Search results for "Sms"

showing 10 items of 10610 documents

Autophagy as a defense strategy against stress: focus on Paracentrotus lividus sea urchin embryos exposed to cadmium

2015

Autophagy is used by organisms as a defense strategy to face environmental stress. This mechanism has been described as one of the most important intracellular pathways responsible for the degradation and recycling of proteins and organelles. It can act as a cell survival mechanism if the cellular damage is not too extensive or as a cell death mechanism if the damage/stress is irreversible; in the latter case, it can operate as an independent pathway or together with the apoptotic one. In this review, we discuss the autophagic process activated in several aquatic organisms exposed to different types of environmental stressors, focusing on the sea urchin embryo, a suitable system recently in…

0301 basic medicineProgrammed cell deathAquatic Organismsfood.ingredientEmbryo NonmammalianStreMini ReviewApoptosis; Autophagy; Cadmium; Defense strategies; Sea urchin embryos; Stress; Biochemistry; Cell BiologyApoptosisBiochemistryParacentrotus lividusToxicology03 medical and health scienceschemistry.chemical_compoundfoodStress PhysiologicalDefense strategieParacentrotusAutophagyAnimalsSettore BIO/06 - Anatomia Comparata E CitologiaSea urchin embryobiologyMechanism (biology)AutophagyApoptosiCell BiologyEnvironmental exposureEnvironmental Exposurebiology.organism_classificationAdaptation PhysiologicalCell biology030104 developmental biologychemistryParacentrotusIntracellularToxicantCadmium
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2-Methoxyestradiol and Its Combination with a Natural Compound, Ferulic Acid, Induces Melanoma Cell Death via Downregulation of Hsp60 and Hsp90

2019

Melanoma is an aggressive type of skin cancer with one of the highest mortality rates. Notably, its incidence in the last few decades has increased faster than any other cancer. Therefore, searching for novel anticancer therapies is of great clinical importance. In the present study, we investigated the anticancer potential of 2-methoxyestradiol, potent chemotherapeutic, in the A375 melanoma cellular model. In order to furthermore evaluate the anticancer efficacy of 2-methoxyestradiol, we have additionally combined the treatment with a naturally occurring polyphenol, ferulic acid. The results were obtained using the melanoma A375 cellular model. In the study, we used MTT assay, flow cytomet…

0301 basic medicineProgrammed cell deathArticle Subjectlcsh:RC254-282Ferulic acid03 medical and health scienceschemistry.chemical_compound2-Methoxyestradiol Hsp60 Hsp900302 clinical medicineMedicineMTT assay2-Methoxyestradiolbusiness.industryMelanomaCancermedicine.diseaselcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogens030104 developmental biologyOncologychemistry030220 oncology & carcinogenesisCancer cellCancer researchSkin cancerbusinessmedicine.drugResearch Article
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Glutathione in metastases: From mechanisms to clinical applications.

2016

Metastatic spread, not primary tumors, is the leading cause of cancer death. Glutathione (γ-glutamyl-cysteinyl-glycine, GSH) is particularly relevant in cancer cells as it is involved in regulating carcinogenic mechanisms, growth and dissemination, and multidrug and radiation resistance. Upon interaction of metastatic cells with the vascular endothelium, a high percentage of metastatic cells with high GSH levels survive the combined nitrosative and oxidative stresses elicited by the vascular endothelium. GSH release from different organs, mainly the liver, and its interorgan transport through the blood circulation to metastatic foci, promote their growth. This review focuses on the relation…

0301 basic medicineProgrammed cell deathClinical BiochemistryCancer therapyOxidative phosphorylationBiologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineMetastatic cellNeoplasmsmedicineAnimalsHumansNeoplasm MetastasisCarcinogenBiochemistry (medical)CancerGlutathionemedicine.diseaseGlutathione030104 developmental biologychemistry030220 oncology & carcinogenesisCancer cellImmunologyCancer researchCritical reviews in clinical laboratory sciences
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Betulinic Acid Kills Colon Cancer Stem Cells

2016

Cancer stem cells (CSCs) are considered to be the origin of cancer and it is suggested that they are resistant to chemotherapy. Current therapies fail to eradicate CSCs and therefore selecting a resistant cell subset that is able to facilitate tumor recurrences. Betulinic acid (BetA) is a broad acting natural compound, shown to induce cell death via the inhibition of the stearoyl-CoA- desaturase (SCD- 1). This enzyme converts saturated fatty acids into unsaturated fatty acids and is over-expressed in tumor cells. Here we show that BetA induces rapid cell death in all colon CSCs tested and is able to affect the CSCs directly as shown, via the loss of clonogenic capacity. Similar results were…

0301 basic medicineProgrammed cell deathColorectal cancerMedicine (miscellaneous)Biology03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCancer stem cellBetulinic acidCell Line TumormedicineHumansEnzyme InhibitorsClonogenic assayCell DeathCancer stem cellStearoyl CoA-desaturaseCancerGeneral Medicinemedicine.diseaseBetulinic acidTriterpenesClone CellsColon cancerTumor resistance030104 developmental biologychemistryBiochemistryCell culture030220 oncology & carcinogenesisCancer treatmentColonic NeoplasmsMutationCancer researchNeoplastic Stem CellsStem cellSettore MED/46 - Scienze Tecniche Di Medicina Di LaboratorioPentacyclic TriterpenesStearoyl-CoA DesaturaseCurrent stem cell research & therapy
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Kinase-independent functions of RIPK1 regulate hepatocyte survival and liver carcinogenesis.

2017

The mechanisms that regulate cell death and inflammation play an important role in liver disease and cancer. Receptor-interacting protein kinase 1 (RIPK1) induces apoptosis and necroptosis via kinase-dependent mechanisms and exhibits kinase-independent prosurvival and proinflammatory functions. Here, we have used genetic mouse models to study the role of RIPK1 in liver homeostasis, injury, and cancer. While ablating either RIPK1 or RelA in liver parenchymal cells (LPCs) did not cause spontaneous liver pathology, mice with combined deficiency of RIPK1 and RelA in LPCs showed increased hepatocyte apoptosis and developed spontaneous chronic liver disease and cancer that were independent of TNF…

0301 basic medicineProgrammed cell deathLiver tumorCell SurvivalNecroptosisMice TransgenicBiologyChronic liver diseaseProinflammatory cytokine03 medical and health sciencesLiver diseaseMiceLiver Neoplasms ExperimentalmedicineAnimalsDiethylnitrosamineKinase activityTranscription Factor RelAGeneral Medicinemedicine.disease3. Good healthNeoplasm Proteins030104 developmental biologymedicine.anatomical_structureCell Transformation NeoplasticReceptors Tumor Necrosis Factor Type IHepatocyteReceptor-Interacting Protein Serine-Threonine KinasesCancer researchHepatocytesSignal TransductionResearch ArticleThe Journal of clinical investigation
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Anticancer metal drugs and immunogenic cell death

2016

Conventional chemotherapeutics, but also innovative precision anticancer compounds, are commonly perceived to target primarily the cancer cell compartment. However, recently it was discovered that some of these compounds can also exert immunomodulatory activities which might be exploited to synergistically enhance their anticancer effects. One specific phenomenon of the interplay between chemotherapy and the anticancer immune response is the so-called “immunogenic cell death” (ICD). ICD was discovered based on a vaccination effect exerted by cancer cells dying from pretreatment with certain chemotherapeutics, termed ICD inducers, in syngeneic transplantation mouse models. Interestingly, onl…

0301 basic medicineProgrammed cell deathOrganoplatinum Compoundsmedicine.medical_treatmentAntineoplastic AgentsPharmacologyBiochemistryAntineoplastic AgentInorganic ChemistryMice03 medical and health sciences0302 clinical medicineImmune systemCancer immunotherapyNeoplasmsmedicineAnimalsHumansEndoplasmic Reticulum StreCisplatinChemotherapyCell DeathAnimalChemistryOrganoplatinum CompoundEndoplasmic Reticulum Stress3. Good healthOxaliplatin030104 developmental biologyAnticancer metal drugSettore CHIM/03 - Chimica Generale E Inorganica030220 oncology & carcinogenesisCancer cellUnfolded protein responseImmunogenic cell deathCisplatinReactive Oxygen SpecieReactive Oxygen SpeciesImmunogenic cell deathHumanmedicine.drugJournal of Inorganic Biochemistry
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SERCA and P-glycoprotein inhibition and ATP depletion are necessary for celastrol-induced autophagic cell death and collateral sensitivity in multidr…

2019

Multidrug resistance (MDR) represents an obstacle in anti-cancer therapy. MDR is caused by multiple mechanisms, involving ATP-binding cassette (ABC) transporters such as P-glycoprotein (P-gp), which reduces intracellular drug levels to sub-therapeutic concentrations. Therefore, sensitizing agents retaining effectiveness against apoptosis- or drug-resistant cancers are desired for the treatment of MDR cancers. The sarcoplasmic/endoplasmic reticulum Ca2+ ATPase (SERCA) pump is an emerging target to overcome MDR, because of its continuous expression and because the calcium transport function is crucial to the survival of tumor cells. Previous studies showed that SERCA inhibitors exhibit anti-c…

0301 basic medicineProgrammed cell deathSERCALung NeoplasmsCell SurvivalAntineoplastic AgentsAutophagy-Related Protein 7Sarcoplasmic Reticulum Calcium-Transporting ATPases03 medical and health scienceschemistry.chemical_compound0302 clinical medicineAdenosine TriphosphateCell Line TumorAutophagyAnimalsHumansATP Binding Cassette Transporter Subfamily B Member 1P-glycoproteinPharmacologybiologyDose-Response Relationship DrugChemistryAutophagyXenograft Model Antitumor AssaysDrug Resistance MultipleTriterpenesMultiple drug resistanceMice Inbred C57BL030104 developmental biologyCelastrolApoptosisDrug Resistance Neoplasm030220 oncology & carcinogenesisCancer cellbiology.proteinCancer researchHepatocytesPentacyclic TriterpenesPharmacological research
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Viral Bcl2s' transmembrane domain interact with host Bcl2 proteins to control cellular apoptosis

2020

© The Author(s) 2020.

0301 basic medicineProgrammed cell deathScienceProtein domainGeneral Physics and AstronomyApoptosisBiologyVirus-host interactionsArticleGeneral Biochemistry Genetics and Molecular BiologyFluorescenceCell Line03 medical and health sciences0302 clinical medicineProtein Domainsimmune system diseaseshemic and lymphatic diseasesmedicineHumansAmino Acid SequenceAuthor CorrectionPeptide sequenceneoplasmsMultidisciplinaryVirus–host interactionsQCell MembraneGeneral ChemistryViral proteinsmedicine.diseaseControl cellLymphomaCell biologyVirusTransmembrane domain030104 developmental biologyProto-Oncogene Proteins c-bcl-2Cell cultureApoptosisDoxorubicin030220 oncology & carcinogenesisbiological phenomena cell phenomena and immunityProtein MultimerizationHydrophobic and Hydrophilic InteractionsProteïnesProtein Binding
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The HMGB1 protein induces a metabolic type of tumour cell death by blocking aerobic respiration

2016

The high-mobility group box 1 (HMGB1) protein has a central role in immunological antitumour defense. Here we show that natural killer cell-derived HMGB1 directly eliminates cancer cells by triggering metabolic cell death. HMGB1 allosterically inhibits the tetrameric pyruvate kinase isoform M2, thus blocking glucose-driven aerobic respiration. This results in a rapid metabolic shift forcing cells to rely solely on glycolysis for the maintenance of energy production. Cancer cells can acquire resistance to HMGB1 by increasing glycolysis using the dimeric form of PKM2, and employing glutaminolysis. Consistently, we observe an increase in the expression of a key enzyme of glutaminolysis, malic …

0301 basic medicineProgrammed cell deathThyroid HormonesCellular respirationScienceCell RespirationMalic enzymeGeneral Physics and Astronomychemical and pharmacologic phenomenaPKM2BiologyGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciencesCell Line TumorHumansGlycolysisHMGB1 ProteinMultidisciplinaryGlutaminolysisCell DeathQMembrane ProteinsGeneral ChemistryCell biology030104 developmental biologyGlucoseCancer cellColonic NeoplasmsCarrier ProteinsGlycolysisPyruvate kinaseNature Communications
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The dissociation of the Hsp60/pro-Caspase-3 complex by bis(pyridyl)oxadiazole copper complex (CubipyOXA) leads to cell death in NCI-H292 cancer cells

2017

Abstract Cell survival and proliferation are central to carcinogenesis, involving various mechanisms among which those that impede apoptosis are important. In this, the role of the molecular chaperone Hsp60 is unclear since it has been reported that it can be both, pro- or anti-apoptotic. A solution to this riddle is crucial to the development of anti-cancer therapies targeting Hsp60. We addressed this question using a tumor cell line, NCI-H292, and [Cu(3,5-bis(2′-pyridyl)-1,2,4-oxadiazole) 2 (H 2 O) 2 ](ClO 4 ) 2 , CubipyOXA , a copper-containing compound with cytotoxic properties. We treated cells with various doses of the compound and measured cell viability; apoptosis indicators; and le…

0301 basic medicineProgrammed cell deathanimal structuresApoptosischemical and pharmacologic phenomenaCaspase 3medicine.disease_causecomplex mixturesBiochemistryMitochondrial ProteinsHsp60/pC3 complexInorganic Chemistry03 medical and health sciences0302 clinical medicineCoordination ComplexesCell Line TumorNeoplasmsCubipyOXAmedicineHumansCytotoxic T cellViability assayCancerOxadiazolesCaspase 3ChemistryfungiApoptosiChaperonin 60Hsp60Neoplasm ProteinsCell biology030104 developmental biologyApoptosisPro-caspase-3 (pC3)Multiprotein Complexes030220 oncology & carcinogenesisCancer cellHSP60Apoptosis; Cancer; CubipyOXA; Hsp60; Hsp60/pC3 complex; Pro-caspase-3 (pC3); Biochemistry; Inorganic ChemistryCarcinogenesisCopper
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