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| Evodiamine is a bioactive alkaloid isolated primarily from the fruit of the traditional Chinese medicinal herb Evodia rutaecarpa.
Evodiamine is a natural alkaloid from Evodia rutaecarpa, a traditional Chinese medicine. It has various pharmacological activities, such as anti-inflammatory, anti-cancer, anti-microbial and metabolic regulation, but also shows hepatotoxicity and cardiotoxicity. Evodiamine — a naturally occurring quinazolinocarboline indole alkaloid isolated mainly from the dried, immature fruit of Tetradium ruticarpum, historically known as Evodia rutaecarpa or Evodiae Fructus. It is classified as an experimental plant-derived small molecule and multitarget anticancer lead compound. Standard abbreviations include EVO, EVD and EDM. Evodiamine interacts with topoisomerases, microtubules, mitochondrial death pathways and several oncogenic signalling networks, but it is not an approved anticancer drug and has extremely poor oral bioavailability. Primary mechanisms (ranked):
Bioavailability / PK relevance: Native evodiamine is poorly water-soluble, has limited gastrointestinal absorption, undergoes extensive metabolism and has exceptionally low systemic oral bioavailability in animal models; an approximate oral bioavailability of 0.1% has been reported in rats. Nanoparticles, phospholipid complexes, solid dispersions, liposomes and structural analogues improve exposure experimentally, but no optimized formulation has established clinical anticancer efficacy. In-vitro vs systemic exposure relevance: Most anticancer experiments use micromolar evodiamine concentrations maintained for hours to days. These exposures substantially exceed the plasma concentrations expected after conventional oral evodiamine because of its poor dissolution, absorption and systemic availability. Direct translation of common cell-culture concentrations to oral supplementation is therefore not pharmacokinetically supported. Clinical evidence status: Preclinical only. Anticancer evidence consists primarily of cell-culture studies, xenografts and other animal models. No established randomized clinical trial evidence demonstrates efficacy against cancer, and evodiamine has no FDA, EMA or Health Canada approval as an anticancer therapy. Hepatotoxicity, cardiotoxicity, formulation limitations and uncertain human pharmacokinetics remain major development barriers. Evodiamine Mechanistic Profile
P: 0–30 min R: 30 min–3 hr G: >3 hr |
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| IAP2 (cellular Inhibitor of Apoptosis Protein 2) is a member of the Inhibitor of Apoptosis (IAP) protein family. • Like its family members, IAP2 functions to regulate cell survival primarily by inhibiting caspases and other components of the apoptotic machinery. • IAP2 also influences signaling pathways, such as NF-κB, which affects inflammatory responses, cell proliferation, and survival. • Overexpression or dysregulation of IAP2 has been observed in various malignancies. – Elevated IAP2 levels can help tumor cells evade apoptosis, promoting tumor growth and survival. – IAP2, similar to IAP1, may contribute to resistance against chemotherapies and targeted therapies by blocking cell death pathways. BIRC3 - Baculoviral IAP Repeat Containing 3 / Cellular Inhibitor of Apoptosis Protein 2 Abbreviation: BIRC3, cIAP2 Type: Inhibitor of apoptosis protein / E3 ubiquitin ligase Function: BIRC3/cIAP2 regulates apoptosis, inflammatory signaling, and cell survival through ubiquitination-dependent control of TNF receptor and NF-κB signaling pathways. It interacts with proteins including TRAF2 and RIPK1 and helps determine whether TNF-family signaling promotes survival, inflammation, or programmed cell death. Cancer: ↕ Context-dependent. Increased BIRC3 can suppress apoptosis, activate NF-κB survival signaling, and promote resistance to chemotherapy and radiotherapy in several cancers. However, BIRC3 can also function as a tumor suppressor, particularly in some B-cell malignancies, where deletion or inactivating mutation is associated with increased NF-κB signaling, aggressive disease, and treatment resistance. |
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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