Liver regeneration in FGF‐2‐deficient mice: VEGF acts as potential functional substitute for FGF‐2
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Summary
The aim of the study was to evaluate an important role of fibroblast growth factor (FGF‐2) in liver regeneration in a FGF‐ 2 knockout mouse model.
- Type
- article
- Published
- 2004-04-01
- Cited by
- 32
- References
- 41
- OpenAlex
- https://openalex.org/W2117926291
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:29815431
Keywords
Fibroblast growth factor, Liver regeneration, Endocrinology, Internal medicine, Regeneration (biology)
References
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- Role of growth factors and cytokines in hepatic regeneration
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- FGF signalling is required for differentiation-induced cytoskeletal reorganisation and formation of actin-based processes by podocytes.
- The FGF family of growth factors and oncogenes.
- Induction of liver growth in normal mice by infusion of hepatocyte growth factor/scatter factor.
- Altered Apoptotic Response and Different Liver Structure During Liver Regeneration in FGF-2-Deficient Mice
- Sequential increases in the intrahepatic expression of epidermal growth factor, basic fibroblast growth factor, and transforming growth factor β in a bile duct ligated rat model of cirrhosis
- EFFECT OF FGF‐1 AND FGF‐2 ON VEGF BINDING TO HUMAN UMBILICAL VEIN ENDOTHELIAL CELLS
- A secreted FGF-binding protein can serve as the angiogenic switch in human cancer
- Role of the Flt-1 receptor tyrosine kinase in regulating the assembly of vascular endothelium
- Basic fibroblast growth factor is hepatotropic for rat liver in regeneration.
- Vascular endothelial growth factor and angiopoietin in liver regeneration.
- Response of bovine endothelial cells to FGF‐2 and VEGF is dependent on their site of origin: Relevance to the regulation of angiogenesis
- Basic fibroblast growth factor and transforming growth factor‐α are hepatotrophic mitogens in vitro
- Angioblast differentiation is influenced by the local environment: FGF‐2 induces angioblasts and patterns vessel formation in the quail embryo
- Tumor necrosis factor primes hepatocytes for DNA replication in the rat
- Liver Failure and Defective Hepatocyte Regeneration in Interleukin-6-Deficient Mice
- Initiation of mammalian liver development from endoderm by fibroblast growth factors.
Cited by
- Liver resection for metastatic colorectal cancer in the age of neoadjuvant chemotherapy and bevacizumab.
- Cytokines pattern after surgical radiofrequency ablation of liver colorectal metastases.
- Co-culture of hepatocytes with mesenchymal stem cells for cellular therapy in liver disease
- Adiponectin fine‐tuning of liver regeneration dynamics revealed through cellular network modelling
- Role of nitric oxide in liver regeneration.
- Altered Apoptotic Response and Different Liver Structure During Liver Regeneration in FGF-2-Deficient Mice
- Deregulation of growth factor, circadian clock, and cell cycle signaling in regenerating hepatocyte RXRalpha-deficient mouse livers.
- Liver fatty acid and element changes after partial hepatectomy in mice fed olive oil-and corn oil-enriched diets
- Effect of different liver resection methods on liver damage and regeneration factors VEGF and FGF-2 in mice.
- A novel human hepatoma cell line, FLC‐4, exhibits highly enhanced liver differentiation functions through the three‐dimensional cell shape
- Thinking outside the cell: proteases regulate hepatocyte division.
- Molecular control of liver development.
- Scaffolds containing growth factors and extracellular matrix induce hepatocyte proliferation and cell migration in normal and regenerating rat liver.
- Addition of bevacizumab to irinotecan- and oxaliplatin-based preoperative chemotherapy regimens does not increase morbidity after resection of colorectal liver metastases.
- VEGF isoforms and receptors expression throughout acute acetaminophen-induced liver injury and regeneration
- Compensatory growth mechanisms regulated by BMP and FGF signaling mediate liver regeneration in zebrafish after partial hepatectomy
- Inhibition of VEGF- and NO-dependent angiogenesis does not impair liver regeneration.
- Influence of Portosystemic Shunt on Liver Regeneration after Hepatic Resection in Pigs
- Regulation of liver regeneration by growth factors and cytokines
- Advances in signaling in vertebrate regeneration as a prelude to regenerative medicine.
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