Epithelial ovarian cancer: Difference between revisions
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* Increased cellular proliferation | * Increased cellular proliferation | ||
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|CSF-1/fms<ref name="pmid28629162">{{cite journal |vauthors=Dwyer AR, Greenland EL, Pixley FJ |title=Promotion of Tumor Invasion by Tumor-Associated Macrophages: The Role of CSF-1-Activated Phosphatidylinositol 3 Kinase and Src Family Kinase Motility Signaling |journal=Cancers (Basel) |volume=9 |issue=6 |pages= |date=June 2017 |pmid=28629162 |pmc=5483887 |doi=10.3390/cancers9060068 |url=}}</ref> | |CSF-1/fms<ref name="pmid21761359">{{cite journal |vauthors=Saad AF, Hu W, Sood AK |title=Microenvironment and pathogenesis of epithelial ovarian cancer |journal=Horm Cancer |volume=1 |issue=6 |pages=277–90 |date=December 2010 |pmid=21761359 |pmc=3199131 |doi=10.1007/s12672-010-0054-2 |url=}}</ref><ref name="pmid28629162">{{cite journal |vauthors=Dwyer AR, Greenland EL, Pixley FJ |title=Promotion of Tumor Invasion by Tumor-Associated Macrophages: The Role of CSF-1-Activated Phosphatidylinositol 3 Kinase and Src Family Kinase Motility Signaling |journal=Cancers (Basel) |volume=9 |issue=6 |pages= |date=June 2017 |pmid=28629162 |pmc=5483887 |doi=10.3390/cancers9060068 |url=}}</ref><ref name="pmid19711348">{{cite journal |vauthors=Abraham D, Zins K, Sioud M, Lucas T, Schäfer R, Stanley ER, Aharinejad S |title=Stromal cell-derived CSF-1 blockade prolongs xenograft survival of CSF-1-negative neuroblastoma |journal=Int. J. Cancer |volume=126 |issue=6 |pages=1339–52 |date=March 2010 |pmid=19711348 |pmc=3222589 |doi=10.1002/ijc.24859 |url=}}</ref> | ||
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* Increased macrophage survival | * Increased macrophage survival |
Revision as of 15:53, 26 February 2019
Editor-In-Chief: C. Michael Gibson, M.S., M.D. [1]Associate Editor(s)-in-Chief: Hannan Javed, M.D.[2]
Possible genetic alteration in epithelial ovarian cancers | ||
---|---|---|
Protein | Normal function | Result of mutation |
Epidermal growth factor receptor (HER-1)[1][2] |
|
|
Human Epidermal Growth Factor Receptor 2 (HER-2)[1][2] |
|
|
Non-receptor tyrosine kinase Src[3][4] | Involved in regulation of
|
|
CSF-1/fms[5][6][7] |
|
|
ILGF/ILGFR | ||
k-ras | ||
b-raf | ||
TGF-β | ||
myc | ||
Cyclin D/Cdk4/6 | ||
Cyclin E/Cdk2 | ||
Cyclin B/Cdk1 | ||
p16 | ||
p27 (kip-1) | ||
p21 (WAF-1) | ||
NFκB | ||
NOEY(ARHI) | ||
PIP3/Akt | ||
PTEN | ||
p53 | ||
BRCA1 | ||
BRCA2 | ||
MLH1/MSH2 | ||
Fas ligand | ||
HLA-G | ||
hTERT | ||
VEGF/VEGFR | ||
IL-8 | ||
EphA2 | ||
MMPs | ||
αvβ3 | ||
FAK | ||
E-cadherin | ||
References
- ↑ 1.0 1.1 Wee P, Wang Z (May 2017). "Epidermal Growth Factor Receptor Cell Proliferation Signaling Pathways". Cancers (Basel). 9 (5). doi:10.3390/cancers9050052. PMC 5447962. PMID 28513565.
- ↑ 2.0 2.1 Iqbal N, Iqbal N (2014). "Human Epidermal Growth Factor Receptor 2 (HER2) in Cancers: Overexpression and Therapeutic Implications". Mol Biol Int. 2014: 852748. doi:10.1155/2014/852748. PMC 4170925. PMID 25276427.
- ↑ Zan L, Wu H, Jiang J, Zhao S, Song Y, Teng G, Li H, Jia Y, Zhou M, Zhang X, Qi J, Wang J (July 2011). "Temporal profile of Src, SSeCKS, and angiogenic factors after focal cerebral ischemia: correlations with angiogenesis and cerebral edema". Neurochem. Int. 58 (8): 872–9. doi:10.1016/j.neuint.2011.02.014. PMC 3100427. PMID 21334414.
- ↑ Reinecke JB, Katafiasz D, Naslavsky N, Caplan S (April 2014). "Regulation of Src trafficking and activation by the endocytic regulatory proteins MICAL-L1 and EHD1". J. Cell. Sci. 127 (Pt 8): 1684–98. doi:10.1242/jcs.133892. PMC 3986674. PMID 24481818.
- ↑ Saad AF, Hu W, Sood AK (December 2010). "Microenvironment and pathogenesis of epithelial ovarian cancer". Horm Cancer. 1 (6): 277–90. doi:10.1007/s12672-010-0054-2. PMC 3199131. PMID 21761359.
- ↑ Dwyer AR, Greenland EL, Pixley FJ (June 2017). "Promotion of Tumor Invasion by Tumor-Associated Macrophages: The Role of CSF-1-Activated Phosphatidylinositol 3 Kinase and Src Family Kinase Motility Signaling". Cancers (Basel). 9 (6). doi:10.3390/cancers9060068. PMC 5483887. PMID 28629162.
- ↑ Abraham D, Zins K, Sioud M, Lucas T, Schäfer R, Stanley ER, Aharinejad S (March 2010). "Stromal cell-derived CSF-1 blockade prolongs xenograft survival of CSF-1-negative neuroblastoma". Int. J. Cancer. 126 (6): 1339–52. doi:10.1002/ijc.24859. PMC 3222589. PMID 19711348.