| Source: CGL-Driver Genes |
| Type: Oncogene |
| RAC‑α serine/threonine‑protein kinase (commonly referred to as AKT1) It is known as the “survival kinase”. Akt mediates cell survival proliferation mainly by inhibiting the Bcl2 and MDM2 pathways, which otherwise promotes apoptosis. Mechanisms of Akt1 in Cancer Cell Survival: Akt1 promotes cell survival by inhibiting apoptotic pathways, allowing cancer cells to evade programmed cell death. Cell Proliferation: It enhances cell cycle progression and proliferation through various signaling pathways. Metabolism: Akt1 regulates glucose metabolism and lipid synthesis, supporting the metabolic demands of rapidly dividing cancer cells. Angiogenesis: It promotes the formation of new blood vessels, facilitating tumor growth and metastasis. Akt1 is frequently activated, with its expression levels often correlating with prognosis across various cancer types. |
| 1261- | CAP, | Capsaicin inhibits glycolysis in esophageal squamous cell carcinoma by regulating hexokinase‑2 expression |
| - | in-vitro, | ESCC, | KYSE150 |
| 2787- | CHr, | Network pharmacology unveils the intricate molecular landscape of Chrysin in breast cancer therapeutics |
| - | Analysis, | Var, | MCF-7 |
| 4252- | EA, | Effect of ellagic acid on BDNF/PI3K/AKT-mediated signaling pathways in mouse models of depression |
| - | in-vivo, | NA, | NA |
| 2922- | LT, | Combination of transcriptomic and proteomic approaches helps unravel the mechanisms of luteolin in inducing liver cancer cell death via targeting AKT1 and SRC |
| - | in-vitro, | Liver, | HUH7 |
| 2912- | LT, | Luteolin: a flavonoid with a multifaceted anticancer potential |
| - | Review, | Var, | NA |
| 100- | QC, | Inhibition of Prostate Cancer Cell Colony Formation by the Flavonoid Quercetin Correlates with Modulation of Specific Regulatory Genes |
| - | in-vitro, | Pca, | PC3 | - | in-vitro, | Pca, | DU145 | - | in-vitro, | Pca, | LNCaP |
| 4912- | Sal, | Salinomycin induces cell death with autophagy through activation of endoplasmic reticulum stress in human cancer cells |
| - | in-vitro, | Lung, | A549 | - | in-vitro, | Lung, | H460 | - | in-vitro, | Lung, | Calu-1 | - | in-vitro, | Lung, | H157 |
| 3195- | SFN, | AKT1/HK2 Axis-mediated Glucose Metabolism: A Novel Therapeutic Target of Sulforaphane in Bladder Cancer |
| - | in-vitro, | Bladder, | UMUC3 |
| 2448- | SFN, | Sulforaphane and bladder cancer: a potential novel antitumor compound |
| - | Review, | Bladder, | NA |
Query results interpretion may depend on "conditions" listed in the research papers. Such Conditions may include : -low or high Dose -format for product, such as nano of lipid formations -different cell line effects -synergies with other products -if effect was for normal or cancerous cells
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