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pad~ Luteolin-Related Studies

These studies are in .pdf format and require the free Adobe Reader application to read them.



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padAntileukemic Activity of Selected Natural Products in Taiwan
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padAntioxidant Activity, Cytotoxicity, and DNA Information of Glossogyne Tenuifolia
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padAntioxidant Enzymes Activity Involvement in Luteolin-Induced Human Lung Squamous Carcinoma CH27 Cell Apoptosis
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padAntiproliferative Activities of Parthenolide and Golden Feverfew Extract Against Three Human Cancer Cell Lines
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padAssociations of Dietary Flavonoids with Risk of Type 2 Diabetes, and Markers of Insulin Resistance and Systemic Inflammation in Women: A Prospective Study and Cross-Sectional Analysis
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padCombination of TRAIL and Luteolin Enhances Apoptosis In Human Cervical Cancer HeLa Cells
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padCytotoxic Effect Of Plantago Spp. On Cancer Cell Lines
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padCytotoxicity and Antiproliferative Activities of Several Phenolic Compounds Against Three Melanocytes Cell Lines: Relationship Between Structure and Activity
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padDeglucuronidation Of A Flavonoid, Luteolin Monoglucuronide, During Inflammation
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padDietary Flavonoids: Bioavailability, Metabolic Effects, and Safety
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padEffects Of Dietary Flavonoids On Major Signal Transduction Pathways In Human Epithelial Cells
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padEffect of Flavonoids On Cell Cycle Progression In Prostate Cancer Cells
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padEffects of Luteolin 5-O-B-rutinoside in Streptozotochin-Induced Diabetic Rat
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padEffects of Luteolin and Other Flavonoids in IgE-Mediated Allergic Reactions
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padEffects Of Luteolin And Quercetin, Inhibitors Of Tyrosine Kinase, On Cell Growth And Metastasis-Associated Properties In A431 Cells Overexpressing Epidermal Growth Factor Receptor
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padEffects Of Several Flavonoids On The Growth Of B16f10 and SK-Mel-1 Melanoma Cell Lines: Relationship Between Structure And Activity
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padEffect of Three Flavonoids, 5,7,39,49-Tetrahydroxy-3-methoxy Flavone, Luteolin, and Quercetin, on the Stimulus-Induced Superoxide Generation and Tyrosyl Phosphorylation of Proteins in Human Neutrophil
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padEffects of Luteolin on the Inhibition of Proliferation and Induction of Apoptosis in Human Myeloid Leukaemia Cells
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padEffects Of Several Polyhydroxylated Flavonoids On The Growth Of B16F10 Melanoma And Melan-A Melanocyte Cell Lines: Influence Of The Sequential Oxidation State Of The Flavonoid Skeleton
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padEffects Of Structurally Related Flavonoids On Cell Cycle Progression Of Human Melanoma Cells: Regulation Of Cyclin-Dependent Kinases CDK2 and CDK1
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padEfflux of Dietary Flavonoid Quercetin 4'-B-Glucoside across Human Intestinal Caco-2 Cell Monolayers by Apical Multidrug Resistance-Associated Protein-2
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padEstrogen Receptor A As A Target For Indole-3-Carbinol
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padEstrogen-Inducible Uterine Flavonoid Binding Sites: Is It Time To Reconsider?
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padEvaluation for Safety of Antioxidant Chemopreventive Agents
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padFlavonoid Luteolin Prevents LPS-Induced NF-kB Signaling and Gene Expression by Blocking IkB Kinase Activity in Intestinal Epithelial Cells and Bone Marrow-derived Dendritic Cells
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padFlavonoids Suppress Androgen-Independent Human Prostate Tumor Proliferation
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padHigh Intake of Specific Carotenoids and Flavonoids Does Not Reduce the Risk of Bladder Cancer
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padImmunomodulatory Activities of Flavonoids, Monoterpenoids, Triterpenoids, Indoid Glycosides and Phenolic Compounds of Plantago Species
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padIncrease of Bax/ Bcl-XL Ratio And Arrest Of Cell Cycle By Luteolin In Immortalized Human Hepatoma Cell Line
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padIndividual and Interactive Effects of Apigenin Analogs on G2/M Cell-Cycle Arrest in Human Colon Carcinoma Cell Lines
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padInduction of Cancer Cell Apoptosis by Flavonoids Is Associated with Their Ability to Inhibit Fatty Acid Synthase Activity
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padInhibitory Effect Of Luteolin On Hepatocyte Growth Factor/Scatter Factor-Induced HepG2 Cell Invasion Involving Both MAPK/ERKs and PI3K–Akt Pathways
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padInhibition Of Cancer Cell Growth By Crude Extract And The Phenolics Of Terminalia Chebula Retz. Fruit
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padInhibition Of Environmental Estrogen–Induced Proliferation Of Human Breast Carcinoma MCF-7 Cells By Flavonoids
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padInhibitory Actions Of Luteolin On The Growth And Arylamine N-Acetyltransferase Activity In Strains Of Helicobacter Pylori From Ulcer Patients
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padIntestinal Absorption Of Luteolin and Luteolin 7-O-L-Glucoside in Rats and Humans
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padIsolation And Structure Elucidation Of Phenolic Antioxidants From Tamarind (Tamarindus Indica L.) Seeds And Pericarp
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padIsolation, Structure Elucidation And Antioxidant Potential Of The Major Phenolic And Flavonoid Compounds In Brined Olive Drupes
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padLuteolin And Chrysin Differentially Inhibit Cyclooxygenase-2 Expression And Scavenge Reactive Oxygen Species But Similarly Inhibit Prostaglandin-E2 Formation In Raw 264.7 Cells
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padLuteolin Induces Apoptosis Via Death Receptor 5 Upregulation In Human Malignant Tumor Cells
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padLuteolin-Inhibited Arylamine N-acetyltransferase Activity and DNA-2-Aminofluorene Adduct in Human and Mouse Leukemia Cells
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padLuteolin in the Treatment of Chronic Obstructive Bronchitis
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padLuteolin Is A Flavonoid That Has Been Shown To Reduce Proinflammatory Molecule Expression In Vitro
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padLuteolin Sensitizes Tumor Necrosis Factor-A-Induced Apoptosis In Human Tumor Cells
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padLuteolin Induced DNA Damage Leading To Human Lung Squamous
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padLuteolin Reduces Lipopolysaccharide (LPS)-Induced Lethal Toxicity And Expression Of Proinflammatory Molecules In Mice
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padMetabolic Fate of Luteolin and Its Functional Activity at Focal Site
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padMolecular Mechanisms of Cell Cycle Block by Methionine Restriction in Human Prostate Cancer Cells
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padNatural Inhibitors of Tumor Necrosis Factor-a Production, Secretion and Function
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padNew Flavonoids From Avicennia Marina
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padNuclear Type II [3H]Estradiol Binding Sites: A Histone H3–H4 Complex
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padPhenolics with Inhibitory Activity on Mouse Brain Monoamine Oxidase (MAO)
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padPhotoprotection by Topical Application of Achyrocline Satureioides (‘Marcela’)
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padPolyphenols from Plants Used In Traditional Indonesian Medicine (Jamu): Uptake And Antioxidative Effects In Rat H4IIE Hepatoma Cells
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padPomegranate (Punica granatum) Pure Chemicals Show Possible Synergistic Inhibition Of Human PC-3 Prostate Cancer Cell Invasion Across Matrigel™
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padPro-Apoptotic Effects Of The Flavonoid Luteolin In Rat H4IIE Cells
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padProtective Effect Of Quercetin And Luteolin In Human Melanoma HMB-2 Cells
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padProtein Kinase C Inhibition and X-Linked Inhibitor of Apoptosis Protein Degradation Contribute to the Sensitization Effect of Luteolin on Tumor Necrosis Factor–Related Apoptosis-Inducing Ligand–Induced Apoptosis in Cancer Cells
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padRapid Dereplication Of Estrogenic Compounds In Pomegranate (Punica Granatum) Using On-Line Biochemical Detection Coupled To Mass Spectrometry
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padRegioselectivity of Phase II Metabolism of Luteolin and Quercetin by UDP-Glucuronosyl Transferases
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padRegulation Of Igf-I Production And Proliferation Of Human Leiomyomal Smooth Muscle Cells By Scutellaria Barbata D. Don In Vitro: Isolation Of Flavonoids Of Apigenin And Luteolon As Acting Compounds
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padSteroid Hormone Activity Of Flavonoids And Related Compounds
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padStructural Requirements For The Flavonoid-Mediated Modulation Of Glutathione S-Transferase P1-1 and GS-X Pump Activity in MCF7 Breast Cancer Cells
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padTreatment of Corneal Neovascularization with Dietary Isoflavonoids and Flavonoids
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padVarious Abstracts on Luteolin and Cancer from PubMed
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padWogonin and Fisetin Induce Apoptosis in Human Promyeloleukemic Cells Accompanied by a Decrease of Reactive Oxygen Species
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padX-Linked Inhibitor Of Apoptosis (XIAP) Confers Human Trophoblast Cell Resistance To Fas-Mediated Apoptosis
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The statements made here have not been evaluated by the FDA. The foregoing statements are based upon sound and reliable studies, and are meant for informational purposes. Consult with your medical practitioner to determine the underlying cause of your symptoms.

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