenges显示文摘 | Yue Li Rebecca A Wingert | 2013 | Clinical and Translational Medicine2013,,1: | 1 |
| 6 | Deficiency of glutaredoxin 5 reveals Fe-S clusters are required for verte- brate haem synthesis显示文摘 | WINGERT R A GALLOWAY J L BARUT B | 2005 | Nature2005,436,: | 1 |
| 7 | On the design of large de-gree-of-freedom digital mechatronic devices based on bistable dielec-tric elastomer actuators显示文摘 | Wingert A Lichter M D Dubowsky S | 2006 | IEEE/ASME Trans Mechatronics2006,11,4: | 1 |
| 8 | On the design of large degree-of-freedom digital mechatronic devices based on bistable dielectric elastomer actuators 显示文摘 | WINGERT A LICHTER M D DUBOWSKY S | 2006 | IEEE/ASME Transactions on Mechatronics2006,11,4: | 1 |
| 9 | Loss of Gatal but Not Gata2 Converts Erythropoiesis to Myelopoiesis in Zebrafish Embryos显示文摘 | Jenna L Galloway Rebecca A Wingert | 2005 | Developmental Cell2005,8,1: | 1 |
| 10 | Insights into kidney stem cell development and regeneration using zebrafish显示文摘Kidney disease is an escalating global health problem,for which the formulation of therapeutic approaches using stem cells has received increasing research attention.The complexity of kidney anatomy and function,which includes the diversity of renal cell types,poses formidable challenges in the identification of methods to generate replacement structures.Recent work using the zebrafish has revealed their high capacity to regenerate the integral working units of the kidney,known as nephrons,following acute injury.Here,we discuss these findings and explore the ways that zebrafish can be further utilized to gain a deeper molecular appreciation of renal stem cell biology,which may uncover important clues for regenerative medicine. | Bridgette E Drummond Rebecca A Wingert | 2016 | World Journal of Stem Cells2016,8,2: | 1 |
| 11 | Renal stem cell reprogramming: Prospects in regenerative medicine显示文摘Stem cell therapy is a promising future enterprise for renal replacement in patients with acute and chronic kidney disease, conditions which affect millions worldwide and currently require patients to undergo lifelong medical treatments through dialysis and/or organ transplant. Reprogramming differentiated renal cells harvested from the patient back into a pluripotent state would decrease the risk of tissue rejection and provide a virtually unlimited supply of cells for regenerative medicine treatments, making it an exciting area of current research in nephrology. Among the major hurdles that need to be overcome before stem cell therapy for the kidney can be applied in a clinical setting are ensuring the fidelity and relative safety of the reprogrammed cells, as well as achieving feasible efficiency in the reprogramming processes that are utilized. Further, improved knowledge about the genetic control of renal lineage development is vital to identifying predictable and efficient reprogramming approaches, such as the expression of key modulators or the regulation of geneactivity through small molecule mimetics. Here, we discuss several recent advances in induced pluripotent stem cell technologies. We also explore strategies that have been successful in renal progenitor generation, and explore what these methods might mean for the development of cell-based regenerative therapies for kidney disease. | Elvin E Morales Rebecca A Wingert | 2014 | World Journal of Stem Cells2014,6,4: | 1 |
| 12 | The Cochrane Library and procedural pain in children: An overview of reviews显示文摘 | Curtis S Wingert A All S | 2012 | Evid Based Child Health2012,7,5: | 1 |
| 13 | Prolonged defibrination after a bite from a 'nonvenomous' snake 显示文摘 | CABLE D MCGEHEE W WINGERT W A | 2000 | JAM Med2000,41,1: | 1 |
| 14 | On thedesign of large degree-of-freedom digital mechatronic devicesbased on bistable dielectric elastomer actuators显示文摘 | Wingert A Matthew D lichter and Steven Dubowsky | 2006 | IEEETransactions on Mechatronics2006,11,4: | 1 |
| 15 | Renal progenitors: Roles in kidney disease and regeneration显示文摘Kidney disease is a devastating condition that affects millions of people worldwide, and its prevalence predicted to significantly increase. The kidney is complex organ encompassing many diverse cell type organized in a elaborate tissue architecture, makin regeneration a challenging feat. In recent years, there ha been a surge in the field of stem cell research to develo regenerative therapies for various organ systems. Here we review some recent progressions in characterizing th role of renal progenitors in development, regeneration and kidney disease in mammals. We also discuss how the zebrafish provides a unique experimental anima model that can provide a greater molecular and genet understanding of renal progenitors, which may contribut to the development of potential regenerative therapies fo human renal afflictions. | Brooke E Chambers Rebecca A Wingert | 2016 | World Journal of Stem Cells2016,8,11: | 0 |