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| Inoscavin A was obtained from Sanghuangporus vaninii by the classic phytochemical separation technology. Inoscavin A — a naturally occurring polyphenolic pyrone and hispidin-derived fungal secondary metabolite with antioxidant and experimental anticancer activity. It is commonly abbreviated InA and has the molecular formula C25H18O9 and molecular weight approximately 462.4 g/mol. It has been isolated from medicinal fungi including Sanghuangporus vaninii, Sanghuangporus baumii (formerly Phellinus baumii), and Inonotus xeranticus. In cancer models, its best-supported molecular action is inhibition of Smoothened and downstream Hedgehog signaling. Inoscavin A remains an experimental natural product rather than an approved drug or established supplement-derived anticancer agent. Primary mechanisms (ranked):
Bioavailability / PK relevance: Human pharmacokinetics, oral bioavailability, metabolism, circulating concentrations, tissue penetration, and clinically tolerable exposure have not been established. Inoscavin A is therefore not presently amenable to evidence-based human dosing. Natural fungal abundance can also be low; one purification study recovered approximately 468 mg of purified Inoscavin A from 10 kg of S. vaninii sporocarp, emphasizing that mushroom intake cannot be equated with purified-compound exposure. In-vitro vs systemic exposure relevance: The principal cancer evidence consists of HT-29 colorectal cancer cell experiments and an HT-29 xenograft mouse model. Because human plasma exposure data are unavailable, it cannot presently be determined whether experimentally active concentrations are achievable systemically in humans. The reported lipoxygenase IC50 of approximately 6.8 µM is an enzyme-assay concentration and should not be interpreted as an achievable therapeutic plasma concentration. Clinical evidence status: Preclinical. Inoscavin A has demonstrated anticancer activity in cultured colorectal cancer cells and an HT-29 xenograft model, but there are no established human oncology trials, randomized clinical trials, approved indications, or validated adjunctive dosing protocols. The translational evidence is therefore substantially weaker than for clinically developed Smoothened inhibitors. Inoscavin A Cancer-Relevant Mechanisms
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| Source: CGL-CF |
| Type: HH |
| Sonic hedgehog, Shh; Indian hedgehog, Ihh; Desert hedgehog, Dhh ; Hh signaling pathway is able to regulate the EMT. Hh signaling-related factors, SHH, SMO and GLI1. Hedgehog signaling is a crucial pathway in embryonic development and tissue homeostasis, but its dysregulation has been implicated in various cancers. The Hedgehog (Hh) pathway is activated by the binding of Hedgehog ligands (such as Sonic Hedgehog, Indian Hedgehog, and Desert Hedgehog) to their receptors, primarily Patched (PTCH) and Smoothened (SMO). -Hedgehog pathway is crucial for the maintenance of stem cell populations. When deregulated, it can help sustain cancer stem cells (CSCs) that possess self-renewal properties, drive tumor recurrence, and confer resistance to conventional therapies. -Inhibitors of the pathway, such as vismodegib and sonidegib, have been developed and are used in clinical settings, particularly for treating advanced BCC and other Hedgehog-dependent tumors. |
| 33- | InA, | Inoscavin A, a pyrone compound isolated from a Sanghuangporus vaninii extract, inhibits colon cancer cell growth and induces cell apoptosis via the hedgehog signaling pathway |
| - | vitro+vivo, | Colon, | 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#:100 Target#:141 State#:% Dir#:1
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