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BIOMARKER:

VEGFA overexpression

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Other names: VEGFA, Vascular endothelial growth factor A, VEGF, Vascular Endothelial Growth Factor A121, Vascular Endothelial Growth Factor A165, Vascular Endothelial Growth Factor, VEGF-A, MVCD1
Entrez ID:
Related biomarkers:
11ms
VEGF-C propagates 'onward' colorectal cancer metastasis from liver to lung. (PubMed, Br J Cancer)
Collectively, these data indicate that VEGF-C can drive onward metastasis from the liver to the lung and suggest that targeting VEGF-C/NOTCH pathways may impair the progression of colorectal cancer.
Clinical • Clinical guideline • Retrospective data • Review • Journal
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VEGFC (Vascular Endothelial Growth Factor C)
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VEGFA overexpression • VEGFA expression
12ms
The prognostic value of vascular endothelial growth factor in endometrial cancer: A protocol for systematic review and meta-analysis. (PubMed, Medicine (Baltimore))
High VEGF expression can predict poor prognosis and poor clinicopathological features in patients with endometrial cancer, and it may be a valuable new indicator to evaluate the prognosis of patients with endometrial cancer.
Retrospective data • Review • Journal
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VEGFA (Vascular endothelial growth factor A)
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VEGFA overexpression • VEGFA expression • EGF overexpression • VASH2 overexpression
12ms
Computer-aided analysis reveals metallothionein-positive cancer-associated fibroblasts promote angiogenesis in gastric adenocarcinoma. (PubMed, Discov Oncol)
The M2d-mtCAF axis may play an important role in GC angiogenesis. This study not only enhances our understanding of the TME heterogeneity in GC but also sheds light on the interaction between CAFs and tumor-associated macrophages (TAMs) in tumor angiogenesis.
Journal
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MT1X (Metallothionein 1X)
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VEGFA overexpression • VEGFA expression
1year
Progress and perspectives on BMP9-ID1 activation of HIF-1α and VEGFA to promote angiogenesis in hepatic alveolar echinococcosis. (PubMed, Front Oncol)
Given the similarities between hepatic alveolar echinococcosis and liver cancer, current research is focused on treating the disease by targeting related signaling pathways using molecular drugs used for liver cancer. This article aims to summarize the biological regulation of HIF-1α and VEGFA overexpression in angiogenesis related to hepatic alveolar echinococcosis, as well as the impact of the BMP9-ID1 signaling pathway on the expression levels of HIF-1α and VEGFA, providing new insights for potential treatment strategies.
Review • Journal
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VEGFA (Vascular endothelial growth factor A) • HIF1A (Hypoxia inducible factor 1, alpha subunit)
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VEGFA overexpression • HIF1A expression
1year
Dynamics simulations of hypoxia inducible factor-1 regulatory network in cancer using formal verification techniques. (PubMed, Front Mol Biosci)
Moreover, it is observed that collective modulation of VEGF, ERK, and β-catenin is required for therapeutic intervention because these genes enhance the expression of GLUT-1 and play a significant role in cancer progression and angiogenesis. Additionally, SimBiology simulation unveils dynamic molecular interactions, emphasizing the need for targeted therapeutics to effectively regulate VEGF and ERK concentrations to modulate cancer cell proliferation.
Journal
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MYC (V-myc avian myelocytomatosis viral oncogene homolog) • HIF1A (Hypoxia inducible factor 1, alpha subunit) • SLC2A1 (Solute Carrier Family 2 Member 1)
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VEGFA overexpression • VEGFA expression
1year
Enterococcus faecalis co-cultured with oral cancer cells exhibits higher virulence and promotes cancer cell survival, proliferation, and migration: an in vitro study. (PubMed, J Med Microbiol)
faecalis adherence to cancer cells was demonstrated by the gentamicin protection assay...The results from this study indicate the possible risks of E. faecalis infection in oral cancer. An effective antibiotic strategy against E. faecalis to prevent complications associated with oral diseases, including cancer, is needed.
Preclinical • Journal • IO biomarker
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BCL2 (B-cell CLL/lymphoma 2)
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VEGFA overexpression
1year
PAARH promotes M2 macrophage polarization and immune evasion of liver cancer cells through VEGF protein. (PubMed, Int J Biol Macromol)
PAARH enhances the immune evasion capability of liver cancer cells by upregulating VEGF to promote M2 macrophage polarization, suggesting that PAARH may serve as a new therapeutic target for liver cancer.
Journal • PD(L)-1 Biomarker • IO biomarker
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PD-L1 (Programmed death ligand 1) • VEGFA (Vascular endothelial growth factor A) • HIF1A (Hypoxia inducible factor 1, alpha subunit) • PD-L2 (Programmed Cell Death 1 Ligand 2)
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VEGFA overexpression • HIF1A expression • VEGFA expression
1year
EGCG enhances antitumor effect of apatinib in nonsmall cell lung cancer by targeting VEGF signaling to inhibit glycolysis. (PubMed, Drug Dev Res)
EGCG regulated glycolysis levels in NSCLC through VEGF overexpression, and enhanced the antitumor effect of apatinib in NSCLC through VEGF-regulated glycolysis. Taken together, EGCG strengthened the protective effects of apatinib in NSCLC through glycolysis mediated by VEGF.
Journal
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LDHA (Lactate dehydrogenase A) • KDR (Kinase insert domain receptor) • HIF1A (Hypoxia inducible factor 1, alpha subunit) • HK2 (Hexokinase 2) • NRP1 (Neuropilin 1) • PKM (Pyruvate Kinase M1/2)
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VEGFA overexpression • VEGFA expression
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AiTan (rivoceranib)
1year
F13B regulates angiogenesis and tumor progression in hepatocellular carcinoma via the HIF-1α/VEGF pathway. (PubMed, Biomol Biomed)
These findings suggest that F13B regulates angiogenesis through the HIF-1α/VEGF pathway and plays a crucial role in HCC progression. Our results highlight the potential of F13B as a therapeutic target in HCC, providing novel insights into the molecular mechanisms of HCC and its prognostic significance.
Journal
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KDR (Kinase insert domain receptor) • HIF1A (Hypoxia inducible factor 1, alpha subunit) • MMP2 (Matrix metallopeptidase 2) • CCDC170(Coiled-Coil Domain Containing 170) • MMP9 (Matrix metallopeptidase 9) • F13B (Coagulation Factor XIII B Chain)
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VEGFA overexpression • VEGFA expression
1year
Tumour Marker Expression in Head and Neck Malignancies to Identify Potential Targets for Intraoperative Molecular Near-Infrared Imaging. (PubMed, Mol Diagn Ther)
This study highlights integrin αvβ6 and EGFR as viable FLI targets in OSCC and LSCC, especially integrin αvβ6 for tumour margin delineation. In PTC, despite lower expressions, the significant overexpression of VEGF-α, c-MET, and EGFR suggests their potential as FLI targets. Our findings support the development of tumour-targeted FLI tracers to improve surgical precision in HNC.
Journal
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EGFR (Epidermal growth factor receptor) • MET (MET proto-oncogene, receptor tyrosine kinase) • VEGFA (Vascular endothelial growth factor A) • EPCAM (Epithelial cell adhesion molecule)
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EGFR expression • EGFR overexpression • MET overexpression • VEGFA overexpression • VEGFA expression
1year
Immunotherapeutic Innovations in Clear Cell Renal Cell Carcinoma: Current Strategies and Future Directions. (PubMed, Cancer Diagn Progn)
Current AAT therapies comprise antibodies targeting VEGFs, tyrosine kinase inhibitors (TKi) (Sunitinib) that target neo-angiogenesis receptors, and competitive inhibitor receptors (Aflibercept) that trap VEGFA and PlGF...Despite these advances, ccRCC remains challenging to treat adequately. Thus, future research is imperative to better understand the biology and pathophysiology of RCC, the tumor microenvironment, and mechanisms of resistance, with the aim of developing new therapies.
Review • Journal • PD(L)-1 Biomarker • IO biomarker
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HIF1A (Hypoxia inducible factor 1, alpha subunit) • VEGFC (Vascular Endothelial Growth Factor C)
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VEGFA overexpression • HIF1A expression • VEGFA expression
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sunitinib
over1year
CircSNX6 promotes proliferation, metastasis, and angiogenesis in hepatocellular carcinoma via miR-383-5p/VEGFA signaling pathway. (PubMed, Sci Rep)
Subsequently, the stability of circRNA was evaluated through Ribonuclease R and actinomycin D treatment assays...Silencing circSNX6 also suppressed tumor formation and the metastasis of HCC cells in a mouse model. In summary, our findings suggest that circSNX6 promotes cell proliferation, metastasis, and angiogenesis in HCC by regulating the miR-383-5p/VEGFA pathway.
Journal
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MIR383 (MicroRNA 383)
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VEGFA overexpression • VEGFA expression
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dactinomycin