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| A germacranolide sesquiterpene lactone (GSL) was isolated from Siegesbeckia glabrescens Germacranolide — Germacranolides are a structural subclass of plant-derived sesquiterpene lactones built on a ten-membered germacrane ring fused to a lactone moiety. Primary mechanisms (ranked):
Bioavailability / PK relevance: No compound-specific absorption, distribution, metabolism, excretion, plasma-exposure, or oral-bioavailability data were identified for the S. glabrescens GSL. Sesquiterpene lactones commonly have poor aqueous solubility, chemical reactivity, rapid metabolism, and nonspecific thiol binding that may limit systemic exposure and therapeutic index. Pharmacokinetic findings from geraniol, germacrone, costunolide, or other germacranolides should not be assigned to this compound. In-vitro vs systemic exposure relevance: The anticancer experiments used approximately 1–20 µM GSL for transcriptional assays and up to 20 µM for protein analyses; reported proliferation IC50 values were approximately 5.1 µM in AsPC-1 cells and higher in nonmalignant C3H10T1/2 cells. Whether these concentrations are achievable or sustainable in humans is unknown because no human or animal systemic-exposure data were reported. The evidence is therefore concentration-driven and restricted principally to cell culture. Clinical evidence status: Preclinical only. Evidence for the specific S. glabrescens GSL consists primarily of biochemical and cell-culture studies in pancreatic cancer cells, mesenchymal reporter cells, and activated macrophages. No clinical trials, approved indications, validated dosing regimen, or human anticancer efficacy data were identified. Other germacranolides have broader preclinical anticancer literature, but that evidence cannot be generalized directly to this compound. Mechanistic Profile
P: 0–30 min R: 30 min–3 hr G: >3 hr |
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| NADPH (Nicotinamide adenine dinucleotide phosphate) is a crucial molecule in cellular metabolism, playing a key role in various biological processes, including energy production, antioxidant defenses, and biosynthesis. NADPH is essential for the proper functioning of the pentose phosphate pathway, which generates NADPH and ribose-5-phosphate. Cancer cells may exploit this pathway to support their high energy demands. Many types of cancer, including breast, lung, and colon cancer, exhibit increased NADPH levels compared to normal tissues. This increase is often associated with enhanced glucose-6-phosphate dehydrogenase (G6PD) activity, a key enzyme in the pentose phosphate pathway that generates NADPH. |
| 6561- | GSL, | Geraniol Pharmacokinetics, Bioavailability and Its Multiple Effects on the Liver Antioxidant and Xenobiotic-Metabolizing Enzymes |
| - | in-vivo, | Nor, | 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#:86 Target#:624 State#:% Dir#:2
wNotes=0 sortOrder:rid,rpid