Search results for " Shock"

showing 10 items of 691 documents

Targeting cancer with peptide aptamers

2011

Renaud Seigneuric 1,2 , Jessica Gobbo 1,2 , Pierre Colas 3 , Carmen Garrido 1,2 1 Heat Shock Proteins and Cancer, INSERM, UMR 866 IFR 100, Faculty of Medicine, 7 Boulevard Jeanne D'Arc, 21000 Dijon, France 2 Universite de Bourgogne, Dijon, France 3 CNRS USR 3151, P2I2 Group, Station Biologique, Roscoff, Bretagne, France Received: June 22, 2011; Accepted: June 24, 2011; Published: June 24, 2011; Correspondence: Renaud Seigneuric, email: // // Abstract A major endeavour in cancer chemotherapy is to develop agents that specifically target a biomolecule of interest. There are two main classes of targeting agents: small molecules and biologics. Among biologics (e.g.: antibodies), DNA, RNA but al…

Cancer chemotherapyAptamermedicine.medical_treatmentRecombinant Fusion ProteinsPeptide Aptamersheat shock proteinAntineoplastic AgentsComputational biologyPharmacologyBiologyTargeted therapy03 medical and health sciences0302 clinical medicineNeoplasmsmedicineHumansNanotechnologyMolecular Targeted TherapyHeat-Shock Proteins030304 developmental biologyCancer0303 health sciencesClinical Trials as TopicCanceraptamerAntineoplastic Protocolsmedicine.diseasetargeted therapypeptide3. Good healthOncology030220 oncology & carcinogenesisResearch PerspectivesAptamers PeptideOncotarget
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Molecular Approaches to Target Heat Shock Proteins for Cancer Treatment

2015

HSP90 was the first molecular target to inhibit the interaction of this heat shock protein (HSP) with client proteins in cancer cells and tissues. The HSP90 inhibition was attempted to liberate from this chaperone the oncogenic fusion proteins, mutated and activated serine/threonine protein kinases, tyrosine kinases, as well as transcription factors with oncogenic activity, in this manner, the free proteins could be recognized by the proteasome system to be degraded. We should remember here that many HSP family members are overexpressed in different kinds of cancer tissues, these molecules act as chaperones of tumorigenesis. In cancer patients, the first generation of HSP90 inhibitors showe…

Cancer Drug resistance Heat shock proteins HSP27 HSP60 HSP70 HSP90 Molecular targets New anticancer drugs Therapy.
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Kinetics and Intensity of the Expression of Genes Involved in the Stress Response Tightly Induced by Phenolic Acids in <i>Lactobacillus plantar…

2007

In <i>Lactobacillus plantarum</i>, PadR, the negative transcriptional regulator of <i>padA </i>encoding the phenolic acid decarboxylase, is divergently oriented from <i>padA. </i>Moreover, it forms an operonic structure with <i>usp1,</i> a genewhose products display homology with proteins belonging to the UspA family of universal stress proteins. PadR is inactivated by the addition of <i>p-</i>coumaric, ferulic or caffeic acid to the culture medium. In order to better characterize the stress response of this bacterium to phenolic acids, we report here the kinetics and quantitative expression by qRT-PCR of the 3 genes from the <i…

Carboxy-lyasesPhysiologymedicine.disease_causeApplied Microbiology and BiotechnologyBiochemistryMicrobiology03 medical and health scienceschemistry.chemical_compoundHeat shock proteinGene expressionmedicineCaffeic acidEscherichia coliGene030304 developmental biology0303 health sciencesbiology030306 microbiologyCell BiologyPhenolic acidbiology.organism_classificationMolecular biologychemistryBiochemistryLactobacillus plantarumBiotechnologyMicrobial Physiology
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Prognostic significance of central venous-to-arterial carbon dioxide difference during the first 24 hours of septic shock in patients with and withou…

2017

IF 6.238; International audience; Objective: To investigate the prognostic significance of central venous-to-arterial carbon dioxide difference (cv-art CO2 gap) during septic shock in patients with and without impaired cardiac function.Methods: We performed a prospective cohort study in 10 French intensive care units. Patients suffering from septic shock were assigned to the impaired cardiac function group (‘cardiac group’, n=123) if they had atrial fibrillation (AF) and/or left ventricular ejection fraction (LVEF) 0.9 kPa at 12 h had a higher risk of day 28 mortality (hazard ratio=3.18; P=0.0049). Among the 59 patients in the cardiac group with mean arterial pressure (MAP) ≥65 mm Hg, centr…

Cardiac function curveAdultMalemedicine.medical_specialtyMean arterial pressureAdolescentCentral Venous Pressurecentral venous-arterial CO2 difference030204 cardiovascular system & hematologyVentricular Function Left03 medical and health sciencesYoung Adult0302 clinical medicine[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyInternal medicineIntensive caremedicineHumansArterial PressureProspective StudiesAgedEjection fractionbusiness.industrySeptic shockCentral venous pressure030208 emergency & critical care medicineCarbon DioxideMiddle Agedmedicine.diseasePrognosisShock Septic3. Good healthSurgeryAnesthesiology and Pain MedicineBlood pressureblood gas analysisCardiologyArterial bloodseptic shockFemalebusiness[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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Impact of intra-aortic balloon counterpulsation on all-cause mortality among patients with Takotsubo syndrome complicated by cardiogenic shock: resul…

2023

Abstract Aims Takotsubo syndrome (TTS) is an acute and reversible left ventricular dysfunction and can be complicated by cardiogenic shock (CS). However, few data are available on optimal care in TTS complicated by CS. Aim of this study was to evaluate short- and long-term impact of intra-aortic balloon pumping (IABP) on mortality in this setting. Methods and results In a multi-centre, international registry on TTS, 2248 consecutive patients were enrolled from 38 centres from Germany, Italy, and Spain. Of the 2248 patients, 212 (9.4%) experienced CS. Patients with CS had a higher prevalence of diabetes (27% vs. 19%), male sex (25% vs. 10%), and right ventricular involvement (10% vs. 5%) (P …

Cardiogenic shock GEIST IABP In-hospital complications Intra-aortic balloon counter-pulsation Stress cardiomyopathy Takotsubo syndrome
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Cardioprotection by gene therapy

2015

Ischemic heart disease remains the leading cause of death worldwide. Ischemic pre-, post-, and remote conditionings trigger endogenous cardioprotection that renders the heart resistant to ischemic-reperfusion injury (IRI). Mimicking endogenous cardioprotection by modulating genes involved in cardioprotective signal transduction provides an opportunity to reproduce endogenous cardioprotection with better possibilities of translation into the clinical setting. Genes and signaling pathways by which conditioning maneuvers exert their effects on the heart are partially understood. This is due to the targeted approach that allowed identifying one or a few genes associated with IRI and cardioprote…

Cardioprotectionmedicine.medical_specialtybiologybusiness.industryGene targetingSphingosine kinase 1Heat shock proteinInternal medicineGene expressionmedicinebiology.proteinCardiologyHepatocyte growth factorSignal transductionCardiology and Cardiovascular MedicinebusinessTranscription factormedicine.drugInternational Journal of Cardiology
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Yeast mRNA cap-binding protein Cbc1/Sto1 is necessary for the rapid reprogramming of translation after hyperosmotic shock.

2011

Global translation is inhibited in Saccharomyces cerevisiae cells under osmotic stress; nonetheless, osmostress-protective proteins are synthesized. We found that translation mediated by the mRNA cap-binding protein Cbc1 is stress-resistant and necessary for the rapid translation of osmostress-protective proteins under osmotic stress.

Cell PhysiologySaccharomyces cerevisiae ProteinsOsmotic shockRNA StabilitySaccharomyces cerevisiaeCycloheximideBiology03 medical and health scienceschemistry.chemical_compoundGene Knockout TechniquesEukaryotic translationOsmotic PressureStress PhysiologicalPolysomeGene Expression Regulation FungalProtein biosynthesisRNA MessengerMolecular Biology030304 developmental biologyCell Nucleus0303 health sciencesMicrobial ViabilityOsmotic concentration030302 biochemistry & molecular biologyEIF4ENuclear ProteinsTranslation (biology)Cell BiologyArticlesAdaptation PhysiologicalProtein TransportEukaryotic Initiation Factor-4EchemistryBiochemistryRNA Cap-Binding ProteinsPolyribosomesProtein BiosynthesisProtein BindingMolecular biology of the cell
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Geldanamycin-induced osteosarcoma cell death is associated with hyperacetylation and loss of mitochondrial pool of heat shock protein 60 (hsp60)

2013

Osteosarcoma is one of the most malignant tumors of childhood and adolescence that is often resistant to standard chemo- and radio-therapy. Geldanamycin and geldanamycin analogs have been recently studied as potential anticancer agents for osteosarcoma treatment. Here, for the first time, we have presented novel anticancer mechanisms of geldanamycin biological activity. Moreover, we demonstrated an association between the effects of geldanamycin on the major heat shock proteins (HSPs) and the overall survival of highly metastatic human osteosarcoma 143B cells. We demonstrated that the treatment of 143B cells with geldanamycin caused a subsequent upregulation of cytoplasmic Hsp90 and Hsp70 w…

Cell SurvivalLactams Macrocycliclcsh:MedicineApoptosisBone NeoplasmsBiologyMitochondrionMitochondrial Proteinschemistry.chemical_compoundGeldanamycin Hsp60 Osteosarcoma cellHeat shock proteinCell Line Tumorpolycyclic compoundsBenzoquinonesHumansHeat shocklcsh:ScienceCell ProliferationOsteosarcomaMultidisciplinaryAntibiotics Antineoplasticlcsh:RAcetylationChaperonin 60GeldanamycinHsp90Molecular biologyMitochondriaProtein TransportchemistryCancer cellCancer researchbiology.proteinApoptotic signaling pathwayHSP60lcsh:QDrug Screening Assays AntitumorProtein Processing Post-TranslationalResearch ArticleSignal Transduction
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Exosomal Heat Shock Proteins as New Players in Tumour Cell-to-cell Communication

2014

Exosomes have recently been proposed as novel elements in the study of intercellular communication in normal and pathological conditions. The biomolecular composition of exosomes reflects the specialized functions of the original cells. Heat shock proteins (Hsps) are a group of chaperone proteins with diverse biological roles. In recent years, many studies have focused on the extracellular roles played by Hsps that appear to be involved in cancer development and immune system stimulation. Hsps localized on the surface of exosomes, secreted by normal and tumour cells, could be key players in intercellular cross-talk, particularly during the course of different diseases, such as cancer. Exoso…

Cell signalingBiochemistry (medical)Clinical BiochemistryCancerCell CommunicationBiologylcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.diseaseExososomes HspsHeat Shock Proteinslcsh:RC254-282MicrovesiclesCell biologyExtracellular VesiclesImmune systemHeat shock proteinDrug deliveryExtracellularmedicineIntracellularextracellular vesicles; heat shock proteins; cell communicationJournal of Circulating Biomarkers
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Heat shock protein 10 and signal transduction: a “capsula eburnea” of carcinogenesis?

2006

To date, little is known either about the physical interactions of heat shock protein 10 (Hsp10) with other proteins within the cell or its involvement in signal transduction pathways. Hsp10 has been considered mainly as a partner of Hsp60 in the Hsp60/10 protein folding machine. Only recently, Hsp10 was reported to interact with proteins involved in deoxyribonucleic acid checkpoint inactivation, termination of M-phase, messenger ribonucleic acid export, import of nuclear proteins, nucleocytoplasmic transport, and pheromone signaling pathways. At the same time, Hsp10 expression can be up-regulated in cancer cells, because it accumulates as the cell transformation progresses. Recent data sug…

Cell signalingColonCellular differentiationApoptosisChaperonin 60Cell BiologyBiologyCell cycleBiochemistryCell biologyFungal ProteinsBiochemistryHsp10 carcinogenesisNucleocytoplasmic TransportNeoplasmsHeat shock proteinColonic NeoplasmsChaperonin 10HumansHSP60MinireviewNuclear proteinSignal transductionSignal Transduction
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