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| Ginkgo biloba from an ancient tree. Ginkgo biloba leaf extracts (commonly standardized as EGb 761, ~24% flavonol glycosides and ~6% terpene lactones) are best known for antioxidant, anti-inflammatory, platelet-activating factor (PAF) antagonism, and neurovascular effects. In preclinical cancer models, Ginkgo constituents have been associated with modulation of NF-κB, Nrf2, MAPK, and PI3K/AKT pathways, along with effects on cell cycle, apoptosis, and angiogenesis. Clinical oncology evidence is limited and heterogeneous. Important safety considerations include antiplatelet effects (bleeding risk) and CYP/P-gp interactions (product- and dose-dependent). -Ginkgo can inhibit platelet aggregation -Scavenges free radicals; reduces oxidative stress in neuronal cells -Suppresses pro-inflammatory cytokines (e.g., TNF-α, IL-1β). -Enhances microcirculation and oxygen delivery to brain tissues. -Reduces Aβ plaque formation and associated neurotoxicity. -May improve memory, attention, and processing speed in early-stage AD.
Time-Scale Flag (TSF): P / R / G
Time-Scale Flag (TSF): P / R / G
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| Source: |
| Type: enzyme |
| ACC-α (Acetyl-CoA Carboxylase alpha) is a cytosolic isoform of ACC that is primarily involved in the regulation of fatty acid synthesis in lipogenic tissues, such as liver and adipose tissue. ACC-α is a key enzyme in the biosynthesis of fatty acids, particularly in the context of de novo lipogenesis. ACC is a biotin-containing enzyme that exists in two main isoforms: ACC-α and ACC-β. Overexpression of ACC-α has been linked to increased fatty acid synthesis, which can contribute to cancer cell growth and survival. ACC-β (Acetyl-CoA Carboxylase beta) is a mitochondrial isoform of ACC that is primarily involved in the regulation of fatty acid oxidation. In general, high ACC expression is associated with: - Poor prognosis - Increased tumor size - Metastasis - Resistance to chemotherapy -Poor response to treatment Low ACC expression is associated with: - Better prognosis - Smaller tumor size - Less metastasis - Better response to chemotherapy - Better response to treatment |
| 1186- | Gb, | Ginkgolic acid suppresses the development of pancreatic cancer by inhibiting pathways driving lipogenesis |
| - | in-vitro, | PC, | NA | - | in-vitro, | Nor, | HUVECs | - | in-vivo, | PC, | 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
Filter Conditions: Pro/AntiFlg:% IllCat:% CanType:% Cells:% prod#:89 Target#:932 State#:% Dir#:1
wNotes=0 sortOrder:rid,rpid