Search results for "drug resistance"

showing 10 items of 953 documents

Antioxidant defenses in a B16 melanoma line resistant to doxorubicin: an in vivo study.

1991

A B16 melanoma line was repeatedly transplanted subcutaneously in C57BL/6 mice. On day 4 after every transplant, the animals were treated with doxorubicin (DXR), 10 mg/kg i.p. The aim of the work was to develop an in-vivo model of resistance to the antiblastic in order to analyze some possible mechanistic aspects of the process in the course of time. After 16 transplants and treatments the melanoma completely lost its sensitivity to the antiproliferative effects of maximal tolerated doses of DXR and showed over-expression of P-glycoprotein. Compared to the parental line, the in vitro resistance index was 4.6. After 27 transplants and treatments the melanoma did not increase its in vitro res…

Cancer ResearchAntioxidantmedicine.medical_treatmentGlutathione reductaseDrug ResistanceMelanoma ExperimentalPharmacologySuperoxide dismutasechemistry.chemical_compoundMiceIn vivoTumor Cells CulturedMedicineAnimalsPharmacology (medical)DoxorubicinATP Binding Cassette Transporter Subfamily B Member 1Pharmacologychemistry.chemical_classificationMembrane Glycoproteinsbiologybusiness.industryMelanomaGlutathione peroxidaseGlutathionemedicine.diseaseGlutathioneImmunohistochemistryMice Inbred C57BLOncologychemistryDoxorubicinVincristinebiology.proteinFemalebusinessNeoplasm Transplantationmedicine.drugAnti-cancer drugs
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Selective induction of apoptosis in multidrug resistant HL60R cells by the thiazolobenzoimidazole derivative 1-(2,6-difluorophenyl)-1H,3H-thiazolo [3…

1999

We investigated the antitumour effects of 1-(2,6-difluorophenyl)-1H,3H-thiazolo [3,4-a]benzimidazole (TBZ) a new anti-HIV-1 agent, on human promyelocytic HL60 leukaemia, both a parental and a multidrug resistant form (HL60R). HL60R overexpresses P-glycoprotein and, like HL60, lacks p53 protein expression. HL60 and HL60R show similar levels of Bcl-2 protein. In contrast to the conventional chemotherapeutic agents daunorubicin, etoposide and mitoxantrone, TBZ caused equal or even greater cytotoxicity in HL60R than in HL60, and this result was associated with a more marked induction of apoptosis in the drug resistant cells. The antitumour activity of TBZ occurred in the range of concentrations…

Cancer ResearchBenzimidazoleAnti-HIV AgentsDaunorubicinHL60ApoptosisHL-60 CellsDrug resistancePharmacologychemistry.chemical_compoundmedicineHumansATP Binding Cassette Transporter Subfamily B Member 1CytotoxicityP-glycoproteinbiologyFlow CytometryVirologyDrug Resistance MultipleMultiple drug resistanceThiazolesProto-Oncogene Proteins c-bcl-2OncologychemistryDrug Resistance NeoplasmApoptosisbiology.proteinBenzimidazolesDrug Screening Assays AntitumorTumor Suppressor Protein p53medicine.drugEuropean Journal of Cancer
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Expression of the IAPs in multidrug resistant tumor cells

2003

We have investigated the expression of the IAPs (inhibitory of apoptosis proteins) in the human HL-60 leukemia and in its multidrug resistant, P-glycoprotein (P-gp) over-expressing variant, HL-60R. HL-60R exhibits resistance to apoptosis induced from P-gp substrate drugs and also from other triggers (cisplatin, TNF-alpha, Fas ligation, TRAIL, IFN-gamma and serum starvation) not related to the multidrug transporter. Except for c-IAP-1 mRNA, HL-60R significantly over-expressed both the mRNAs and the proteins of all the IAPs studied, i.e. c-IAP-1, c-IAP-2, XIAP, NAIP and survivin. Determination of the DNA-binding capacity of NF-kappaB (p50 or p65 subunits) indicated that, while HL-60 cells sho…

Cancer ResearchBlotting WesternCellApoptosisHL-60 CellsBiologyInhibitor of Apoptosis Proteinsmultidrug resistanceSurvivinmedicineHumansRNA MessengerCisplatinOncogeneReverse Transcriptase Polymerase Chain ReactionNF-kappa BProteinsGeneral MedicineIAPCell cycleapoptosiMolecular biologyDrug Resistance MultipleXIAPGene Expression Regulation Neoplasticmedicine.anatomical_structureOncologyDrug Resistance NeoplasmApoptosisCancer researchNAIPmedicine.drugOncology Reports
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Thyroid Cancer Resistance to Chemotherapeutic Drugs via Autocrine Production of Interleukin-4 and Interleukin-10

2003

We investigated the mechanisms responsible for the widespread refractoriness to chemotherapeutic drugs observed in thyroid cancers. We show that malignant epithelial cells from papillary, follicular, and anaplastic thyroid carcinomas express high levels of Bcl-2 and Bcl-xL. Exogenous expression of either Bcl-2 or Bcl-xL in normal thyrocytes was sufficient to prevent chemotherapeutic drug-induced cytotoxicity. All of the histological thyroid cancer variants examined produced interleukin-4 (IL-4) and interleukin-10 (IL-10), which increased Bcl-2 and Bcl-xL levels and protected thyroid cells from chemotherapeutic agents. Exposure to neutralizing antibodies against IL-4 and IL-10 resulted in do…

Cancer ResearchCell DeathPaclitaxelCancer Research; OncologyCarcinomaThyroid Glandbcl-X ProteinAntineoplastic AgentsApoptosisThyroid Cancer Interleukin-4 Interleukin-10Middle AgedCarcinoma PapillaryInterleukin-10OncologyProto-Oncogene Proteins c-bcl-2Settore MED/04 - PATOLOGIA GENERALEDoxorubicinDrug Resistance NeoplasmHumansInterleukin-4Thyroid NeoplasmsCisplatinAged
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Tumor Hypoxia: Causative Factors, Compensatory Mechanisms, and Cellular Response

2004

Abstract Learning Objectives After completing this course, the reader will be able to: Explain the effect of hypoxia on resistance to treatment. Describe the causes of tumor hypoxia. Characterize cellular response to hypoxia. Access and take the CME test online and receive 1 hour of AMA PRA category 1 credit at CME.TheOncologist.com Hypoxia is a characteristic feature of locally advanced solid tumors resulting from an imbalance between oxygen (O2) supply and consumption. Major causative factors of tumor hypoxia are abnormal structure and function of the microvessels supplying the tumor, increased diffusion distances between the nutritive blood vessels and the tumor cells, and reduced O2 tra…

Cancer ResearchCell SurvivalAnemiamedicine.medical_treatmentPhotodynamic therapyDiseaseNeoplasmsmedicineHumansNeovascularization PathologicTumor hypoxiabusiness.industryAnemiaTumor OxygenationHypoxia (medical)medicine.diseaseAdaptation PhysiologicalCell HypoxiaOxygenRadiation therapyCell Transformation NeoplasticOncologyDrug Resistance NeoplasmImmunologyDisease ProgressionCancer researchHemoglobinmedicine.symptombusinessThe Oncologist
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A sphingosine kinase inhibitor combined with temozolomide induces glioblastoma cell death through accumulation of dihydrosphingosine and dihydroceram…

2014

AbstractGlioblastomas (GBMs) are very aggressive tumors with low chemosensitivity. The DNA-alkylating agent temozolomide (TMZ) is currently the most efficient chemotoxic drug for GBM therapy; however, many patients develop resistance to TMZ. Combining TMZ with another agent could present an improved treatment option if it could overcome TMZ resistance and avoid side effects. Sphingosine kinase inhibitors (SKIs) have emerged as anticancer agents. Sphingosine kinases are often overexpressed in tumors where their activity of phosphorylating sphingosine (Sph) contributes to tumor growth and migration. They control the levels of the pro-apoptotic ceramide (Cer) and Sph and of the pro-survival sp…

Cancer ResearchCeramideProgrammed cell deathImmunologySphingosine kinaseAntineoplastic AgentsApoptosisBiologyCeramidesCellular and Molecular Neurosciencechemistry.chemical_compoundSphingosineCell Line TumorAutophagyTemozolomideHumansEnzyme InhibitorsCytotoxicitySphingosineCell DeathKinaseBrain NeoplasmsAutophagyCell BiologyEndoplasmic Reticulum StressCell biologyDacarbazinePhosphotransferases (Alcohol Group Acceptor)chemistryApoptosisDrug Resistance NeoplasmCancer researchDrug Therapy CombinationOriginal ArticleGlioblastomaCell deathdisease
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Expression of DNA repair proteins hMSH2, hMSH6, hMLH1,O6-methylguanine-DNA methyltransferase and N-methylpurine-DNA glycosylase in melanoma cells wit…

1999

Malignant melanoma is well known for its primary unresponsiveness to chemotherapy. The mechanisms conferring this intrinsic resistance are unclear. In this study, we investigated the role of genes involved in DNA repair in a panel of human melanoma cell variants exhibiting low and high levels of resistance to 4 commonly used drugs in melanoma treatment, i.e., vindesine, etoposide, fotemustine and cisplatin. We show that in melanoma cells exhibiting resistance to cisplatin, etoposide and vindesine, the nuclear content of each of the DNA mismatch repair (MMR) proteins hMLH1, hMSH2 and hMSH6 was reduced by 30–70%. A decreased expression level of up to 80% of mRNAs encoding hMLH1 and hMSH2 was …

Cancer ResearchDNA RepairTranscription GeneticVindesineDNA repairAntineoplastic AgentsBiologyNitrosourea CompoundsDNA GlycosylasesO(6)-Methylguanine-DNA MethyltransferaseOrganophosphorus CompoundsProto-Oncogene ProteinsmedicineHumansRNA MessengerPromoter Regions GeneticMelanomaN-Glycosyl HydrolasesneoplasmsEtoposideAdaptor Proteins Signal TransducingEtoposideCisplatinMelanomaNuclear Proteinsmedicine.diseaseMolecular biologyDrug Resistance Multipledigestive system diseasesNeoplasm ProteinsDNA-Binding ProteinsMutS Homolog 2 ProteinOncologyDNA glycosylaseFotemustineVindesineDNA mismatch repairCisplatinCarrier ProteinsMutL Protein Homolog 1medicine.drugInternational Journal of Cancer
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Coordinate mutation and transformation of mouse fibroblasts: induction by nitroquinoline oxide and modulation by caffeine

1981

Mutation and malignant transformation were followed in the same cells. Mouse fibroblasts (C3H 10T 1/2) were mutated and transformed by 4-nitroquinoline-1-oxide with similar, approximately linear dose-responses. The presence of caffeine immediately after exposure to 4-nitroquinoline-1-oxide potently inhibited mutation and transformation at high but not at low doses of 4-nitroquinoline-1-oxide. Whilst the coordinate induction of mutation and transformation could be explained by both a common target (DNA) or a common reactive species hitting several targets, the identical modulation by a DNA repair inhibitor of both end points suggests fundamental similarities in the nature of the lesions lead…

Cancer ResearchDNA repairDrug ResistanceBiologyMalignant transformationMicechemistry.chemical_compoundCaffeinemedicineAnimalsA-DNAOuabainFibroblastCells CulturedMice Inbred C3HNitroquinolinesDrug SynergismGeneral MedicineMolecular biology4-Nitroquinoline-1-oxideTransformation (genetics)Cell Transformation Neoplasticmedicine.anatomical_structurechemistryMutationMutation (genetic algorithm)Cancer researchCaffeineDNACarcinogenesis
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GSK3β as a novel promising target to overcome chemoresistance in pancreatic cancer

2021

Pancreatic cancer is an aggressive malignancy with increasing incidence and poor prognosis due to its late diagnosis and intrinsic chemoresistance. Most pancreatic cancer patients present with locally advanced or metastatic disease characterized by inherent resistance to chemotherapy. These features pose a series of therapeutic challenges and new targets are urgently needed. Glycogen synthase kinase 3 beta (GSK3β) is a conserved serine/threonine kinase, which regulates key cellular processes including cell proliferation, DNA repair, cell cycle progression, signaling and metabolic pathways. GSK3β is implicated in non-malignant and malignant diseases including inflammation, neurodegenerative …

Cancer ResearchDNA repairDruggabilityDiseaseMalignancyPancreatic cancerHumansMedicinePharmacology (medical)GSK3BCell ProliferationPharmacologyGlycogen Synthase Kinase 3 betabusiness.industryKinaseGSK3βCancerTumor chromatin profilingOncogenesPancreatic cancermedicine.diseaseAnticancer drug combinationsPancreatic NeoplasmsInfectious DiseasesOncologyDrug Resistance NeoplasmCancer researchbusinessChemoresistanceDrug Resistance Updates
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The new iodoacetamidobenzofuran derivative TR120 decreases STAT5 expression and induces antitumor effects in imatinib-sensitive and imatinib-resistan…

2013

The identification of novel compounds modulating the expression/activity of molecular targets downstream to BCR-ABL could be a new approach in the treatment of chronic myeloid leukemias (CMLs) resistant to imatinib or other BCR-ABL-targeted molecules. Recently, we synthesized a new class of substituted 2-(3,4,5-trimethoxybenzoyl)-2-N,N-dimethylamino-benzo[b]furans, and among these 3-iodoacetylamino-6-methoxybenzofuran-2-yl(3,5-trimethoxyphenyl)methanone (TR120) showed marked cytotoxic activity in BCR-ABL-expressing cells. Interestingly, TR120 was more potent than imatinib in cell growth inhibition and apoptosis induction in both BCR-ABL-expressing K562 and KCL22 cells. Moreover, it showed a…

Cancer ResearchFusion Proteins bcr-ablApoptosisPiperazinesSettore MED/15 - Malattie Del Sanguechemistry.chemical_compoundhemic and lymphatic diseasesSTAT5 Transcription FactorCytotoxic T cellPharmacology (medical)Cyclin D1STAT5biologyDrug SynergismCell cycleNeoplasm ProteinsGene Expression Regulation NeoplasticLeukemiaOncologyProto-Oncogene Proteins c-bcl-2BenzamidesImatinib MesylateGrowth inhibitionmedicine.drugbcl-X ProteinDown-RegulationAntineoplastic AgentsBone Marrow CellsResting Phase Cell CycleColony-Forming Units AssayBenzophenonesNecrosisCell Line TumorLeukemia Myelogenous Chronic BCR-ABL PositivemedicineHumansneoplasmsBenzofuransPharmacologyG1 PhaseImatinibBCR-ABL chronic myeloid leukemia imatinib resistance STAT5 tyrosine kinase inhibitorsmedicine.diseaseSettore CHIM/08 - Chimica FarmaceuticaGenes bcl-1Genes bcl-2PyrimidineschemistryApoptosisDrug Resistance NeoplasmSettore BIO/14 - FarmacologiaCancer researchbiology.proteinK562 CellsK562 cells
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