Search results for "Indicaxanthin"

showing 10 items of 56 documents

Indicaxanthin, a multi-target natural compound from Opuntia ficus-indica fruit: From its poly-pharmacological effects to biochemical mechanisms and m…

2019

Abstract Over the latest years phytochemical consumption has been associated to a decreased risk of both the onset and the development of a number of pathological conditions. In this context indicaxanthin, a betalain pigment from Opuntia ficus-indica fruit, has been the object of sound research. Explored, at first, for its mere antioxidant potential, Indicaxanthin is now regarded as a redox-active compound able to exert significant poly-pharmacological effects against several targets in a number of experimental conditions both in vivo and in vitro. This paper aims to provide an overview on the therapeutical effects of indicaxanthin, ranging from the anti-inflammatory to the neuro-modulatory…

Models MolecularPyridinesOpuntia ficusPhytochemicalsContext (language use)Antioxidant potential01 natural sciencesMiceStructure-Activity Relationship03 medical and health scienceschemistry.chemical_compoundMulti targetCell Line TumorNeoplasmsSettore BIO/10 - BiochimicaBetalainDrug DiscoveryAnimalsHumansCell Proliferation030304 developmental biologyInflammationIndicaxanthin Multi-target compound Poly-pharmacology Antioxidant Antiinflammatory Antitumoral Antiproliferative Neuromodulator Molecular modellingPharmacologyBiological Products0303 health sciencesDose-Response Relationship DrugMolecular StructureTraditional medicine010405 organic chemistryNatural compoundOrganic ChemistryOpuntiaGeneral MedicineAntineoplastic Agents PhytogenicSettore CHIM/08 - Chimica FarmaceuticaBetaxanthins0104 chemical sciencesMice Inbred C57BLNeuroprotective AgentsPhytochemicalchemistryBlood-Brain BarrierFruitDrug Screening Assays AntitumorIndicaxanthinEuropean Journal of Medicinal Chemistry
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Phytochemical indicaxanthin suppresses 7-ketocholesterol-induced THP-1 cell apoptosis by preventing cytosolic Ca++ increase and oxidative stress

2013

7-Ketocholesterol (7-KC)-induced apoptosis of macrophages is considered a key event in the development of human atheromas. In the present study, the effect of indicaxanthin (Ind), a bioactive pigment from cactus pear fruit, on 7-KC-induced apoptosis of human monocyte/macrophage THP-1 cells was investigated. A pathophysiological condition was simulated by using amounts of 7-KC that can be reached in human atheromatous plaque. Ind was assayed within a micromolar concentration range, consistent with its plasma level after dietary supplementation with cactus pear fruit. Pro-apoptotic effects of 7-KC were assessed by cell cycle arrest, exposure of phosphatidylserine at the plasma membrane, varia…

NADPH oxidase-4MacrophageSettore BIO/10 - BiochimicaApoptosiIndicaxanthin7-Ketocholesterol
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Indicaxanthin from Opuntia ficus-indica Fruit Ameliorates Glucose Dysmetabolism and Counteracts Insulin Resistance in High-Fat-Diet-Fed Mice

2021

Obesity-related dysmetabolic conditions are amongst the most common causes of death globally. Indicaxanthin, a bioavailable betalain pigment from Opuntia ficus-indica fruit, has been demonstrated to modulate redox-dependent signalling pathways, exerting significant anti-oxidative and anti-inflammatory effects in vitro and in vivo. In light of the strict interconnections between inflammation, oxidative stress and insulin resistance (IR), a nutritionally relevant dose of indicaxanthin has been evaluated in a high-fat diet (HFD) model of obesity-related IR. To this end, biochemical and histological analysis, oxidative stress and inflammation evaluations in liver and adipose tissue were carried…

Opuntia ficus-indicaobesityPhysiologyindicaxanthin; <i>Opuntia ficus-indica</i>; phytochemicals; insulin resistance; obesity; inflammation; oxidative stress; dysmetabolismClinical BiochemistryindicaxanthinCell BiologyRM1-950phytochemicalsBiochemistryDysmetabolism<i>Opuntia ficus-indica</i>Oxidative stressinflammationinsulin resistanceTherapeutics. PharmacologyMolecular BiologyAntioxidants
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Evaluation of the IKKβ Binding of Indicaxanthin by Induced-Fit Docking, Binding Pose Metadynamics, and Molecular Dynamics

2021

Background: Indicaxanthin, a betaxanthin belonging to the betalain class of compounds, has been recently demonstrated to exert significant antiproliferative effects inducing apoptosis of human melanoma cells through the inhibition of NF-κB as the predominant pathway. Specifically, Indicaxanthin inhibited IκBα degradation in A375 cells. In resting cells, NF-κB is arrested in the cytoplasm by binding to its inhibitor protein IκBα. Upon stimulation, IκBα is phosphorylated by the IKK complex, and degraded by the proteasome, liberating free NF-κB into the nucleus to initiate target gene transcription. Inhibition of the IKK complex leads to the arrest of the NF-κB pathway.Methods: To acquire deta…

PharmacologyMolecular modelChemistryAllosteric regulationIKKβMetadynamicsindicaxanthinInhibitor proteinRM1-950Settore CHIM/08 - Chimica Farmaceuticamolecular dynamicsIκBαchemistry.chemical_compoundanticancer activityProteasomeDocking (molecular)Settore BIO/10 - BiochimicaBiophysicsbinding pose metadynamicsPharmacology (medical)induced fit dockingTherapeutics. PharmacologyIndicaxanthinOriginal ResearchFrontiers in Pharmacology
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Phytochemical indicaxanthin suppresses 7-ketocholesterol-induced THP-1 cell apoptosis by preventing cytosolic Ca(2+) increase and oxidative stress.

2012

7-Ketocholesterol (7-KC)-induced apoptosis of macrophages is considered a key event in the development of human atheromas. In the present study, the effect of indicaxanthin (Ind), a bioactive pigment from cactus pear fruit, on 7-KC-induced apoptosis of human monocyte/macrophage THP-1 cells was investigated. A pathophysiological condition was simulated by using amounts of 7-KC that can be reached in human atheromatous plaque. Ind was assayed within a micromolar concentration range, consistent with its plasma level after dietary supplementation with cactus pear fruit. Pro-apoptotic effects of 7-KC were assessed by cell cycle arrest, exposure of phosphatidylserine at the plasma membrane, varia…

Programmed cell deathPyridinesCellMedicine (miscellaneous)Apoptosismedicine.disease_causeMonocytesCell Linechemistry.chemical_compoundCytosolmedicineHumansSulfhydryl CompoundsKetocholesterolsNutrition and DieteticsChemistryPlant ExtractsMonocyteMacrophagesNF-kappa BNADPH OxidasesOpuntiaPhosphatidylserineAtherosclerosisPlaque AtheroscleroticCell biologyBetaxanthinsMitochondriaCytosolOxidative Stressmedicine.anatomical_structureApoptosisNADPH Oxidase 4FruitDietary SupplementsCalciumReactive Oxygen SpeciesIndicaxanthinOxidative stressPhytotherapyThe British journal of nutrition
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Phytochemical Indicaxanthin Inhibits Colon Cancer Cell Growth and Affects the DNA Methylation Status by Influencing Epigenetically Modifying Enzyme E…

2015

&lt;b&gt;&lt;i&gt;Background:&lt;/i&gt;&lt;/b&gt; Recently, we have shown anti-proliferative and pro-apoptotic effects of indicaxanthin associated with epigenetic modulation of the onco-suppressor &lt;i&gt;p16&lt;/i&gt;&lt;sup&gt;&lt;i&gt;INK4a&lt;/i&gt;&lt;/sup&gt; in the human colon cancer cell line CACO2. In the present study, the epigenetic activity of indicaxanthin and the mechanisms involved were further investigated in other colorectal cancer cell lines. &lt;b&gt;&lt;i&gt;Methods:&lt;/i&gt;&lt;/b&gt; LOVO1, CACO2, HT29, HCT116, and DLD1 cells were used to evaluate the potential influence of consistent dietary concentrations of indicaxanthin on DNA methylation, and the epigenetic mech…

PyridinesColorectal cancerMedicine (miscellaneous)BiologyDNA methyltransferaseEpigenesis Geneticchemistry.chemical_compoundCell Line TumorSettore BIO/10 - BiochimicaGeneticsmedicineHumansEpigeneticsCell Proliferationchemistry.chemical_classificationCell growthColorectal cancer Chemoprevention Phytochemicals Indicaxanthin Epigenetics DNA methyltransferase Molecular modeling BetalainsDNA Methylationmedicine.diseaseSettore CHIM/08 - Chimica FarmaceuticaBetaxanthinsSettore BIO/18 - GeneticaEnzymePhytochemicalchemistryColonic NeoplasmsDNA methylationCancer researchIndicaxanthinFood Science
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Anti-proliferative and pro-apoptotic activity of whole extract and isolated indicaxanthin from Opuntia ficus-indica associated with re-activation of …

2014

Phytochemicals may exert chemo-preventive effects on cells of the gastro-intestinal tract by modulating epigenome-regulated gene expression. The effect of the aqueous extract from the edible fruit of Opuntia ficus-indica (OFI extract), and of its betalain pigment indicaxanthin (Ind), on proliferation of human colon cancer Caco-2 cells has been investigated. Whole extract and Ind caused a dose-dependent apoptosis of proliferating cells at nutritionally relevant amounts, with IC50 400 ± 25 mg fresh pulp equivalents/mL, and 115 ± 15 μM (n = 9), respectively, without toxicity for post-confluent differentiated cells. Ind accounted for ∼80% of the effect of the whole extract. Ind did not cause ox…

PyridinesPyridineCellular differentiationBiophysicsIndicaxanthin; Colorectal carcinoma; In vitro; Epigenetic control; Cell cycleIndicaxanthinAntineoplastic AgentsApoptosisCell cycleBiologyBiochemistryPlant ExtractEpigenetic controlAntineoplastic Agentchemistry.chemical_compoundIn vitroSettore BIO/10 - BiochimicaGene expressionHumansMolecular BiologyCyclin-Dependent Kinase Inhibitor p16Cell ProliferationCaco-2 CellCell growthPlant ExtractsApoptosiOpuntiaCell BiologyCell cycleMolecular biologyIn vitroBetaxanthinsColorectal carcinomaSettore BIO/18 - GeneticaBiophysicBiochemistrychemistryCaco-2ApoptosisBetaxanthinCaco-2 CellsIndicaxanthinHumanBiochemical and biophysical research communications
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Amyloid-Beta Induces Different Expression Pattern of Tissue Transglutaminase and Its Isoforms on Olfactory Ensheathing Cells: Modulatory Effect of In…

2021

Abstract Alzhèimer Disease (AD) is characterized by protein aggregates in the brain, including amyloid-beta (Aβ), a substrate for tissue transglutaminase (TG2). We assessed the effect of full native peptide of Aβ (1–42), the fragments (25–35 and 35–25) on TG2 expression and its isoforms (Long and Short) on mouse Olfactory Ensheathing Cells (OECs). The levels of cytoskeletal proteins, Vimentin and Glial Fibrillary Acid Protein, were also studied. The effect of the pre-treatment with Indicaxanthin on cell viability, total Reactive Oxygen Species, superoxide anion and apoptotic pathway activation was assessed. Since Nestin is co-expressed in pluripotent stem cells with cyclin D1, their levels …

Pyridinestissue transglutaminase; olfactory ensheathing cells; amyloid-beta; oxidative stress; Indicaxanthin; self-renewalApoptosisAmyloid‐betaIndicaxanthinVimentinself-renewallcsh:ChemistryNestinMicechemistry.chemical_compoundProtein IsoformsCyclin D1lcsh:QH301-705.5SpectroscopybiologySuperoxideOpuntiaCell DifferentiationGeneral MedicineOlfactory Bulbamyloid-betaBetaxanthinsComputer Science ApplicationsCell biologyIndicaxanthinAmyloid betaTissue transglutaminase; Olfactory Ensheathing Cells; Amyloid-Beta; oxidative stress; In-dicaxanthin; self-renewalArticleGene Expression Regulation EnzymologicCatalysisInorganic ChemistryCyclin D1Alzheimer DiseaseGTP-Binding ProteinsGlial Fibrillary Acidic ProteinAnimalsHumansVimentinProtein Glutamine gamma Glutamyltransferase 2Viability assayPhysical and Theoretical ChemistryMolecular BiologyAmyloid beta-PeptidesTransglutaminasesOrganic ChemistryTissue transglutaminaseNestinSelf‐renewalNerve Regenerationlcsh:Biology (General)lcsh:QD1-999chemistryOxidative stressOlfactory ensheathing cellsbiology.proteinOlfactory ensheathing gliaReactive Oxygen SpeciesInternational Journal of Molecular Sciences
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Transepithelial transport of the bioactive betalain pigments indicaxanthin and betanin across human intestinal Caco-2 cell monolayers

2012

Settore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreebetaninTransepithelialbetalainindicaxanthinCaco-2
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The diet phytochemical Indicaxanthin suppresses 7-ketocholesterol-induced THP-1 cell apoptosis via inhibition of redox unbalance, cytosolic Ca2+ incr…

2012

Settore BIO/10 - BiochimicaIndicaxanthin phytochemical oxysterols
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