| Features: | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Hops (Humulus lupulus) – Hops (known for beer brewing) contain compounds like xanthohumol that have demonstrated anticancer activity, particularly in breast and prostate cancer. -Phytochemicals, including flavonoids and polyphenols, which have antioxidant properties. -8-prenylnaringenin, may have estrogenic effects. (Hormone related cancers) -Anti-inflammatory properties Dose: Tea 1-3g/d, 1-3x/d. Extract 300-500mg/d Hops (Humulus lupulus) — the dried female inflorescences or hop cones of Humulus lupulus L., a perennial plant in the Cannabaceae family, are a complex botanical mixture containing prenylated flavonoids, polyphenols, α- and β-bitter acids, proanthocyanidins and volatile terpenes. Hops are classified as a botanical/natural-product mixture; the recommended abbreviation is Hops or HL. This entry represents whole hops and hop extracts rather than purified xanthohumol, which has substantially stronger and more specific anticancer evidence and is appropriately maintained as a separate product. Extract composition varies markedly with cultivar, processing and extraction method, so biological effects cannot be assumed to be uniform across commercial hop preparations. Primary mechanisms (ranked):
Bioavailability / PK relevance: Whole-hop extracts do not have a single definable pharmacokinetic profile because their constituent concentrations and extraction ratios vary substantially. Human studies with standardized hop preparations demonstrate systemic absorption of prenylated hop phenols, including 8-prenylnaringenin and isoxanthohumol-derived metabolites, with considerable inter-individual variability. Gut microbial conversion of isoxanthohumol to 8-prenylnaringenin can materially influence estrogenic exposure. Pharmacokinetic results from one standardized extract should therefore not be generalized to teas, beer, spent-hop extracts or unrelated commercial hop supplements. In-vitro vs systemic exposure relevance: The strongest whole-extract cancer studies are concentration-driven in-vitro experiments. For example, spent-hop extract produced pronounced inhibition of colorectal-cancer invasion and migration at approximately 200 µg/mL, whereas estrogen-metabolism effects have been reported at lower extract concentrations such as 5 µg/mL. Whether these concentrations and phytochemical ratios are achieved in human tumors after conventional oral hop supplementation is unknown. Direct systemic anticancer exposure from ordinary dietary hops or beer should not be assumed equivalent to experimental extracts. Clinical evidence status: Preclinical for cancer. Whole-hop and spent-hop extracts have demonstrated chemopreventive, anti-invasive, antiangiogenic and estrogen-metabolism effects in cell and animal models, but there is no established randomized clinical evidence that whole hops treat human cancer. Human hop-extract trials have primarily evaluated menopausal symptoms, sleep, metabolic effects, joint health, safety and pharmacokinetics rather than oncology efficacy. Hops are used as traditional herbal products for mild stress and sleep-related indications in European regulatory monographs, not for cancer treatment. Hops Cancer-Relevant Mechanisms
P: 0–30 min R: 30 min–3 hr G: >3 hr |
| Source: |
| Type: |
| Tumor cell invasion is a critical process in cancer progression and metastasis, where cancer cells spread from the primary tumor to surrounding tissues and distant organs. This process involves several key steps and mechanisms: 1.Epithelial-Mesenchymal Transition (EMT): Many tumors originate from epithelial cells, which are typically organized in layers. During EMT, these cells lose their epithelial characteristics (such as cell-cell adhesion) and gain mesenchymal traits (such as increased motility). This transition is crucial for invasion. 2.Degradation of Extracellular Matrix (ECM): Tumor cells secrete enzymes, such as matrix metalloproteinases (MMPs), that degrade the ECM, allowing cancer cells to invade surrounding tissues. This degradation facilitates the movement of cancer cells through the tissue. 3.Cell Migration: Once the ECM is degraded, cancer cells can migrate. They often use various mechanisms, including amoeboid movement and mesenchymal migration, to move through the tissue. This migration is influenced by various signaling pathways and the tumor microenvironment. 4.Angiogenesis: As tumors grow, they require a blood supply to provide nutrients and oxygen. Tumor cells can stimulate the formation of new blood vessels (angiogenesis) through the release of growth factors like vascular endothelial growth factor (VEGF). This not only supports tumor growth but also provides a route for cancer cells to enter the bloodstream. 5.Invasion into Blood Vessels (Intravasation): Cancer cells can invade nearby blood vessels, allowing them to enter the circulatory system. This step is crucial for metastasis, as it enables cancer cells to travel to distant sites in the body. 6.Survival in Circulation: Once in the bloodstream, cancer cells must survive the immune response and the shear stress of blood flow. They can form clusters with platelets or other cells to evade detection. 7.Extravasation and Colonization: After traveling through the bloodstream, cancer cells can exit the circulation (extravasation) and invade new tissues. They may then establish secondary tumors (metastases) in distant organs. 8.Tumor Microenvironment: The surrounding microenvironment plays a significant role in tumor invasion. Factors such as immune cells, fibroblasts, and signaling molecules can either promote or inhibit invasion and metastasis. |
| 7469- | Hops, | CHEMOPREVENTIVE PROPERTIES OF SPENT HOPS (HUMULUS LUPULUS L.) EXTRACT AGAINST ANGIOGENESIS, INVASION AND MIGRATION OF COLORECTAL CANCER CELLS |
| - | in-vitro, | CRC, | SW48 | - | in-vitro, | CRC, | HT29 |
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#:220 Target#:324 State#:% Dir#:1
wNotes=0 sortOrder:rid,rpid