Xanthoxyletin
Xanthoxyletin is a coumarin that can be isolated from Genus Zanthoxylum and Clausena. Xanthoxyletin has antioxidant and anti-inflammatory activities. Xanthoxyletin shows cytotoxic effects to cancer cells, and induces apoptosis and necrosis. Xanthoxyletin can be used for the research of cancer and inflammation.
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- CAS No.: 84-99-1
- Formule: C15H14O4
- Masse moléculaire:258.27
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Stockage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Activité biologique
Description
Cellular Effect
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| KB | IC50 |
133.12 μM
Compound: 8
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Cytotoxicity against human KB cells by resazurin microplate assay
Cytotoxicity against human KB cells by resazurin microplate assay
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[PMID: 21302964] |
| NCI-H187 | IC50 |
>200 μM
Compound: 8
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Cytotoxicity against human NCI-H187 by resazurin microplate assay
Cytotoxicity against human NCI-H187 by resazurin microplate assay
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[PMID: 21302964] |
| Vero | IC50 |
>200 μM
Compound: 8
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Cytotoxicity against african green monkey Vero cells by green fluorescent protein microplate assay
Cytotoxicity against african green monkey Vero cells by green fluorescent protein microplate assay
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[PMID: 21302964] |
In Vitro
Xanthoxyletin (1-500 µM; 30 min) inhibits DPPH radical with IC50 values of 247.1 μM and 63.8 μg/mL, and also shows a ferric reducing antioxidant power (FRAP) value of 45.2 µM[2]. Xanthoxyletin (10-500 µM; 24 h) shows cytotoxicity against HepG2, HCT116 and SK-LU-1 cancer cells with IC50 values of 78.2, 79.8 and 94.4 μM, respectively[2]. Xanthoxyletin (78 and 156 μM; 12 and 24 h) induces cell apoptosis and causes low necrosis[2].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
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Cell Line:HepG2, HCT116, SK-LU-1 and Vero cell lines
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Concentration:10-500 µM
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Incubation Time:24 hours
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Result:Exhibited cytotoxicity to HepG2, HCT116 and SK-LU-1, but showed inactive effect to Vero cells.
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Cell Line:HepG2 cell line[2]
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Concentration:78 and 156 μM
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Incubation Time:12 and 24 hours
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Result:Induced apoptosis percentage of 49.6% and 64.2% at the dose of 78 and 156 μM, respectively. Showed a better apoptosis inducing effect that cisplatin.
Chemical Information
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CAS No. 84-99-1
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Masse moléculaire 258.27
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Formule C15H14O4
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SMILES
O=C(O1)C=CC(C1=C2)=C(OC)C3=C2OC(C)(C)C=C3
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Structure Classification
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Initial Source
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Livraison
Room temperature in continental US; may vary elsewhere.
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Stockage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocole
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Apoptosis
Apoptosis, also called programmed cell death, is generally characterized by distinct morphological characteristics.
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TUNEL staining for apoptotic DNA fragmentation
TUNEL staining detects DNA strand breaks by using terminal deoxynucleotidyl transferase to add labeled nucleotides to exposed 3′-OH DNA termini, generating either microscopic staining in fixed cells or tissue sections, or fluorescence/cytometric signal in cell suspensions. TUNEL positivity reflects DNA fragmentation but should not be interpreted alone as definitive apoptosis, because TUNEL can also label necrotic, autolytic, mechanically damaged, or DNA-repair-associated DNA breaks.
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Annexin V plus membrane-impermeant dye apoptosis staining
Annexin V-based apoptosis assays rely on the detection of phosphatidylserine (PS) externalization from the inner leaflet of the plasma membrane to the outer leaflet, an early biochemical hallmark of apoptosis. Fluorescently labeled Annexin V binds PS in a calcium-dependent manner, enabling identification of early apoptotic cells by flow cytometry or fluorescence microscopy. When combined with a membrane-impermeant DNA-binding dye (e. g. , propidium iodide), this approach allows discrimination between viable (Annexin V−/dye−), early apoptotic (Annexin V+/dye−), and late apoptotic or necrotic (Annexin V+/dye+) cell populations by assessing membrane integrity and PS exposure.
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Apoptosis Solutions
Apoptosis is a regulated, generally non-lytic cell-death pathway that removes unwanted, damaged, infected, or abnormal cells through coordinated morphological changes, caspase activation, DNA fragmentation, and membrane remodeling. The intrinsic apoptosis pathway is controlled mainly by mitochondrial outer membrane permeabilization, BCL-2 family proteins, cytochrome c release, apoptosome formation, caspase-9 activation, and downstream executioner caspase-3/7 activation. The extrinsic apoptosis pathway is initiated by death receptors such as Fas, TNFR, and TRAIL receptors, which recruit adaptor proteins and activate caspase-8 before engaging executioner caspases or mitochondrial amplification through BID cleavage. Apoptosis is linked to many phenotypes, including cancer cell killing, tissue homeostasis, immune regulation, neurodegeneration, infection response, and treatment-induced cytotoxicity; unresolved questions include how apoptosis interacts with necroptosis, pyroptosis, ferroptos
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Research Protocol for Inflammation-related Diseases
The NLRP3 inflammasome is a cytosolic innate immune signaling platform that integrates priming signals and danger-signal activation to promote caspase-1 activation, maturation of IL-1β and IL-18, and gasdermin D-mediated pyroptotic cell death. The core experimental logic is to determine whether inflammatory disease phenotypes are driven by increased NLRP3 expression, ASC-containing inflammasome assembly, caspase-1 cleavage, GSDMD cleavage, and extracellular release of IL-1β/IL-18 rather than by nonspecific cell injury alone. The pathway is strongly linked to inflammation-related disease phenotypes because monosodium urate crystals activate NALP3/NLRP3 inflammasome signaling in gout-like crystal inflammation, cholesterol crystals activate NLRP3 inflammasomes in atherogenesis models, and DSS-induced intestinal inflammation has been reported to involve NLRP3 inflammasome activity. However, experimental colitis studies also show context-dependent protective effects of NLRP3 inflammasome co
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Cell Viability Determination by MTT Colorimetric Assay
The following protocol uses the MTT colorimetric assay as a classic literature-established method for assessing cell viability/metabolic activity in cultured mammalian cells. MTT[3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] is reduced by metabolically active cells to a colored formazan product; the amount of formazan is quantified spectrophotometrically and provides an indirect measure of metabolically active viable cells. Importantly, MTT reduction reflects cellular oxidoreductase/metabolic activity rather than an absolute direct count of living cells, so changes in cellular metabolism can alter the signal independently of cell number.
Pureté et documentation
Références
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)