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| Black hellebore is a perennial herb with a shallow rhizome blossoming during winter. Most often used with mistletoe. Helleborus niger extracts – Christmas Rose — Helleborus niger L. extracts are botanical preparations derived from the Christmas rose or black hellebore, a Ranunculaceae perennial native to parts of Europe. They are complex phytopharmaceutical mixtures rather than a single defined drug and may contain protoanemonin/ranunculin derivatives, steroidal saponins, ecdysteroids, phenolics, and, depending on plant part and preparation, bufadienolide cardiac glycosides such as hellebrin and hellebrigenin. HNE is commonly used as an abbreviation for Helleborus niger extract. Fresh-plant and fermented aqueous preparations have been used in anthroposophic and integrative medicine, including subcutaneous formulations, but H. niger extract is not an established anticancer drug and should not be equated with isolated hellebrin or hellebrigenin. Primary mechanisms (ranked):
Bioavailability / PK relevance: Formal human pharmacokinetic data for standardized Helleborus niger anticancer extracts are essentially absent. Extract composition varies substantially according to plant material and processing, and systemic exposures to individual active constituents after oral or subcutaneous administration are not well characterized. This makes translation from extract concentrations used experimentally to human tissue exposure uncertain. Bufadienolides additionally raise a potential narrow-therapeutic-index concern because Na⁺/K⁺-ATPase inhibition can affect cardiac electrophysiology. In-vitro vs systemic exposure relevance: Most direct anticancer evidence is concentration-driven in vitro. Some experiments with aqueous fermented HNE used approximately 600–1000 µg/mL to produce strong inhibition of tumor-cell migration, concentrations for which equivalent sustained systemic exposure in humans has not been demonstrated. Consequently, whole-extract in-vitro effects should not be interpreted as evidence that comparable antitumor concentrations are achievable clinically. Clinical evidence status: Preclinical. Helleborus niger extracts have demonstrated cytotoxic, pro-apoptotic, antiproliferative, antimigratory, and antiangiogenic activity in laboratory models. Clinical use exists mainly within complementary or anthroposophic medicine, and isolated case reports describe use alongside other therapies, but controlled human oncology trials demonstrating objective anticancer efficacy are lacking. It should therefore be classified as experimental adjunct use rather than an evidence-based cancer treatment. Helleborus niger Cancer-Relevant Mechanisms
P: 0–30 min R: 30 min–3 hr G: >3 hr |
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| Also known as CP32. Cysteinyl aspartate specific proteinase-3 (Caspase-3) is a common key protein in the apoptosis and pyroptosis pathways, and when activated, the expression level of tumor suppressor gene Gasdermin E (GSDME) determines the mechanism of tumor cell death. As a key protein of apoptosis, caspase-3 can also cleave GSDME and induce pyroptosis. Loss of caspase activity is an important cause of tumor progression. Many anticancer strategies rely on the promotion of apoptosis in cancer cells as a means to shrink tumors. Crucial for apoptotic function are executioner caspases, most notably caspase-3, that proteolyze a variety of proteins, inducing cell death. Paradoxically, overexpression of procaspase-3 (PC-3), the low-activity zymogen precursor to caspase-3, has been reported in a variety of cancer types. Until recently, this counterintuitive overexpression of a pro-apoptotic protein in cancer has been puzzling. Recent studies suggest subapoptotic caspase-3 activity may promote oncogenic transformation, a possible explanation for the enigmatic overexpression of PC-3. Herein, the overexpression of PC-3 in cancer and its mechanistic basis is reviewed; collectively, the data suggest the potential for exploitation of PC-3 overexpression with PC-3 activators as a targeted anticancer strategy. Caspase 3 is the main effector caspase and has a key role in apoptosis. In many types of cancer, including breast, lung, and colon cancer, caspase-3 expression is reduced or absent. On the other hand, some studies have shown that high levels of caspase-3 expression can be associated with a better prognosis in certain types of cancer, such as breast cancer. This suggests that caspase-3 may play a role in the elimination of cancer cells, and that therapies aimed at activating caspase-3 may be effective in treating certain types of cancer. Procaspase-3 is a apoptotic marker protein. Prognostic significance: • High Cas3 expression: Associated with good prognosis and increased sensitivity to chemotherapy in breast, gastric, lung, and pancreatic cancers. • Low Cas3 expression: Linked to poor prognosis and increased risk of recurrence in colorectal, hepatocellular carcinoma, ovarian, and prostate cancers. |
| 7339- | Hne, | Apoptosis-inducing activity of Helleborus niger in ALL and AML |
| - | in-vitro, | AML, | NA |
| 7348- | Hne, | Apoptosis‐inducing activity of Helleborus nigerin ALL and AML |
| - | in-vitro, | AML, | 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
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