Search results for "cancer cell"

showing 10 items of 756 documents

SPIONs embedded in polyamino acid nanogels to synergistically treat tumor microenvironment and breast cancer cells.

2018

Abstract The extremely complex tumor microenvironment (TME) in humans is the major responsible for the therapeutic failure in cancer nanomedicine. A new concept of disease-driven nanomedicine, henceforth named “Theranomics”, which attempts to target cancer cells and TME on the whole, represents an attractive alternative. Herein, a nanomedicine able to co-deliver doxorubicin and a tumor suppressive proteolytic protein such as collagenase-2 was developed. We successfully obtained superparamagnetic nanogels (SPIONs/Doco@Col) via the intermolecular azide-alkyne Huisgen cycloaddition. We demonstrated that a local ECM degradation and remodeling in solid tumors by means of collagenase-2 could enha…

Polyamino acidPolyamino acidsCollagenasePharmaceutical ScienceBreast Neoplasms02 engineering and technology030226 pharmacology & pharmacy03 medical and health sciences0302 clinical medicineBreast cancerBreast cancerDrug Delivery SystemsCell Line TumormedicineTumor MicroenvironmentHumansDoxorubicinTargeted cancer therapyAmino AcidsMagnetite NanoparticlesTumor microenvironmentAntibiotics AntineoplasticChemistrySPIONCancerTheranomicDrug Synergism021001 nanoscience & nanotechnologymedicine.diseasenanomedicineNanomedicinesDrug LiberationSPIONsMatrix Metalloproteinase 8DoxorubicinCancer cellCancer researchNanomedicineTheranomicsFemaleBreast cancer cellspolyamino acid0210 nano-technologyGelsmedicine.drugInternational journal of pharmaceutics
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Polyaspartamide based hydrogel with cell recruitment properties for the local administration of hydrophobic anticancer drugs

2019

Abstract By exploiting the chemical versatility and the high water dispersibility of α,β-poly(N-2-hydroxyethyl)D,L-aspartamide, in this work, two different polymer derivatives were synthesized for the first time. Obtained macromolecules were characterized and used to produce hydrogels exploitable for the local release of hydrophobic anticancer drugs. The first derivative, bearing pendant β-cyclodextrins, was employed to solubilize tamoxifen, chosen as a model drug, and to produce a water soluble supramolecular complex, as evidenced through tamoxifen phase solubility studies. The second derivative, bearing pendant Cyclo(Arginine-Glyicine-Asparagine-D-Phenilyalanine-Cysteine) peptide moieties…

Polymers and PlasticsGeneral Chemical EngineeringSupramolecular chemistryPeptideRegional chemotherapymacromolecular substances02 engineering and technology010402 general chemistry01 natural sciencesBiochemistryMaterials ChemistryEnvironmental ChemistrySolubilityCytotoxicityPolyaspartamide RGD Hydrogel Regional chemotherapy Cell recruitmentchemistry.chemical_classificationRGDtechnology industry and agricultureGeneral Chemistry021001 nanoscience & nanotechnologyCell recruitmentCombinatorial chemistryIn vitro0104 chemical sciencesPolyaspartamideHydrogelchemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoCancer cellSelf-healing hydrogels0210 nano-technologyMacromoleculeReactive and Functional Polymers
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in vitro biological evaluation of folate-functionalized block copolymer micelles for selective anti-cancer drug delivery.

2008

The main objective of this study was to evaluate the ability of folic acid-functionalized diblock copolymer micelles to improve the delivery and uptake of two poorly water-soluble anti-tumor drugs, tamoxifen and paclitaxel, to cancer cells through folate receptor targeting. The diblock copolymer used in this study comprised a hydrophilic poly[2-(methacryloyloxy)ethyl phosphorylcholine] (MPC) block, carrying at the chain end the folate targeting moiety, and a pH-sensitive hydrophobic poly[2-(diisopropylamino)ethyl methacrylate] (DPA) block (FA-MPC-DPA). The drug-loading capacities of tamoxifen- and paclitaxel-loaded micelles were determined by high performance liquid chromatography and the m…

Polymers and PlasticsPaclitaxelPhosphorylcholineBioengineeringMicelleBiomaterialsDrug Delivery SystemsFolic AcidPolymethacrylic AcidsPolymer chemistryBLOCK COPOLYMERS MICELLES DRUG DELIVERYMaterials ChemistryHumansCytotoxicityMicellesPhosphorylcholineChemistryAntineoplastic Agents PhytogenicEnd-groupTamoxifenSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoFolate receptorCancer cellBiophysicsCaco-2 CellsDrug carrierK562 CellsFolate targetingBiotechnologyMacromolecular bioscience
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Digital control circuitry of cancer cell and its apoptosis

2009

This study, through a typical aerospace systems architecture, suggests an engineering design of a human cancer cell circuitry in which a digital optimal control matrix is assigned to repair the DNA damage level and/or to trigger its apoptosis. Here, the conceived machinery is proposed taking into account the state of the art in cancer investigation. However, it could be further generalized. The most recent studies on cancer pathologies give a predominant role to the oncosuppressor protein p53 and its antagonist, the oncogene Mdm2. Experimental and theoretical approaches are in agreement in deducing a “digital” response of the p53 when genomic integrity is damaged. Once DNA damage is present…

Processore e simulatore digitale di controlloSettore ING-IND/06 - Fluidodinamicacancer cell apoptosis biology systems digital cell simulator
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The abrogation of the HOXB7/PBX2 complex induces apoptosis in melanoma through the miR-221&222-c-FOS pathway.

2013

Cutaneous melanoma is the fastest increasing cancer worldwide. Although several molecular abnormalities have been associated with melanoma progression, the underlying mechanisms are still largely unknown and few targeted therapies are under evaluation. Here we show that the HOXB7/PBX2 dimer acts as a positive transcriptional regulator of the oncogenic microRNA-221 and -222. In addition, demonstrating c-FOS as a direct target of miR-221&222, we identify a HOXB7/PBX2→miR-221&222 →c-FOS regulatory link, whereby the abrogation of functional HOXB7/PBX2 dimers leads to reduced miR-221&222 transcription and elevated c-FOS expression with consequent cell death. Taking advantage of the treatment wit…

Programmed cell deathCancer ResearchSkin NeoplasmsTranscription GeneticApoptosisSmall Interferingc-FosPolymerase Chain ReactionCell LineGeneticCell Line TumorProto-Oncogene ProteinsHOXB7/PBX2 complexmicroRNATranscriptional regulationmedicinemelanomaHumansPBXRNA Small InterferingDNA PrimersHomeodomain Proteinsc-FOS pathwayTumorbiologymicroRNABase SequenceMelanomaHOXB7; HXR9 peptide; melanoma; microRNA; PBX; Apoptosis; Base Sequence; Cell Line Tumor; DNA Primers; Dimerization; Homeodomain Proteins; Humans; Melanoma; MicroRNAs; Polymerase Chain Reaction; Proto-Oncogene Proteins; Proto-Oncogene Proteins c-fos; RNA Small Interfering; Skin Neoplasms; Transcription Genetic; Cancer Research; Oncologymedicine.diseaseMicroRNAsHXR9 peptideOncologyApoptosisCell cultureCutaneous melanomaHOXB7/PBX2 complex ;melanoma ;c-FOS pathwayCancer researchbiology.proteinHOXB7RNATranscriptionDimerizationProto-Oncogene Proteins c-fosCancer Cell Biology
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Antitumor effects of dehydroxymethylepoxyquinomicin, a novel nuclear factor-kappaB inhibitor, in human liver cancer cells are mediated through a reac…

2009

Activation of the nuclear transcription factor-kappa B (NF-kappa B) has been implicated in liver tumorigenesis. We evaluated the effects of a novel NF-kappa B inhibitor, dehydroxymethylepoxyquinomicin (DHMEQ), in two human liver cancer cell lines HA22T/VGH and HuH-6. DHMEQ treatment dose dependently decreased the DNA-binding capacity of the NF-kappa B p65 subunit, inhibited cell growth and proliferation, and increased apoptosis as shown by caspase activation, release of cytochrome c, poly(ADP-ribose) polymerase cleavage, and down-regulation of survivin. DHMEQ also induced a dose-dependent activation of mitogen-activated protein kinase kinase/extracellular signal-regulated kinase signaling, …

Programmed cell deathCarcinoma HepatocellularBIOLOGICAL-ACTIVITIESDrug Evaluation PreclinicalDown-RegulationAntineoplastic AgentsApoptosisBiologymedicine.disease_causeACTIVATIONchemistry.chemical_compoundHYDROGEN-PEROXIDEENDOPLASMIC-RETICULUM STRESSCell Line TumorSurvivinNADPH OXIDASEmedicineHumansOXIDATIVE STRESSProtein kinase AEndoplasmic Reticulum Chaperone BiPINDUCED APOPTOSISCell ProliferationPharmacologySettore MED/12 - GastroenterologiaDose-Response Relationship DrugUNFOLDED PROTEIN RESPONSECell growthCyclohexanonesINDUCTIONLiver NeoplasmsDEATHNF-kappa BCytochromes cMolecular biologyCell biologyEnzyme ActivationchemistryApoptosisCaspasesCancer cellBenzamidesSettore BIO/14 - FarmacologiaMolecular MedicineGrowth inhibitionMitogen-Activated Protein KinasesPoly(ADP-ribose) PolymerasesReactive Oxygen SpeciesOxidative stressMolecular pharmacology
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Cytotoxicity and antimitotic activity of Rhinella schneideri and Rhinella marina venoms.

2019

Abstract Ethnopharmacological relevance Rhinella schneideri and Rhinella marina are toad venoms distributed in different parts of the world, including Brazil, Columbia and amazon. Venoms extracted from different species have many clinical applications such as antimicrobial cardiotonics and treatment of cancer. Aim of the study; In this study, we aim to investigate the effect of venoms extracted from R. schneideri and R. marina on cancer cells and verify possible mechanism of action. Material and method Cytotoxicity analyses was performed using the resazurin reduction assay, where different concentrations of venoms were tested against sensitive CCRF-CEM and P-gp overexpressing ADR/CEM5000 le…

Programmed cell deathCell SurvivalAntimitotic AgentsLethal Dose 5003 medical and health scienceschemistry.chemical_compound0302 clinical medicineTubulinRhinella schneideriCell Line TumorDrug DiscoveryAnimalsHumansPropidium iodideCytotoxicity030304 developmental biologyPharmacology0303 health sciencesbiologyBufalinCell Cycle Checkpointsbiology.organism_classificationBufonidaeMolecular Docking SimulationTubulinchemistryBiochemistryApoptosis030220 oncology & carcinogenesisCancer cellbiology.proteinAmphibian VenomsJournal of ethnopharmacology
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Regulation of tumour cell sensitivity to TNF-induced oxidative stress and cytotoxicity: Role of glutathione

1998

Glutathione (GSH) and the rate of cellular proliferation determine tumour cell sensitivity to tumour necrosis factor (TNF). Buthionine sulphoximine (BSO), a selective inhibitor of GSH synthesis, inhibits tumour growth and increases recombinant human TNF (rhTNF)-alpha cytoxicity in vitro. Administration of sublethal doses of rhTNF-alpha to Ehrlich ascites-tumour (EAT)-bearing mice induces oxidative stress (as measured by increases in intracellular peroxide levels, O2.- generation and mitochondrial GSSG). ATP-induced selective GSH depletion, when combined with rhTNF-alpha administration, affords a 61% inhibition of tumour growth and results in a significant extent of host survival. Administra…

Programmed cell deathCell SurvivalClinical BiochemistryMitochondrionPharmacologyBiologymedicine.disease_causeBiochemistryMicechemistry.chemical_compoundSuperoxidesmedicineAnimalsHumansCarcinoma Ehrlich TumorGlutathione DisulfideTumor Necrosis Factor-alphaGeneral MedicineGlutathioneGlutathioneRecombinant ProteinsOxidative StresschemistryBiochemistryCancer cellMolecular MedicineGlutathione disulfideTumor necrosis factor alphaOxidative stressIntracellularBioFactors
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Cytotoxicity of 40 Egyptian plant extracts targeting mechanisms of drug-resistant cancer cells

2019

Abstract Background The multidrug resistance (MDR) phenotype encounters a major challenge to the success of established chemotherapy in cancer patients. We hypothesized that cytotoxic medicinal plants with novel phytochemicals can overcome MDR and kill MDR-cells with similar efficacy as drug sensitive cells. Purpose We evaluated plant extracts from an unexplored ecosystem in Egypt with unusual climate and nutrient conditions for their activity against sensitive and multidrug-resistant cancer cell lines. Material and methods/study design Methylene chloride: methanol (1:1) and methanol: H2O (7:3) extracts of 40 plants were prepared resulting in a sum of 76 fraction containing compounds with v…

Programmed cell deathCell SurvivalPhytochemicalsPharmaceutical ScienceApoptosisCentaureaWithaniaPulicariaMagnoliopsida03 medical and health sciences0302 clinical medicineCell Line TumorNeoplasmsDrug DiscoveryHumansCytotoxic T cellViability assayCytotoxicity030304 developmental biologyMembrane Potential MitochondrialPharmacology0303 health sciencesPlants MedicinalbiologyPlant ExtractsChemistryWithaniabiology.organism_classificationAntineoplastic Agents PhytogenicMolecular biologyDrug Resistance MultipleMultiple drug resistanceComplementary and alternative medicineDrug Resistance NeoplasmCell culture030220 oncology & carcinogenesisCancer cellMolecular MedicineEgyptReactive Oxygen SpeciesPhytotherapyPhytomedicine
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Anti-Proliferative Activity of A Hydrophilic Extract of Manna from Fraxinus angustifolia Vahl through Mitochondrial Pathway-Mediated Apoptosis and Ce…

2020

Manna is produced from the spontaneous solidification of the sap of some Fraxinus species, and, owing its content in mannitol, is used in medicine as a mild laxative. Manna is also a rich source of characteristic bio-phenols with reducing, antioxidant and anti-inflammatory properties. This study assesses the activity of a hydrophilic extract of manna (HME) on cellular and molecular events in human colon-rectal cancer cells. HME showed a time- and concentration-dependent anti-proliferative activity, measured by MTT assay, in all the cell lines examined, namely Caco-2, HCT-116 and HT-29. The amounts of HME that caused 50% of cell death after a 24 h treatment were 8.51 &plusmn

Programmed cell deathCell cycle checkpointPharmaceutical ScienceCaspase 3anticancerAnalytical Chemistrylcsh:QD241-441<i>Fraxinus angustifolia</i>03 medical and health sciences0302 clinical medicinelcsh:Organic chemistrySettore BIO/10 - BiochimicaDrug DiscoverymedicineMTT assayPhysical and Theoretical Chemistry030304 developmental biologyFraxinus angustifolia0303 health sciencesChemistryOrganic ChemistryapoptosisSettore CHIM/08 - Chimica FarmaceuticaMolecular biologyChemistry (miscellaneous)Apoptosis030220 oncology & carcinogenesisCancer cellMolecular Medicinecolon cancer cellsMannitolIntracellularmannamedicine.drugMolecules
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