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Generation of Subcutaneous and Intrahepatic Human Hepatocellular Carcinoma Xenografts in Immunodeficient Mice
Published on: September 25, 2013
Interplays between genetic and environmental mechanisms trigger tumorigenic VEGF signalling in human HCC cell lines:
1Department of Anesthesiology and Experimental Research Center, Zhong Shan Hospital, Fudan University, Shanghai, China. yanfang@server.shcnc.ac.cn
Abstract:
The 'angiogenic switch' concept has been used to discover various pro- and anti-angiogenic molecules as pharmacotherapeutic strategies for cancers and other ischemic and inflammatory diseases; however, surprisingly little is known about the 'tumor angiogenic switch' in response to complex interplay between environmental and genetic mechanisms that are most importantly, hypothesis-driven, largely unsolved at the postgenomic level. The present study's aim is to identify those interplays between the expressing green fluorescence protein (EGFP) transcript and redox-driven vascular endothelial growth factor (VEGF) upstream mechanisms that influence tumorigenic VEGF signalling, by using multifactorial orthogonal statistical analyses, the non-transfected and transfected human hepatocellular carcinoma (HCC) cell lines, and quantitative 'sandwich' Elisa immunoassays. The unique results indicate valuable findings on the postgenomic level as follows. Fusion of the EGFP significantly triggers tumorigenic VEGF signalling in three E3-, F11- and A(3-1)-transfected human HCC cell lines, compared with the parental EGFP-free malignant hepatocellular carcinoma (MHCC)1 cell line; Redox-regulated VEGF upstream mechanism interplays dramatically mediate dual responses, either down- or upregulating tumorigenic VEGF signalling, which depends on individual post-transcriptional regulation or upstream modification of the VEGF promoter in the three MHCC1, SMCC7721 and doxorubicin-resistance 7402/D+ non-transfected human HCC cell lines; and mechanism-based strategies for stimulating beta-adrenergic and P2-purinergic signal transduction and counteracting O2 and Ca2+-inflow significantly trigger tumorigenic VEGF signalling in ATRA/ATRP-driven networks, compared with controls of the non-transfected cell types examined. The contrast data offer first pilot paradigms of searching for hypothesis-driven multifactorial interplays on tumorigenic VEGF signalling, which are valuable for further deciphering postgenome-wide VEGF upstream regulatory networks of switching on the tumor angiogenesis, and developing mechanism-based novel pharmacotherapeutic strategies.
Insights
The study reveals that expressing green fluorescence protein (EGFP) fusion triggers tumor growth signaling. Redox mechanisms and specific signaling pathways influence vascular endothelial growth factor (VEGF) activity, offering new therapeutic targets for cancer angiogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The 'angiogenic switch' is crucial for cancer progression, but the underlying mechanisms, especially at the postgenomic level, remain largely unknown.
- Understanding the interplay between genetic and environmental factors influencing tumor angiogenesis is vital for developing effective cancer therapies.
Purpose of the Study:
- To investigate the influence of expressing green fluorescence protein (EGFP) transcript and redox-driven mechanisms on tumor vascular endothelial growth factor (VEGF) signaling.
- To identify upstream regulatory networks controlling the 'tumor angiogenic switch'.
Main Methods:
- Utilized multifactorial orthogonal statistical analyses on human hepatocellular carcinoma (HCC) cell lines (transfected and non-transfected).
- Employed quantitative 'sandwich' ELISA immunoassays to measure VEGF signaling.
- Investigated the role of redox regulation and specific signaling pathways (beta-adrenergic, P2-purinergic).
Main Results:
- EGFP fusion significantly activated tumorigenic VEGF signaling in transfected HCC cell lines.
- Redox-regulated mechanisms demonstrated dual responses (up- or down-regulation) of VEGF signaling based on post-transcriptional modifications.
- Stimulation of specific signaling pathways and modulation of ion inflow triggered tumorigenic VEGF signaling.
Conclusions:
- EGFP fusion serves as a trigger for tumorigenic VEGF signaling, highlighting its role in the 'angiogenic switch'.
- Redox and specific signaling pathways are critical regulators of VEGF-driven tumor angiogenesis.
- Findings provide insights into postgenomic regulatory networks and potential targets for novel anti-angiogenic therapies.
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