| Literature DB >> 24504124 |
Eliene Bogaerts1, Femke Heindryckx2, Yves-Paul Vandewynckel1, Leo A Van Grunsven3, Hans Van Vlierberghe1.
Abstract
Primary liver tumours have a high incidence and mortality. The most important forms are hepatocellular carcinoma and intrahepatic cholangiocarcinoma, both can occur together in the mixed phenotype hepatocellular-cholangiocarcinoma. Liver progenitor cells (LPCs) are bipotential stem cells activated in case of severe liver damage and are capable of forming both cholangiocytes and hepatocytes. Possibly, alterations in Wnt, transforming growth factor-β, Notch and hypoxia pathways in these LPCs can cause them to give rise to cancer stem cells, capable of driving tumourigenesis. In this review, we summarize and discuss current knowledge on the role of these pathways in LPC activation and differentiation during hepatocarcinogenesis.Entities:
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Year: 2014 PMID: 24504124 PMCID: PMC3977811 DOI: 10.3892/ijo.2014.2286
Source DB: PubMed Journal: Int J Oncol ISSN: 1019-6439 Impact factor: 5.650
Selection of LPC markers and their potential role in hepatocarcinogenesis.
| Abbreviation | Full name | Role in HCC and/or CC development |
|---|---|---|
| CK7 | (cyto) keratin 7 | Increased expression of these cholangiocytic markers in primary liver |
| CK19 | (cyto) keratin 19 | tumours indicate poor prognosis ( |
| ALB | Albumin | Hepatocyte-specific marker, upregulated in ICC, compared to other cholangiocellular tumours like extrahepatic cholangiocarcinoma ( |
| OPN | Osteopontin | Restricted to cholangiocytes lining the canals of Hering, good LPC marker for lineage studies ( |
| OCT4/Pou5f1 | Octamere binding transcription factor/Pou domain class 5, transcription factor 1 | Embryonic transcription factor involved in stem cell self-renewal. Possible prognostic marker for HCC, and upregulated in chemoresistant liver cancer cells ( |
| AFP | α-fetoprotein | Fetal serum protein, often but not always re-expressed in HCC and CHC ( |
| LIF | Leukemia inhibitory factor | Cells are pushed to differentiate during decreased LIF levels. LIF is elevated in LPCs and known to induce acute phase proteins in hepatocytes ( |
| Sox 9 | SRY-related HMG box transcription factor 9 | Transcription factor involved in cholangiocyte-specific development ( |
| CD133 | Prominin 1 | Cancer stem cell marker, upregulated in most primary liver cancers. |
| CD34 | CD34 antigen | Cancer cell marker mainly expressed in early hematopoietic cells. |
| CD44 | CD44 antigen | Upregulated in most primary liver cancers, regulation associated with more aggressive phenotype and treatment resistance ( |
| CD56/NCAM | Neural cell adhesion molecule | Shift from E-cadherin to NCAM expression indicates epithelial mesenchymal transition |
| CD117 | c-Kit | Proto-oncogene, upregulation due to mutation occurs in many tumours. |
Figure 1.Schematic representation of the role of Wnt, Notch, TGF-β and Hif-1α signalling in hepatocytes, cholangiocytes and liver progenitor cells in hepatocarcinogenesis. The cell growth promoting effects of the Wnt and Notch pathways on hepatocytes and cholangiocytes, respectively, as well as their differential role on liver progenitor cells. The complicated dual role of TGF-β as guardian of cell cycle control, as well as its tumour promoting and invasion and metastasis inducing potential in all cell types is visualised. Finally, the complex interactions between these three pathways, and the possible influence of the HIF-1 pathway is presented.