Gene Score gda Association Type Type Original DB Sentence supporting the association PMID PMID Year
Entrez Id: 2099
Gene Symbol: ESR1
ESR1
0.100 Biomarker disease BEFREE <b>Background:</b> Triple-negative breast cancer (TNBC) is a breast cancer that tests negative for estrogen receptor (ER), progesterone receptors, and human epidermal growth factor receptors 2 (HER2). 31839713 2019
Entrez Id: 2064
Gene Symbol: ERBB2
ERBB2
0.100 Biomarker disease BEFREE <b>Background:</b> Triple-negative breast cancer (TNBC) is a breast cancer that tests negative for estrogen receptor (ER), progesterone receptors, and human epidermal growth factor receptors 2 (HER2). 31839713 2019
Entrez Id: 5291
Gene Symbol: PIK3CB
PIK3CB
0.100 Biomarker disease BEFREE <b>Background:</b> The PI3K/AKT/mTOR pathway is an important oncogenic driver in triple-negative breast cancer (TNBC). 29675095 2018
Entrez Id: 5290
Gene Symbol: PIK3CA
PIK3CA
0.100 Biomarker disease BEFREE <b>Background:</b> The PI3K/AKT/mTOR pathway is an important oncogenic driver in triple-negative breast cancer (TNBC). 29675095 2018
Entrez Id: 5294
Gene Symbol: PIK3CG
PIK3CG
0.100 Biomarker disease BEFREE <b>Background:</b> The PI3K/AKT/mTOR pathway is an important oncogenic driver in triple-negative breast cancer (TNBC). 29675095 2018
Entrez Id: 5293
Gene Symbol: PIK3CD
PIK3CD
0.100 Biomarker disease BEFREE <b>Background:</b> The PI3K/AKT/mTOR pathway is an important oncogenic driver in triple-negative breast cancer (TNBC). 29675095 2018
Entrez Id: 207
Gene Symbol: AKT1
AKT1
0.100 Biomarker disease BEFREE <b>Background:</b> The PI3K/AKT/mTOR pathway is an important oncogenic driver in triple-negative breast cancer (TNBC). 29675095 2018
Entrez Id: 10134
Gene Symbol: BCAP31
BCAP31
0.010 Biomarker disease BEFREE <b>Conclusion</b>: These findings reveal the functional role of BCAP31, an ER-related protein, in EGFR dysregulation and TNBC development. 31588230 2019
Entrez Id: 1956
Gene Symbol: EGFR
EGFR
0.100 GeneticVariation disease BEFREE <b>Conclusion</b>: These findings reveal the functional role of BCAP31, an ER-related protein, in EGFR dysregulation and TNBC development. 31588230 2019
Entrez Id: 9332
Gene Symbol: CD163
CD163
0.020 Biomarker disease BEFREE <b>Conclusion:</b> Cancer-associated fibroblasts were associated with infiltration of CD163-positive macrophages and lymphatic metastasis, and may be potential prognostic predictors of TNBC. 30588247 2018
Entrez Id: 4233
Gene Symbol: MET
MET
0.100 GeneticVariation disease BEFREE <b>Conclusion:</b> Our case-control study suggests that MET T1010I seems to be a risk factor for TNBC in the Caucasian Greek population, in contrast with MET rs40239, where no correlation was found. 31213837 2019
Entrez Id: 5879
Gene Symbol: RAC1
RAC1
0.060 Biomarker disease BEFREE <b>Conclusion:</b> Our findings suggest that TUFT1/Rac1/β-catenin pathway may provide a potential target for more effective treatment of TNBC. 31338333 2019
Entrez Id: 1499
Gene Symbol: CTNNB1
CTNNB1
0.100 Biomarker disease BEFREE <b>Conclusion:</b> Our findings suggest that TUFT1/Rac1/β-catenin pathway may provide a potential target for more effective treatment of TNBC. 31338333 2019
Entrez Id: 207
Gene Symbol: AKT1
AKT1
0.100 Biomarker disease BEFREE <b>Conclusion:</b> Our results demonstrated that targeting MAT2B could suppress cell growth and migration and induce apoptosis by inhibiting the AKT and ERK pathways in TNBC. 31354356 2019
Entrez Id: 5594
Gene Symbol: MAPK1
MAPK1
0.100 Biomarker disease BEFREE <b>Conclusion:</b> Our results demonstrated that targeting MAT2B could suppress cell growth and migration and induce apoptosis by inhibiting the AKT and ERK pathways in TNBC. 31354356 2019
Entrez Id: 2048
Gene Symbol: EPHB2
EPHB2
0.100 Biomarker disease BEFREE <b>Conclusion:</b> Our results demonstrated that targeting MAT2B could suppress cell growth and migration and induce apoptosis by inhibiting the AKT and ERK pathways in TNBC. 31354356 2019
Entrez Id: 5291
Gene Symbol: PIK3CB
PIK3CB
0.100 Biomarker disease BEFREE <b>Conclusion:</b> We demonstrated that DFO could upregulate expression of TfR1 and DMT1 , which enhanced iron uptake via activating IL-6/PI3K/AKT signaling pathway in aggressive TNBCs. 31213851 2019
Entrez Id: 5294
Gene Symbol: PIK3CG
PIK3CG
0.100 Biomarker disease BEFREE <b>Conclusion:</b> We demonstrated that DFO could upregulate expression of TfR1 and DMT1 , which enhanced iron uptake via activating IL-6/PI3K/AKT signaling pathway in aggressive TNBCs. 31213851 2019
Entrez Id: 5290
Gene Symbol: PIK3CA
PIK3CA
0.100 Biomarker disease BEFREE <b>Conclusion:</b> We demonstrated that DFO could upregulate expression of TfR1 and DMT1 , which enhanced iron uptake via activating IL-6/PI3K/AKT signaling pathway in aggressive TNBCs. 31213851 2019
Entrez Id: 5293
Gene Symbol: PIK3CD
PIK3CD
0.100 Biomarker disease BEFREE <b>Conclusion:</b> We demonstrated that DFO could upregulate expression of TfR1 and DMT1 , which enhanced iron uptake via activating IL-6/PI3K/AKT signaling pathway in aggressive TNBCs. 31213851 2019
Entrez Id: 7018
Gene Symbol: TF
TF
0.010 Biomarker disease BEFREE <b>Conclusion:</b><sup>89</sup>Zr-transferrin targets human TNBC primary tumors significantly better than <sup>18</sup>F-FDG, as shown through PET imaging and biodistribution studies. 28848040 2018
Entrez Id: 29126
Gene Symbol: CD274
CD274
0.100 AlteredExpression disease BEFREE <b>Conclusions</b>: Expression of PD-L1 and low-level TILs in TNBC patients were associated with adverse clinical outcomes. 30929569 2019
Entrez Id: 100616224
Gene Symbol: MIR4753
MIR4753
0.010 Biomarker disease BEFREE <b>Conclusions:</b> The circEPSTI1-miR-4753/6809-BCL11A axis affect the proliferation and apoptosis of triple-negative breast cancer through the mechanism of competing endogenous RNAs (ceRNA). 30083277 2018
Entrez Id: 53335
Gene Symbol: BCL11A
BCL11A
0.040 Biomarker disease BEFREE <b>Conclusions:</b> The circEPSTI1-miR-4753/6809-BCL11A axis affect the proliferation and apoptosis of triple-negative breast cancer through the mechanism of competing endogenous RNAs (ceRNA). 30083277 2018
Entrez Id: 541471
Gene Symbol: MIR4435-2HG
MIR4435-2HG
0.020 Biomarker disease BEFREE <b>Conclusions:</b> We conclude that LncRNA AWPPH may promote the growth of triple-negative breast cancer by up-regulating FZD7. 30333256 2018