Reversal of liver failure using a bioartificial liver device implanted with clinical-grade human-induced hepatocytes.
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L. Hui | Jin Cen | Guoyu Pan | Ludi Zhang | Yifan Wang | Zhen Sun | Chenhua Wang | Xiujun Cai | Xingyu Lv | Xinjie Zhang | Junjie Nan | Qiuxia Gu | Qiang Zheng | Baihua Wu | Ziyuan Wang | Tingting Yan | Zhongyu Wu | Yan Jin | Wenbin Sun | Lijian Hui
[1] J. Søreide,et al. Post hepatectomy liver failure (PHLF) - Recent advances in prevention and clinical management. , 2020, European journal of surgical oncology : the journal of the European Society of Surgical Oncology and the British Association of Surgical Oncology.
[2] G. Michalopoulos,et al. Liver regeneration: biological and pathological mechanisms and implications , 2020, Nature Reviews Gastroenterology & Hepatology.
[3] Hexin Yan,et al. An extracorporeal bioartificial liver embedded with 3D-layered human liver progenitor-like cells relieves acute liver failure in pigs , 2020, Science Translational Medicine.
[4] E. O'Duibhir,et al. Alternatively activated macrophages promote resolution of necrosis following acute liver injury , 2020, Journal of hepatology.
[5] Xiaolei Shi,et al. Hepatic spheroids derived from human induced pluripotent stem cells in bio-artificial liver rescue porcine acute liver failure , 2019, Cell Research.
[6] Liu Wang,et al. Generation of qualified clinical-grade functional hepatocytes from human embryonic stem cells in chemically defined conditions , 2019, Cell Death & Disease.
[7] T. Ochiya,et al. Generation of human hepatic progenitor cells with regenerative and metabolic capacities from primary hepatocytes , 2019, bioRxiv.
[8] Yohan Kim,et al. Small molecule-mediated reprogramming of human hepatocytes into bipotent progenitor cells. , 2019, Journal of hepatology.
[9] W. Kremers,et al. Randomized Trial of Spheroid Reservoir Bioartificial Liver in Porcine Model of Posthepatectomy Liver Failure , 2018, Hepatology.
[10] L. Hui,et al. In Vitro Expansion of Primary Human Hepatocytes with Efficient Liver Repopulation Capacity. , 2018, Cell stem cell.
[11] Xu Zhou,et al. Expansion and differentiation of human hepatocyte-derived liver progenitor-like cells and their use for the study of hepatotropic pathogens , 2018, Cell Research.
[12] Yaming Li,et al. Guidelines for Diagnosis and Treatment of Primary Liver Cancer in China (2017 Edition) , 2018, Liver Cancer.
[13] J. Bruix,et al. Hepatocellular carcinoma , 2018, The Lancet.
[14] L. Hui,et al. Distinct Gene Expression and Epigenetic Signatures in Hepatocyte-like Cells Produced by Different Strategies from the Same Donor , 2017, Stem cell reports.
[15] U. Neumann,et al. The ALPPS Risk Score: Avoiding Futile Use of ALPPS , 2016, Annals of surgery.
[16] L. Hui,et al. Hepatocellular carcinoma repression by TNFα‐mediated synergistic lethal effect of mitosis defect‐induced senescence and cell death sensitization , 2016, Hepatology.
[17] L. Hui,et al. Improved survival of porcine acute liver failure by a bioartificial liver device implanted with induced human functional hepatocytes , 2016, Cell Research.
[18] L. Vallier,et al. Potential of human induced pluripotent stem cells in studies of liver disease , 2015, Hepatology.
[19] Steven L Salzberg,et al. HISAT: a fast spliced aligner with low memory requirements , 2015, Nature Methods.
[20] D. R. Aldridge,et al. Pathogenesis of hepatic encephalopathy: role of ammonia and systemic inflammation. , 2015, Journal of clinical and experimental hepatology.
[21] W. Huber,et al. Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2 , 2014, Genome Biology.
[22] J. Seppen,et al. Bioartificial livers in vitro and in vivo: tailoring biocomponents to the expanding variety of applications , 2014, Expert opinion on biological therapy.
[23] Paul Theodor Pyl,et al. HTSeq—a Python framework to work with high-throughput sequencing data , 2014, bioRxiv.
[24] G. Kouraklis,et al. Indications, limitations and maneuvers to enable extended hepatectomy: current trends. , 2014, World journal of gastroenterology.
[25] Ying Zhang,et al. Direct reprogramming of human fibroblasts to functional and expandable hepatocytes. , 2014, Cell stem cell.
[26] Jun Jia,et al. Human hepatocytes with drug metabolic function induced from fibroblasts by lineage reprogramming. , 2014, Cell stem cell.
[27] M. Makuuchi. Surgical treatment for HCC--special reference to anatomical resection. , 2013, International journal of surgery.
[28] Gerile Wuyun,et al. Management of post-hepatectomy complications. , 2013, World journal of gastroenterology.
[29] D. Raptis,et al. Liver failure after extended hepatectomy in mice is mediated by a p21-dependent barrier to liver regeneration. , 2012, Gastroenterology.
[30] S. Nyberg. Bridging the gap: Advances in artificial liver support , 2012, Liver transplantation : official publication of the American Association for the Study of Liver Diseases and the International Liver Transplantation Society.
[31] P. Clavien,et al. Playing Play-Doh to prevent postoperative liver failure: the "ALPPS" approach. , 2012, Annals of surgery.
[32] David R. Kelley,et al. Differential gene and transcript expression analysis of RNA-seq experiments with TopHat and Cufflinks , 2012, Nature Protocols.
[33] K. Kalimeris,et al. Development of a porcine model of post-hepatectomy liver failure. , 2011, The Journal of surgical research.
[34] Jürgen Weitz,et al. Posthepatectomy liver failure: a definition and grading by the International Study Group of Liver Surgery (ISGLS). , 2011, Surgery.
[35] D. Stolz,et al. Rescue of lethal hepatic failure by hepatized lymph nodes in mice. , 2011, Gastroenterology.
[36] C. Legallais,et al. Artificial and bioartificial liver devices: present and future , 2009, Gut.
[37] B. Zeng,et al. Bama miniature pigs (Sus scrofa domestica) as a model for drug evaluation for humans: comparison of in vitro metabolism and in vivo pharmacokinetics of lovastatin. , 2008, Comparative medicine.
[38] R. Chamuleau,et al. Bioartificial Liver: Its Pros and Cons , 2006, Therapeutic apheresis and dialysis : official peer-reviewed journal of the International Society for Apheresis, the Japanese Society for Apheresis, the Japanese Society for Dialysis Therapy.
[39] R. Margreiter,et al. Extended Liver Resection and Hepatic Ischemia in Pigs: A New, Potentially ReversibleModel to Induce Acute Liver Failure and Study Artificial Liver Support Systems , 2005, European Surgical Research.
[40] Mauro Salizzoni,et al. Prospective, Randomized, Multicenter, Controlled Trial of a Bioartificial Liver in Treating Acute Liver Failure , 2004, Annals of surgery.
[41] L. Ridolfi,et al. First Report of Cryopreserved Human Hepatocytes Based Bioartificial Liver Successfully Used as a Bridge to Liver Transplantation , 2004, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[42] P. Neuhaus,et al. Extracorporeal liver support based on primary human liver cells and albumin dialysis--treatment of a patient with primary graft non-function. , 2003, Journal of hepatology.
[43] A R Dennison,et al. Segmental nature of the porcine liver and its potential as a model for experimental partial hepatectomy , 2003, The British journal of surgery.
[44] Philippe Ichai,et al. Neurological improvement during bioartificial liver sessions in patients with acute liver failure awaiting transplantation. , 2002, Transplantation.
[45] G. Mazariegos,et al. Safety Observations in Phase I Clinical Evaluation of the Excorp Medical Bioartificial Liver Support System after the First Four Patients , 2001, ASAIO journal.
[46] M. Manns,et al. Hyperstimulation With Interleukin 6 Inhibits Cell Cycle Progression After Hepatectomy in Mice , 2000, Hepatology.
[47] K Watanabe,et al. Effects of p21Waf1/Cip1/Sdi1 on cellular gene expression: implications for carcinogenesis, senescence, and age-related diseases. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[48] J. Zucman‐Rossi,et al. Hepatocellular carcinoma , 1998, Nature Reviews Disease Primers.
[49] K. Ishak,et al. Histological grading and staging of chronic hepatitis. , 1995 .
[50] K. Sugimachi,et al. Acute portal hypertension associated with liver resection. Analysis of early postoperative death. , 1985, Archives of surgery.
[51] G. Maddern,et al. Subtotal hepatectomy: a porcine model for the study of liver regeneration. , 2004, The Journal of surgical research.
[52] JoVE Video Dataset , 2022 .