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Flavonoids

3-(2,2-Dimethyl-2H-1-benzopyran-6-yl)-7-hydroxy-4H-1-benzopyran-4-one

(53947-92-5)
Corylin is a major bioactive compound isolated from Psoralea corylifolia L; antibiotic or anticancer compound.IC50 value:Target: in vitro: Corylin showed an inhibitory effect on IL-6-induced STAT3 promoter activity in Hep3B cells with IC50 value of 1.37 uM [1].

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Neobavaisoflavone

(41060-15-5)
Neobavaisoflavone, an isoflavone isolated from Psoralea corylifolia, has striking anti-inflammatory and anti-cancer effects. IC50 value: 42.93 μM (toward CCRF-CEM cells); 114.64 μM [against HCT116 (p53(+/+)) cells] [2]Target:In vitro: In the cancer cells, neobavaisoflavone sensitizes human U373MG glioma cells to TRAIL-mediated apoptosis; upregulated DR5 expression; induced TRAIL-mediated apoptosis in human glioma cells by suppressing migration and invasion, and by inhibiting anoikis resi

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Hinokiflavone

(19202-36-9)
ChEBI: A biflavonoid that is apigenin substituted by a 4-(5,7-dihydroxy-4-oxo-4H-chromen-2-yl)phenoxy group at position 6. A diflavonyl ether, it is isolated from Rhus succedanea and has been found to possess significant cytotoxic otential.

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(+)-Brazilin

(474-07-7)
Chiefly as a dye.Has also been recommended as indicator in acid-base titrations; acids = yellow, alkalies = carmine-red.

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Tectochrysin

(520-28-5)
Tectochrysin (Techtochrysin) is one of the major flavonoids of Alpinia oxyphylla Miquel. Tectochrysin (Techtochrysin) inhibits activity of NF-κB.

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Engeletin

(572-31-6)
Engeletin is a flavanonol glycoside isolated from hymenaea martiana, inhibits NF-κB signaling-pathway activation, and possesses anti-inflammatory, analgesic, diuresis, detumescence, and antibiosis effects.

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Avicularin

(572-30-5)
Avicularin is a bio-active flavonoid from plants, anti-inflammatory, anti-allergic, anti-oxidant, hepatoprotective, and anti-tumor activities. Avicularin exhibits anti-inflammatory activity through the suppression of ERK signaling pathway in LPS-stimulated RAW 264.7 macrophage cells. Avicularin ameliorates human hepatocellular carcinoma via the regulation of NF κB (p65), COX 2 and PPAR γ activities[1][2].

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Chrysoeriol

(491-71-4)
A methoxyflavonoid that selectively inhibits the formation of a carcinogenic estrogen metabolite in MCF-7 breast cancer cells. A metabolite of Luteolin (L475000).

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Isoginkgetin

(548-19-6)
Isoginkgetin is a MMP-9 inhibitor, also a Pre-mRNA Splicing Inhibitor with IC 50 of 30 uM.target : MMP-9 [1], Pre-mRNA Splicing [2]IC 50: 30 u M (Pre-mRNA Splicing)In vitro: Isoginkgetin inhibits HT1080 tumor cell invasion substantially. Isoginkgetin is also quite effective in inhibiting the activities of Akt and MMP-9 in MDA-MB-231 breast carcinomas and B16F10 melanoma. Isoginkgetin treatment result in marked decrease in invasion of these cells. isoginkgetin inhibit activities of both A

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Methylophiopogonanone A

(74805-92-8)
Methylophiopogonanone A, a major homoisoflavonoid in Ophiopogon japonicas, has both anti-oxidative and anti-inflammatory properties[1].

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Flavonoids, also known as bioflavonoids (bioflavonoids), are a type of compound that exists in nature and has a 2-phenyl flavonone structure. Widely distributed in the plant kingdom, it is a large class of important natural compounds. Flavonoids mostly have colors, and their different colors add more colors to the family of natural pigments.

Frequently Asked Questions

What are flavonoids and why are they important?

Flavonoids are a diverse group of phytonutrients found in almost all fruits and vegetables. They are known for their antioxidant, anti-inflammatory, and immune-supporting properties. Common subclasses include flavones, flavonols, flavanones, isoflavones, and anthocyanidins. Due to their health-promoting effects, flavonoids are widely used in dietary supplements, functional foods, and natural therapeutics.

What are the common natural sources of flavonoids?

Flavonoids occur naturally in a wide variety of plant-based foods and beverages. Rich sources include citrus fruits (flavanones), berries (anthocyanidins), onions and apples (flavonols), soybeans (isoflavones), and tea—especially green and black tea (catechins and theaflavins). Including a colorful diet with diverse fruits, vegetables, legumes, and herbs helps ensure adequate flavonoid intake.

What should buyers consider when sourcing high-quality flavonoid extracts?

When sourcing flavonoid extracts, buyers should evaluate:1. Purity and concentration levels (e.g., HPLC-certified assays).2. Botanical origin and extraction method (e.g., solvent-free or ethanol-based).3. Compliance with regulatory standards like ISO, GMP, or FDA GRAS status.4. Supplier transparency regarding heavy metals, pesticides, and microbial testing.5. Batch-to-batch consistency and documentation (Certificates of Analysis).These factors ensure safety, efficacy, and suitability for end-use applications.

Are there different types of flavonoid compounds used commercially?

Yes, several flavonoid compounds are commonly used in commercial products. Key examples include quercetin (a flavonol with strong antioxidant activity), hesperidin (a citrus flavanone supporting vascular health), epigallocatechin gallate (EGCG from green tea, known for metabolism support), genistein (a soy isoflavone used in hormonal health formulations), and rutin (used for capillary strength and anti-edema effects). Each type offers distinct biological activities and application benefits.

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