Direct Reprogramming of Hepatic Myofibroblasts into Hepatocytes In Vivo Attenuates Liver Fibrosis.
暂无分享,去创建一个
G. Song | M. Pacher | A. Balakrishnan | Q. Yuan | H. Tsay | Dakai Yang | J. Reetz | S. Brandes | Z. Dai | B. Pützer | M. Araúzo-Bravo | D. Steinemann | T. Luedde | R. Schwabe | M. Manns | H. Schöler | A. Schambach | T. Cantz | M. Ott | Amar Deep Sharma | B. Pützer | Julia Reetz | Q. Yuan
[1] A. Schambach,et al. Overcoming promoter competition in packaging cells improves production of self-inactivating retroviral vectors , 2006, Gene Therapy.
[2] S. Yamanaka,et al. Induction of Pluripotent Stem Cells from Mouse Embryonic and Adult Fibroblast Cultures by Defined Factors , 2006, Cell.
[3] T. Ichisaka,et al. Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined Factors , 2007, Cell.
[4] L. Luo,et al. A global double‐fluorescent Cre reporter mouse , 2007, Genesis.
[5] B. Thiers. Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined Factors , 2008 .
[6] J. Iredale,et al. p75 neurotrophin receptor signaling regulates hepatic myofibroblast proliferation and apoptosis in recovery from rodent liver fibrosis , 2009, Hepatology.
[7] Thomas Vierbuchen,et al. Direct conversion of fibroblasts to functional neurons by defined factors , 2010, Nature.
[8] Masaki Ieda,et al. Direct reprogramming of fibroblasts into functional cardiomyocytes by defined factors. , 2010, Cell.
[9] M. Kay,et al. Fate tracing of mature hepatocytes in mouse liver homeostasis and regeneration. , 2011, The Journal of clinical investigation.
[10] Sayaka Sekiya,et al. Direct conversion of mouse fibroblasts to hepatocyte-like cells by defined factors , 2011, Nature.
[11] S. Lipton,et al. Direct reprogramming of mouse fibroblasts to neural progenitors , 2011, Proceedings of the National Academy of Sciences.
[12] A. Schambach,et al. Polyclonal fluctuation of lentiviral vector-transduced and expanded murine hematopoietic stem cells. , 2011, Blood.
[13] Kevin Eggan,et al. Conversion of mouse and human fibroblasts into functional spinal motor neurons. , 2011, Cell stem cell.
[14] M. Manns,et al. Induction of a mature hepatocyte phenotype in adult liver derived progenitor cells by ectopic expression of transcription factors. , 2011, Stem cell research.
[15] M. Manns,et al. MicroRNA‐221 regulates FAS‐induced fulminant liver failure , 2011, Hepatology.
[16] L. Hui,et al. Induction of functional hepatocyte-like cells from mouse fibroblasts by defined factors , 2011, Nature.
[17] Anatol C. Kreitzer,et al. Direct reprogramming of mouse and human fibroblasts into multipotent neural stem cells with a single factor. , 2012, Cell stem cell.
[18] Xiaoxia Qi,et al. Heart repair by reprogramming non-myocytes with cardiac transcription factors , 2012, Nature.
[19] M. Nöthen,et al. Direct conversion of fibroblasts into stably expandable neural stem cells. , 2012, Cell stem cell.
[20] Li Qian,et al. In vivo reprogramming of murine cardiac fibroblasts into induced cardiomyocytes , 2011, Nature.
[21] Dong Wook Han,et al. Direct reprogramming of fibroblasts into neural stem cells by defined factors. , 2012, Cell stem cell.
[22] Marius Wernig,et al. Direct conversion of mouse fibroblasts to self-renewing, tripotent neural precursor cells , 2012, Proceedings of the National Academy of Sciences.
[23] S. Friedman,et al. A novel murine model to deplete hepatic stellate cells uncovers their role in amplifying liver damage in mice , 2013, Hepatology.
[24] B. Kowtharapu,et al. Development of Adenoviral Delivery Systems to Target Hepatic Stellate Cells In Vivo , 2013, PloS one.
[25] B. Aronow,et al. Environmental Impact on Direct Neuronal Reprogramming In Vivo in the Adult Brain , 2013, Nature Communications.
[26] A. Björklund,et al. Generation of induced neurons via direct conversion in vivo , 2013, Proceedings of the National Academy of Sciences.
[27] R. Schwabe,et al. Fate-tracing reveals hepatic stellate cells as dominant contributors to liver fibrosis independent of its etiology , 2013, Nature Communications.
[28] S. Friedman,et al. Therapy for Fibrotic Diseases: Nearing the Starting Line , 2013, Science Translational Medicine.
[29] Samantha A. Morris,et al. Dissecting Engineered Cell Types and Enhancing Cell Fate Conversion via CellNet , 2014, Cell.
[30] Samantha A. Morris,et al. CellNet: Network Biology Applied to Stem Cell Engineering , 2014, Cell.
[31] Chun-li Zhang,et al. In vivo conversion of astrocytes to neurons in the injured adult spinal cord , 2014, Nature Communications.
[32] Ying Zhang,et al. Direct reprogramming of human fibroblasts to functional and expandable hepatocytes. , 2014, Cell stem cell.
[33] Jun Jia,et al. Human hepatocytes with drug metabolic function induced from fibroblasts by lineage reprogramming. , 2014, Cell stem cell.
[34] Lei Zhang,et al. In vivo direct reprogramming of reactive glial cells into functional neurons after brain injury and in an Alzheimer's disease model. , 2014, Cell stem cell.
[35] K. Kaestner,et al. Resetting the transcription factor network reverses terminal chronic hepatic failure. , 2015, The Journal of clinical investigation.