Search results for " INTERACTION"

showing 10 items of 5187 documents

Abilities of β-Estradiol to interact with chemotherapeutic drugs, signal transduction inhibitors and nutraceuticals and alter the proliferation of pa…

2019

Improving the effects of chemotherapy and reducing the side effects are important goals in cancer research. Various approaches have been examined to enhance the effectiveness of chemotherapy. For example, signal transduction inhibitors or hormonal based approaches have been included with chemo- or radio-therapy. MIA-PaCa-2 and BxPC-3 pancreatic ductal adenocarcinoma (PDAC) cells both express the estrogen receptor (ER). The effects of β-estradiol on the growth of PDAC cells has not been examined yet the ER is expressed in PDAC cells. We have examined the effects of combining β-estradiol with chemotherapeutic drugs, signal transcription inhibitors, natural products and nutraceuticals on PDAC.…

0301 basic medicineCancer Researchendocrine system diseasesβ estradiolmedicine.medical_treatmentβ-EstradiolEstrogen receptorAntineoplastic AgentsNatural product03 medical and health sciencesFood-Drug Interactions0302 clinical medicineNutraceuticalPancreatic cancerCell Line TumorGeneticsmedicineHumansMolecular BiologyChemotherapeutic drugCell ProliferationChemotherapyNatural products?-EstradiolEstradiolbusiness.industryQUIMIOTERÁPICOSChemotherapeutic drugs; Natural products; Nutraceuticals; Pancreatic cancer; β-EstradiolPancreatic cancerMiddle Agedmedicine.diseasedigestive system diseasesPancreatic Neoplasms030104 developmental biology030220 oncology & carcinogenesisDietary SupplementsCancer researchSettore BIO/14 - FarmacologiaMolecular MedicineChemotherapeutic drugsFemaleChemotherapeutic drugsNutraceuticalsNutraceuticalSignal transductionbusinessHormoneCarcinoma Pancreatic DuctalSignal TransductionAdvances in biological regulation
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Integrative analysis of key candidate genes and signaling pathways in autoimmune thyroid dysfunction related to anti-CTLA-4 therapy by bioinformatics

2020

Summary Cytotoxic T lymphocyte-associated antigen-4 (CTLA-4), the first immune checkpoint to be targeted clinically, has provided an effective treatment option for various malignancies. However, the clinical advantages associated with CTLA-4 inhibitors can be offset by the potentially severe immune-related adverse events (IRAEs), including autoimmune thyroid dysfunction. To investigate the candidate genes and signaling pathways involving in autoimmune thyroid dysfunction related to anti-CTLA-4 therapy, integrated differentially expressed genes (DEGs) were extracted from the intersection of genes from Gene Expression Omnibus (GEO) datasets and text mining. The functional enrichment was perfo…

0301 basic medicineCandidate geneCD74Signaling pathway.FCGR2BDifferentially expressed geneBiologyBioinformaticsHyperthyroidismAutoimmune Diseases03 medical and health sciencesMice0302 clinical medicineHypothyroidismmedicineAnimalsHumansPharmacology (medical)CTLA-4 AntigenProtein Interaction MapsKEGGGeneImmune Checkpoint InhibitorsPharmacologyPreclinical StudiesSignaling pathwayCancerComputational Biologymedicine.diseaseImmune checkpointGene Expression Regulation Neoplastic030104 developmental biologyGene OntologyAutoimmune thyroid dysfunctionOncologyCTLA-4030220 oncology & carcinogenesisDifferentially expressed genesCTLA-4BiomarkersImmune checkpoint blockadeSignal Transduction
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Singular Location and Signaling Profile of Adenosine A2A-Cannabinoid CB1 Receptor Heteromers in the Dorsal Striatum

2018

The dorsal striatum is a key node for many neurobiological processes such as motor activity, cognitive functions, and affective processes. The proper functioning of striatal neurons relies critically on metabotropic receptors. Specifically, the main adenosine and endocannabinoid receptors present in the striatum, ie, adenosine A(2A) receptor (A(2A)R) and cannabinoid CB1 receptor (CB1R), are of pivotal importance in the control of neuronal excitability. Facilitatory and inhibitory functional interactions between striatal A(2A)R and CB1R have been reported, and evidence supports that this cross-talk may rely, at least in part, on the formation of A(2A)R-CB1R heteromeric complexes. However, th…

0301 basic medicineCannabinoid receptorAdenosineReceptor Adenosine A2Amedicine.medical_treatmentAdenosinaAdenosine A2A receptormediated inhibitionStriatumBiologyhuntingtons-disease micecannabinoid CB1Mice03 medical and health sciencesglutamatergic neurotransmission0302 clinical medicineReceptor Cannabinoid CB1NeurobiologyNeural PathwaysBasal gangliamedicineAnimalsHumansendocannabinoid systemGenetically modified animalProtein Structure QuaternaryA(2A) receptorsPharmacologyEndocannabinoid systemCorpus Striatumprotein-coupled receptorsProtein SubunitsPsychiatry and Mental healthtransgenic mouse modelHuntington Disease030104 developmental biologyMetabotropic receptornervous systembasal gangliaCannabinoidallosteric interactionsNeuroscience030217 neurology & neurosurgeryNeurobiologiaSignal Transduction
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Mimiviruses and the Human Interferon System: Viral Evasion of Classical Antiviral Activities, But Inhibition By a Novel Interferon-β Regulated Immuno…

2017

International audience; In this review we discuss the role of mimiviruses as potential human pathogens focusing on clinical and evolutionary evidence. We also propose a novel antiviral immunomodulatory pathway controlled by interferon-beta (IFN-beta) and mediated by immune-responsive gene 1 (IRG1) and itaconic acid, its product. Acanthamoeba polyphaga Mimivirus (APMV) was isolated from amoebae in a hospital while investigating a pneumonia outbreak. Mimivirus ubiquity and role as protist pathogens are well understood, and its putative status as a human pathogen has been gaining strength as more evidence is being found. The study of APMV and human cells interaction revealed that the virus is …

0301 basic medicineCarboxy-LyasesImmunologyHuman pathogenVirusImmunomodulation03 medical and health sciences[SDV.MHEP.MI]Life Sciences [q-bio]/Human health and pathology/Infectious diseasesInterferon βInterferonVirologymedicineAnimalsHumansGiant VirusGenetic Predisposition to DiseaseGeneMimivirusbiologyProteinsSuccinatesCell BiologyInterferon-betabiology.organism_classificationVirologyDNA Virus Infections3. Good health030104 developmental biologyAcanthamoeba polyphagaHost-Pathogen InteractionsInterferonsMimiviridaemedicine.drugSignal TransductionJournal of interferoncytokine research : the official journal of the International Society for Interferon and Cytokine Research
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Cytotoxic effects induced by patulin, deoxynivalenol and toxin T2 individually and in combination in hepatic cells (HepG2).

2018

Abstract Patulin (PAT), deoxynivalenol (DON) and toxin T-2 (T-2) are mycotoxins distributed worldwide in food and feed. Cytotoxicity of the three mycotoxins individually or in combination in human hepatocellular carcinoma (HepG2) cells was evaluated by MTT assay over 24, 48 and 72 h of exposure. The concentration ranges used were 0.625–15 μM for DON, 1.25–50 nM for T-2 and 0.45–7.5 μM for PAT. The IC 50 values obtained ranged from 9.30 to 2.53 μM, from 33.69 to 44.37 nM and from 2.66 to 1.17 μM for DON, T-2 and PAT, respectively. The most cytotoxic mycotoxin to HepG2 cells was T-2 followed by PAT and DON. The combination ratios used for the mixtures were 1:3 (DON: T-2), 1:5 (DON: PAT), 1:1.…

0301 basic medicineCell SurvivalComplex MixturesToxicologymedicine.disease_causePatulin03 medical and health scienceschemistry.chemical_compoundInhibitory Concentration 500404 agricultural biotechnologymedicineCytotoxic T cellHumansMTT assayDrug InteractionsCytotoxicityMycotoxinDose-Response Relationship DrugToxin04 agricultural and veterinary sciencesGeneral MedicineHep G2 CellsMycotoxinsmedicine.disease040401 food scienceMolecular biologyDrug CombinationsT-2 Toxin030104 developmental biologyPatulinchemistryLiverHepatocellular carcinomaHepatic stellate cellTrichothecenesFood ScienceFood and chemical toxicology : an international journal published for the British Industrial Biological Research Association
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Repurposing of Drugs Targeting YAP-TEAD Functions

2018

Drug repurposing is a fast and consolidated approach for the research of new active compounds bypassing the long streamline of the drug discovery process. Several drugs in clinical practice have been reported for modulating the major Hippo pathway’s terminal effectors, namely YAP (Yes1-associated protein), TAZ (transcriptional co-activator with PDZ-binding motif) and TEAD (transcriptional enhanced associate domains), which are directly involved in the regulation of cell growth and tissue homeostasis. Since this pathway is known to have many cross-talking phenomena with cell signaling pathways, many efforts have been made to understand its importance in oncology. Moreover, this could be rele…

0301 basic medicineCell signalingCell signalingCancer ResearchProtein-protein interactionsHippo pathwayDrug repurposingprotein-protein interactionsComputational biologyReviewBiologylcsh:RC254-28203 medical and health sciencesYAP-TEAD disruptioncell signalingRepurposingTissue homeostasisHippo signaling pathwaydrug repurposingEffectorCell growthDrug discoveryYap-tead disruptionlcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensDrug repositioning030104 developmental biologyOncologyCell signaling; Drug repurposing; Hippo pathway; Protein-protein interactions; Yap-tead disruption; Oncology; Cancer ResearchCancers
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Defining Human Tyrosine Kinase Phosphorylation Networks Using Yeast as an In Vivo Model Substrate.

2017

Systematic assessment of tyrosine kinase-substrate relationships is fundamental to a better understanding of cellular signaling and its profound alterations in human diseases such as cancer. In human cells, such assessments are confounded by complex signaling networks, feedback loops, conditional activity, and intra-kinase redundancy. Here we address this challenge by exploiting the yeast proteome as an in vivo model substrate. We individually expressed 16 human non-receptor tyrosine kinases (NRTKs) in Saccharomyces cerevisiae and identified 3,279 kinase-substrate relationships involving 1,351 yeast phosphotyrosine (pY) sites. Based on the yeast data without prior information, we generated …

0301 basic medicineCell signalingHistologySaccharomyces cerevisiae ProteinsSaccharomyces cerevisiaeAmino Acid MotifsSaccharomyces cerevisiaeInteractomeReceptor tyrosine kinaseArticlePathology and Forensic Medicine03 medical and health scienceschemistry.chemical_compoundHumansProtein Interaction MapsPhosphorylationbiologyTyrosine phosphorylationCell BiologyProtein-Tyrosine Kinasesbiology.organism_classificationYeastCell biology030104 developmental biologychemistrybiology.proteinPhosphorylationTyrosine kinaseSequence AlignmentCell systems
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Identification of the integrin-binding site on coagulation factor VIIa required for proangiogenic PAR2 signaling.

2018

The tissue factor (TF) pathway serves both hemostasis and cell signaling, but how cells control these divergent functions of TF remains incompletely understood. TF is the receptor and scaffold of coagulation proteases cleaving protease-activated receptor 2 (PAR2) that plays pivotal roles in angiogenesis and tumor development. Here we demonstrate that coagulation factor VIIa (FVIIa) elicits TF cytoplasmic domain-dependent proangiogenic cell signaling independent of the alternative PAR2 activator matriptase. We identify a Lys-Gly-Glu (KGE) integrin-binding motif in the FVIIa protease domain that is required for association of the TF-FVIIa complex with the active conformer of integrin β1. A po…

0301 basic medicineCell signalingImmunologyIntegrinNeovascularization PhysiologicFactor VIIa030204 cardiovascular system & hematologyBiochemistryThromboplastinThrombosis and Hemostasis03 medical and health sciencesTissue factorMice0302 clinical medicineAnimalsHumansReceptor PAR-2Protein Interaction Domains and MotifsProtein Interaction MapsProtein kinase ACells CulturedIntegrin bindingBinding SitesbiologyChemistryIntegrin beta1Cell BiologyHematologyCell biologyCrosstalk (biology)030104 developmental biologyADP-Ribosylation Factor 6biology.proteinNIH 3T3 CellsPhosphorylationSignal transductionProtein BindingSignal TransductionBlood
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Epithelium‐specific MyD88 signaling, but not DCs or macrophages, control acute intestinal infection with Clostridium difficile

2019

Infection with Clostridium difficile is one of the major causes of health care acquired diarrhea and colitis. Signaling though MyD88 downstream of TLRs is critical for initiating the early protective host response in mouse models of C. difficile infection (CDI). In the intestine, MyD88 is expressed in various tissues and cell types, such as the intestinal epithelium and mononuclear phagocytes (MNP), including DC or macrophages. Using a genetic gain-of-function system, we demonstrate here that restricting functional MyD88 signaling to the intestinal epithelium, but also to MNPs is sufficient to protect mice during acute CDI by upregulation of the intestinal barrier function and recruitment o…

0301 basic medicineCell typeImmunologyBiologyMice03 medical and health sciences0302 clinical medicineDownregulation and upregulationmedicineAnimalsImmunology and AllergyIntestinal MucosaColitisEnterocolitis PseudomembranousBarrier functionClostridioides difficileMacrophagesDendritic CellsClostridium difficilemedicine.diseaseIntestinal epitheliumPhenotypeEpitheliumDisease Models Animal030104 developmental biologymedicine.anatomical_structureHost-Pathogen InteractionsMyeloid Differentiation Factor 88ImmunologySignal Transduction030215 immunologyEuropean Journal of Immunology
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Immune response to tick-borne hemoparasites: Host adaptive immune response mechanisms as potential targets for therapies and vaccines

2020

This article belongs to the Section Molecular Immunology.

0301 basic medicineChemokine030106 microbiologyReviewAdaptive ImmunityBiologyCatalysisEpitopeInorganic Chemistry03 medical and health sciencesImmune systemAntigenmedicineAnimalsHumansCytotoxic T cellPhysical and Theoretical ChemistryAntigensMolecular BiologySpectroscopyVaccinesHost Microbial InteractionsEffectorOrganic ChemistryGeneral MedicineT helper cellAcquired immune systemTick-borne hemoparasitesComputer Science Applications030104 developmental biologymedicine.anatomical_structureAdaptive immune response Antigens Tick-borne hemoparasitesTick-Borne DiseasesImmunologybiology.proteinAdaptive immune response
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