Search results for "kinase inhibitor"

showing 10 items of 414 documents

The novel dual PI3K/mTOR inhibitor GDC-0941 synergizes with the MEK inhibitor U0126 in non-small cell lung cancer cells.

2011

Lung cancer is a malignant disease with poor outcome, which has led to a search for new therapeutics. The PI3K/Akt/mTOR and Ras/raf/Erk pathways are key regulators of tumor growth and survival. In the present study, their roles were evaluated by MTT assay, flow cytometry and Western blotting in lung cancer cells. We found that a high efficacy of antitumor activity was shown with GDC-0941 treatment in two gefitinib-resistant non-small cell lung cancer (NSCLC) cell lines, A549 and H460. In addition, H460 cells with activating mutations of PIK3CA were relatively more sensitive to GDC-0941 than A549 cells with wild-type PIK3CA. Furthermore, GDC-0941 was highly efficacious in combination with U0…

MAPK/ERK pathwayCancer ResearchIndazolesLung NeoplasmsApoptosisBiologyBiochemistryPhosphatidylinositol 3-KinasesCarcinoma Non-Small-Cell LungCell Line TumorNitrilesGeneticsmedicineButadienesHumansMolecular BiologyProtein kinase BProtein Kinase InhibitorsPI3K/AKT/mTOR pathwayPhosphoinositide-3 Kinase InhibitorsSulfonamidesOncogeneCell growthMEK inhibitorTOR Serine-Threonine KinasesCancerDrug SynergismCell cyclemedicine.diseaseG1 Phase Cell Cycle Checkpointsrespiratory tract diseasesEnzyme ActivationOncologyCancer researchMolecular MedicineMitogen-Activated Protein KinasesSignal TransductionMolecular medicine reports
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Cancer-associated fibroblasts do not respond to combined irradiation and kinase inhibitor treatment

2012

The emergence of radioresistance is a significant issue in the treatment of squamous cell carcinoma. We recently demonstrated that post-radiogenic extracellular signal-regulated kinase (ERK) signaling might decrease radiosensitivity in this cancer type. To further elucidate how tumor-organizing cell types respond to irradiation and ERK pathway inhibition, we analyzed one oral squamous cell carcinoma and one lung cancer cell line (HNSCCUM-02T, A549), fibroblasts (NIH3T3), primary normal and cancer-associated fibroblasts (CAFs) in vitro. Irradiated cells treated with mitogen-activated protein kinase (MAPK) inhibitor U0126 were screened for pERK levels. Post-radiogenic cellular responses were …

MAPK/ERK pathwayCancer ResearchLung NeoplasmsCell SurvivalMAP Kinase Signaling SystemBiologyRadiation DosageRadiation ToleranceMiceCarcinoma Non-Small-Cell LungCell Line TumorRadioresistanceNitrilesButadienesmedicineAnimalsHumansExtracellular Signal-Regulated MAP KinasesProtein kinase AFibroblastProtein Kinase InhibitorsTumor Stem Cell AssayCell ProliferationOncogeneKinaseGeneral MedicineFibroblastsCell cycleMolecular biologymedicine.anatomical_structureOncologyCarcinoma Squamous CellNIH 3T3 CellsCancer researchCancer-Associated FibroblastsMouth NeoplasmsOncology Reports
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Emerging MEK inhibitors

2010

IMPORTANCE OF THE FIELD: The Ras/Raf/MEK/ERK pathway is often activated by genetic alterations in upstream signaling molecules. Integral components of this pathway such as Ras and B-Raf are also activated by mutation. The Ras/Raf/MEK/ERK pathway has profound effects on proliferative, apoptotic and differentiation pathways. This pathway can often be effectively silenced by MEK inhibitors. AREAS COVERED BY THIS REVIEW: This review will discuss targeting of MEK which could lead to novel methods to control abnormal proliferation which arises in cancer and other proliferative diseases. This review will cover the scientific literature from 1980 to present and is a follow on from a review which fo…

MAPK/ERK pathwayCell signalingAntineoplastic Agentsmedicine.disease_causemekerkEnzyme activatorNeoplasmsAntineoplastic Combined Chemotherapy ProtocolsmedicineAnimalsHumansPharmacology (medical)Protein phosphorylationProtein Kinase InhibitorsMEK inhibitorsCell ProliferationCancerPharmacologyapoptosis; cancer; erk; kinases; mek; mek inhibitors; proliferative disorders; protein phosphorylation; signal transductionproliferative disordersMutationKinasebusiness.industryapoptosisApoptosiCancerDrugs InvestigationalMAP Kinase Kinase Kinasesmedicine.diseaseprotein phosphorylationCell biologyEnzyme ActivationTreatment OutcomekinasesChemotherapy AdjuvantRadiotherapy AdjuvantSignal transductionbusinesssignal transductionExpert Opinion on Emerging Drugs
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Docosahexaenoic acid inhibits cancer cell growth via p27Kip1, CDK2, ERK1/ERK2, and retinoblastoma phosphorylation

2006

Docosahexaenoic acid (DHA), a PUFA of the n-3 family, inhibited the growth of FM3A mouse mammary cancer cells by arresting their progression from the late-G(1) to the S phase of the cell cycle. DHA upregulated p27(Kip1) levels by inhibiting phosphorylation of mitogen-activated protein (MAP) kinases, i.e., ERK1/ERK2. Indeed, inhibition of ERK1/ERK2 phosphorylation by DHA, U0126 [chemical MAPK extracellularly signal-regulated kinase kinase (MEK) inhibitor], and MEK(SA) (cells expressing dominant negative constructs of MEK) resulted in the accumulation of p27(Kip1). MAP kinase (MAPK) inhibition by DHA did not increase p27(Kip1) mRNA levels. Rather, this fatty acid stabilized p27(Kip1) contents…

MAPK/ERK pathwayDocosahexaenoic AcidsMammary Neoplasms AnimalQD415-436fatty acidsenvironment and public healthBiochemistryMiceEndocrinologyCyclin-dependent kinaseCyclin EAnimalsRNA MessengerPhosphorylationCells CulturedCell ProliferationMAPK14biologyKinaseCyclin-dependent kinase 4Cyclin-Dependent Kinase 2Cyclin-dependent kinase 2Retinoblastomafood and beveragesCell BiologyUp-RegulationCell biologyenzymes and coenzymes (carbohydrates)cyclin-dependent kinaseCyclin-dependent kinase complexbiology.proteinPhosphorylationcell cyclelipids (amino acids peptides and proteins)Mitogen-Activated Protein KinasesCyclin-Dependent Kinase Inhibitor p27Journal of Lipid Research
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Bis(1H-indol-2-yl)methanones are effective inhibitors of FLT3-ITD tyrosine kinase and partially overcome resistance to PKC412A in vitro.

2009

Inhibition of the mutated fms-like tyrosine kinase 3 (FLT3) receptor tyrosine kinase is a promising therapeutic strategy in acute myeloid leukaemia (AML). However, development of resistance to FLT3 tyrosine kinase inhibitors (TKI), such as PKC412A, has been described recently. This observation may have an increasing impact on the duration of response and relapse rates in upcoming clinical trials employing FLT3-TKI. Herein we investigated two representatives of a novel class of FLT3-TKI: Bis(1H-indol-2-yl)methanones. Both compounds effectively induced apoptosis in FLT3-internal tandem duplicate (ITD)-transfected murine myeloid cells and in primary FLT3-ITD positive blasts. Combination of bot…

MAPK/ERK pathwayIndolesmedicine.drug_classAntineoplastic AgentsApoptosisTransfectionTyrosine-kinase inhibitorReceptor tyrosine kinaseCell Linefluids and secretionshemic and lymphatic diseasesmedicineTumor Cells CulturedHumansProtein kinase Bbiologyhemic and immune systemsHematologyStaurosporineIn vitroLeukemia Myeloid Acutefms-Like Tyrosine Kinase 3Drug Resistance NeoplasmTandem Repeat SequencesTrk receptorembryonic structuresFms-Like Tyrosine Kinase 3Cancer researchbiology.proteinTyrosine kinasepsychological phenomena and processesBritish journal of haematology
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Therapeutic resistance resulting from mutations in Raf/MEK/ERK and PI3K/PTEN/Akt/mTOR signaling pathways.

2011

Chemotherapy remains a commonly used therapeutic approach for many cancers. Indeed chemotherapy is relatively effective for treatment of certain cancers and it may be the only therapy (besides radiotherapy) that is appropriate for certain cancers. However, a common problem with chemotherapy is the development of drug resistance. Many studies on the mechanisms of drug resistance concentrated on the expression of membrane transporters and how they could be aberrantly regulated in drug resistant cells. Attempts were made to isolate specific inhibitors which could be used to treat drug resistant patients. Unfortunately most of these drug transporter inhibitors have not proven effective for ther…

MAPK/ERK pathwayPTENTumor suppressor genekinase inhibitorPhysiologymedicine.medical_treatmentClinical Biochemistrygrowth factor receptorAntineoplastic AgentsDrug resistancePharmacologyBiologyTargeted therapy03 medical and health sciencesMicePhosphatidylinositol 3-Kinases0302 clinical medicineGrowth factor receptormedicinePTENAnimalsHumansExtracellular Signal-Regulated MAP KinasesProtein kinase BPI3K/AKT/mTOR pathway030304 developmental biology0303 health sciencesTOR Serine-Threonine KinasesPTEN PhosphohydrolaseCell BiologyMAP Kinase Kinase Kinases3. Good healthErbB ReceptorsDrug Resistance Neoplasm030220 oncology & carcinogenesisMutationCancer researchbiology.proteinraf KinasesProto-Oncogene Proteins c-aktDrug resistance therapeutic sensitivity targeted therapy RAF ERKACUTE MYELOID LEUKAEMIASignal TransductionJournal of cellular physiology
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Emerging Raf inhibitors

2009

The Raf/MAPK kinase/extracellular-signal-regulated kinase pathway is often activated by genetic alterations in upstream signaling molecules. An integral component of this pathway, BRAF, is also activated by mutation, especially in melanoma and thyroid cancers. The Raf/MAPK kinase/extracellular-signal-regulated kinase pathway has profound effects on proliferative, apoptotic and differentiation pathways as well as the sensitivity and resistance to chemotherapeutic drugs.This review discusses targeting of Raf which could control abnormal proliferation in cancer and other proliferative diseases. The important roles that genetics plays in the response of patients to Raf inhibitors is also evalua…

MAPK/ERK pathwayProto-Oncogene Proteins B-rafCell signalingMAP Kinase Signaling SystemSignal transductionrafmedicine.disease_causemekerkmedicineHumanscancerPharmacology (medical)raf inhibitorsExtracellular Signal-Regulated MAP KinasesMelanomaProtein Kinase InhibitorsPharmacologyapoptosis cancer ERK proliferative disorderssignal transductionMitogen-Activated Protein Kinase KinasesApoptosis; Cancer; ERK; Kinases; MEK; Proliferative disorders; Protein phosphorylation; Raf; Raf inhibitors; Signal transductionMutationproliferative disordersapoptosis; cancer; erk; kinases; mek; proliferative disorders; protein phosphorylation; raf; raf inhibitors; signal transduction read more: http://informahealthcare.com/doi/abs/10.1517/14728210903232633business.industryKinaseMelanomaapoptosisCancermedicine.diseaseXenograft Model Antitumor Assaysprotein phosphorylationCell Transformation Neoplastickinasessignal transduction read more: http://informahealthcare.com/doi/abs/10.1517/14728210903232633ApoptosisDrug Resistance NeoplasmCancer researchSignal transductionMitogen-Activated Protein Kinasesbusiness
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BRAF mutations in non-small cell lung cancer : has finally Janus opened the door?

2016

Abstract: B-Raf mutations occur in about 1-2% of non-small cell lung cancers (NSCLC). These mutations generate a permanent activation of the mitogen activated protein kinase (MAPK) pathway, which promotes tumor growth and proliferation. In the present review, we discuss B-Raf mutation epidemiology, diagnostic methods to detect B-Raf mutations, the role of B-Raf as a driver mutation and a potential therapeutic target in NSCLC. The results of clinical trials involving B-Raf or MAPK pathway inhibitors for the treatment of NSCLC are also discussed. Clinical trials evaluating B-Raf inhibitors in BRAF mutated NSCLC patients have shown promising results, and larger prospective studies are warrante…

MAPK/ERK pathwayProto-Oncogene Proteins B-rafmedicine.medical_specialtyLung Neoplasmsmedicine.medical_treatmentCellProtein Kinase Inhibitormedicine.disease_causeBioinformaticsNSCLCTargeted therapy03 medical and health sciences0302 clinical medicineInternal medicineCarcinoma Non-Small-Cell LungmedicineHumans030212 general & internal medicineB-Raf inhibitorLung cancerProtein Kinase InhibitorsB-Raf inhibitorsMutationHematologybiologybusiness.industryB-RafB-Raf; B-Raf inhibitors; Drug; Mutation; NSCLC; Oncology; Hematology; Geriatrics and GerontologyHematologymedicine.diseaseLung NeoplasmClinical trialmedicine.anatomical_structureOncologyDrug Resistance Neoplasm030220 oncology & carcinogenesisMitogen-activated protein kinaseMutationbiology.proteinCancer researchHuman medicineDrugGeriatrics and GerontologybusinessHumanCritical reviews in oncology, hematology
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Ras/Raf/MEK/ERK and PI3K/PTEN/Akt/mTOR cascade inhibitors: How mutations can result in therapy resistance and how to overcome resistance

2012

// James A. McCubrey 1 , Linda S. Steelman 1 , William H. Chappell 1 , Stephen L. Abrams 1 , Richard A. Franklin 1 , Giuseppe Montalto 2 , Melchiorre Cervello 3 , Massimo Libra 4 , Saverio Candido 4 , Grazia Malaponte 4 , Maria C. Mazzarino 4 , Paolo Fagone 4 , Ferdinando Nicoletti 4 , Jorg Basecke 5 , Sanja Mijatovic 6 , Danijela Maksimovic-Ivanic 6 , Michele Milella 7 , Agostino Tafuri 8 , Francesca Chiarini 9 , Camilla Evangelisti 9 , Lucio Cocco 10 , Alberto M. Martelli 9,10 1 Department of Microbiology and Immunology, Brody School of Medicine at East Carolina University, Greenville, NC, USA 2 Department of Internal Medicine and Specialties, University of Palermo, Palermo, Italy 3 Consi…

MAPK/ERK pathwaymedicine.medical_treatmentPI3KTargeted therapyTargeted therapyPhosphatidylinositol 3-Kinases0302 clinical medicineNeoplasmsTreatment resistanceExtracellular Signal-Regulated MAP KinasesPhosphoinositide-3 Kinase InhibitorsGenetics0303 health sciencesbiologyCancer stem cellsTOR Serine-Threonine KinasesMAP Kinase Kinase KinasesDiscovery and development of mTOR inhibitorshumanities3. Good healthOncology030220 oncology & carcinogenesismTORSignal TransductionProto-Oncogene Proteins B-rafReviewsAntineoplastic Agents03 medical and health sciencesCell Line TumormedicineHumansPTENProtein kinase BPI3K/AKT/mTOR pathway030304 developmental biologybusiness.industryAkt; Cancer stem cells; mTOR; PI3K; Raf; Targeted therapy; Therapy resistanceAktPTEN PhosphohydrolaseTherapy resistanceRafProtein phosphatase 2Targeted Therapy Therapy Resistance Cancer Stem Cells Raf Akt PI3K mTORDrug Resistance NeoplasmMutationras ProteinsCancer researchbiology.proteinbusinessProto-Oncogene Proteins c-akt
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Activation of MAP kinase p38 is critical for the cell-cycle–controlled suppressor function of regulatory T cells

2007

AbstractRegulatory T cells play an essential role in the control of self-tolerance and processes of adaptive immunity. Tolerogenic IL-10–modulated human dendritic cells (IL-10DCs) induce anergic T cells with strong suppressive properties (iTregs) that inhibit the activation of effector T cells. In this study, we evaluated the interaction between cell-cycle regulation and intracellular signaling in these iTregs. Analysis of signal transduction events revealed a down-regulation of the mitogen-activated protein kinases (MAPKs) Jun N-terminal kinase (JNK) and a nonactivation of extracellular-signal–regulated kinase (ERK) in contrast to a marked activation of p38 MAPK and the p38 effector MAPK-a…

MAPK/ERK pathwayp38 mitogen-activated protein kinasesImmunologyIn Vitro TechniquesProtein Serine-Threonine KinasesBiologyT-Lymphocytes Regulatoryp38 Mitogen-Activated Protein KinasesBiochemistryAldesleukinHumansProtein kinase AMitogen-Activated Protein Kinase KinasesKinaseCell CycleIntracellular Signaling Peptides and ProteinsJNK Mitogen-Activated Protein KinasesCell BiologyHematologyAcquired immune systemInterleukin-10Cell biologyMitogen-activated protein kinasebiology.proteinSignal transductionCyclin-Dependent Kinase Inhibitor p27Blood
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