Literature DB >> 16447274

Liver regeneration.

Nelson Fausto1, Jean S Campbell, Kimberly J Riehle.   

Abstract

During liver regeneration after partial hepatectomy, normally quiescent hepatocytes undergo one or two rounds of replication to restore the liver mass by a process of compensatory hyperplasia. A large number of genes are involved in liver regeneration, but the essential circuitry required for the process may be categorized into three networks: cytokine, growth factor and metabolic. There is much redundancy within each network, and intricate interactions exist between them. Thus, loss of function from a single gene rarely leads to complete blockage of liver regeneration. The innate immune system plays an important role in the initiation of liver regeneration after partial hepatectomy, and new cytokines and receptors that participate in initiation mechanisms have been identified. Hepatocytes primed by these agents readily respond to growth factors and enter the cell cycle. Presumably, the increased metabolic demands placed on hepatocytes of the regenerating liver are linked to the machinery needed for hepatocyte replication, and may function as a sensor that calibrates the regenerative response according to body demands. In contrast to the regenerative process after partial hepatectomy, which is driven by the replication of existing hepatocytes, liver repopulation after acute liver failure depends on the differentiation of progenitor cells. Such cells are also present in chronic liver diseases, but their contribution to the production of hepatocytes in those conditions is unknown. Most of the new knowledge about the molecular and cellular mechanisms of liver regeneration is both conceptually important and directly relevant to clinical problems.

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Year:  2006        PMID: 16447274     DOI: 10.1002/hep.20969

Source DB:  PubMed          Journal:  Hepatology        ISSN: 0270-9139            Impact factor:   17.425


  557 in total

Review 1.  Small for size liver remnant following resection: prevention and management.

Authors:  Rony Eshkenazy; Yael Dreznik; Eylon Lahat; Barak Bar Zakai; Alex Zendel; Arie Ariche
Journal:  Hepatobiliary Surg Nutr       Date:  2014-10       Impact factor: 7.293

Review 2.  SAMe and HuR in liver physiology: usefulness of stem cells in hepatic differentiation research.

Authors:  Laura Gomez-Santos; Mercedes Vazquez-Chantada; Jose Maria Mato; Maria Luz Martinez-Chantar
Journal:  Methods Mol Biol       Date:  2012

3.  S6 kinase 1 is required for rapamycin-sensitive liver proliferation after mouse hepatectomy.

Authors:  Catherine Espeillac; Claudia Mitchell; Séverine Celton-Morizur; Céline Chauvin; Vonda Koka; Cynthia Gillet; Jeffrey H Albrecht; Chantal Desdouets; Mario Pende
Journal:  J Clin Invest       Date:  2011-07       Impact factor: 14.808

4.  Protective effect of recombinant human IL-1Ra on CCl4-induced acute liver injury in mice.

Authors:  Run-Zhi Zhu; Di Xiang; Chao Xie; Jing-Jing Li; Jian-Jun Hu; Hong-Lin He; Yun-Sheng Yuan; Jin Gao; Wei Han; Yan Yu
Journal:  World J Gastroenterol       Date:  2010-06-14       Impact factor: 5.742

5.  Hepatotropic growth factors protect hepatocytes during inflammation by upregulation of antioxidative systems.

Authors:  Matthias Glanemann; Daniel Knobeloch; Sabrina Ehnert; Mihaela Culmes; Claudine Seeliger; Daniel Seehofer; Andreas K Nussler
Journal:  World J Gastroenterol       Date:  2011-05-07       Impact factor: 5.742

6.  Low-dose steroid pretreatment ameliorates the transient impairment of liver regeneration.

Authors:  Toshihito Shibata; Toru Mizuguchi; Yukio Nakamura; Masaki Kawamoto; Makoto Meguro; Shigenori Ota; Koichi Hirata; Hidekazu Ooe; Toshihiro Mitaka
Journal:  World J Gastroenterol       Date:  2012-03-07       Impact factor: 5.742

Review 7.  A critical appraisal of the hemodynamic signal driving liver regeneration.

Authors:  Kerstin Abshagen; Christian Eipel; Brigitte Vollmar
Journal:  Langenbecks Arch Surg       Date:  2012-02-07       Impact factor: 3.445

8.  Gene deletions and amplifications in human hepatocellular carcinomas: correlation with hepatocyte growth regulation.

Authors:  Michael A Nalesnik; George Tseng; Ying Ding; Guo-Sheng Xiang; Zhong-liang Zheng; YanPing Yu; James W Marsh; George K Michalopoulos; Jian-Hua Luo
Journal:  Am J Pathol       Date:  2012-02-08       Impact factor: 4.307

9.  Function and volume recovery after partial hepatectomy: influence of preoperative liver function, residual liver volume, and obesity.

Authors:  Johan Friso Lock; Maciej Malinowski; Daniel Seehofer; Steffi Hoppe; Rhea Isabel Röhl; Stefan Markus Niehues; Peter Neuhaus; Martin Stockmann
Journal:  Langenbecks Arch Surg       Date:  2012-06-24       Impact factor: 3.445

10.  Evidence for LKB1/AMP-activated protein kinase/ endothelial nitric oxide synthase cascade regulated by hepatocyte growth factor, S-adenosylmethionine, and nitric oxide in hepatocyte proliferation.

Authors:  Mercedes Vázquez-Chantada; Usue Ariz; Marta Varela-Rey; Nieves Embade; Nuria Martínez-Lopez; David Fernández-Ramos; Laura Gómez-Santos; Santiago Lamas; Shelly C Lu; M Luz Martínez-Chantar; José M Mato
Journal:  Hepatology       Date:  2009-02       Impact factor: 17.425

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