Search results for "CARDIOTOXICITY"

showing 10 items of 104 documents

Systemic blockade of ACVR2B ligands prevents chemotherapy-induced muscle wasting by restoring muscle protein synthesis without affecting oxidative ca…

2016

AbstractDoxorubicin is a widely used and effective chemotherapy drug. However, cardiac and skeletal muscle toxicity of doxorubicin limits its use. Inhibiting myostatin/activin signalling can prevent muscle atrophy, but its effects in chemotherapy-induced muscle wasting are unknown. In the present study we investigated the effects of doxorubicin administration alone or combined with activin receptor ligand pathway blockade by soluble activin receptor IIB (sACVR2B-Fc). Doxorubicin administration decreased body mass, muscle size and bone mineral density/content in mice. However, these effects were prevented by sACVR2B-Fc administration. Unlike in many other wasting situations, doxorubicin indu…

0301 basic medicineACUTE DOXORUBICIN CARDIOTOXICITYEXPRESSIONmedicine.medical_specialtyMDX MICEhuumeetlihaksetMyostatinProtein degradationEXERCISE PROTECTSMYOSTATINArticledrugs03 medical and health sciencesInternal medicinemedicineDoxorubicinCANCER CACHEXIApreclinical researchWastingaineenvaihduntaMultidisciplinaryCARDIOMYOPATHYbiologyRECEPTORbusiness.industrychemotheraphyta1182Skeletal muscleta3141Activin receptorta3122Muscle atrophy3. Good health030104 developmental biologyEndocrinologymedicine.anatomical_structurebiology.proteinSKELETAL-MUSCLEHEARTmuscles3111 Biomedicinemedicine.symptombusinessmetabolismACVR2Bmedicine.drug
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Cardiac Nonmyocyte Cell Functions and Crosstalks in Response to Cardiotoxic Drugs

2017

The discovery of the molecular mechanisms involved in the cardiac responses to anticancer drugs represents the current goal of cardio-oncology research. The oxidative stress has a pivotal role in cardiotoxic responses, affecting the function of all types of cardiac cells, and their functional crosstalks. Generally, cardiomyocytes are the main target of research studies on cardiotoxicity, but recently the contribution of the other nonmyocyte cardiac cells is becoming of growing interest. This review deals with the role of oxidative stress, induced by anticancer drugs, in cardiac nonmyocyte cells (fibroblasts, vascular cells, and immune cells). The alterations of functional interplays among t…

0301 basic medicineAgingHeart DiseasesAntineoplastic AgentsReview Article030204 cardiovascular system & hematologyPharmacologymedicine.disease_causeBiochemistryMuscle Smooth Vascular03 medical and health sciences0302 clinical medicineImmune systemHumansMedicineMyocytes CardiacLymphocyteslcsh:QH573-671Cardiotoxicitybusiness.industrylcsh:CytologyCell BiologyGeneral MedicineFibroblastsCell functionOxidative Stress030104 developmental biologyResearch studiesMolecular targetscardiovascular systemReactive Oxygen SpeciesbusinessOxidative stress
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Cardiotoxic Effects of Anti-VEGFR Tyrosine Kinase Inhibitors

2016

Angiogenesis is a key moment in tumor development and proliferation. Until recently oncologists did not know the mechanisms that were behind this phenomenon, but following the discoveries of Folkman and coworkers, they have gradually created and developed a series of drugs that act against angiogenesis by interacting with molecules belonging to the vascular endothelial growth factor (VEGFs) class and its receptors (VEGFRs) giving rise to anticancer effects. Tyrosine kinase inhibitors (TKIs) are a major class of these new anticancer agents, demonstrating high antitumor activity in a variety of "orphan" neoplasms (such as hepatocellular carcinoma, kidney cancer, sarcomas, etc.). The mechanism…

0301 basic medicineAngiogenesis; Cardio-oncology; Cardiotoxicity; Tyrosine kinase inhibitors; VEGF; VEGF pathway; Medicine (all)Settore MED/06 - Oncologia MedicaAngiogenesisTyrosine kinase inhibitorPharmacology03 medical and health scienceschemistry.chemical_compound0302 clinical medicineVEGF pathwaymedicineReceptorCardiotoxicitybusiness.industryMedicine (all)medicine.diseaseVEGFCardiotoxicityVascular endothelial growth factorAngiogenesiCardio-oncology030104 developmental biologyMechanism of actionchemistry030220 oncology & carcinogenesisHepatocellular carcinomamedicine.symptombusinessKidney cancerTyrosine kinase
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Pharmacogenetics of Metabolic Genes of Anthracyclines in Acute Myeloid Leukemia.

2018

Background Anthracyclines in combination with cytarabine have been the standard therapy for acute myeloid leukemia (AML) for decades with high efficacy. However, the majority of patients will show initial resistance or will relapse after initial complete remission. Genetic variability in genes involved in anthracyclines metabolic pathway could be one of the causes of the interindividual differences in clinical outcomes. Methods A systematic review of published studies in AML cohorts was carried out in order to analyze the influence of polymorphisms in genes of anthracycline metabolism on efficacy and toxicity. Results Polymorphisms in the main enzymes of anthracyclines metabolism (CBR, AKR,…

0301 basic medicineAnthracyclinemedicine.medical_treatmentClinical BiochemistryEfficacy03 medical and health sciences0302 clinical medicineAntineoplastic Combined Chemotherapy ProtocolsMedicineIdarubicinHumansAnthracyclinesPharmacologyCardiotoxicityChemotherapyPolymorphism Geneticbusiness.industryCytarabineMyeloid leukemiaLeukemia Myeloid Acute030104 developmental biologyPharmacogenetics030220 oncology & carcinogenesisCytarabineCancer researchbusinessPharmacogeneticsmedicine.drugCurrent drug metabolism
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Repurposing of plant alkaloids for cancer therapy: Pharmacology and toxicology.

2019

Drug repurposing (or repositioning) is an emerging concept to use old drugs for new treatment indications. Phytochemicals isolated from medicinal plants have been largely neglected in this context, although their pharmacological activities have been well investigated in the past, and they may have considerable potentials for repositioning. A grand number of plant alkaloids inhibit syngeneic or xenograft tumor growth in vivo. Molecular modes of action in cancer cells include induction of cell cycle arrest, intrinsic and extrinsic apoptosis, autophagy, inhibition of angiogenesis and glycolysis, stress and anti-inflammatory responses, regulation of immune functions, cellular differentiation, a…

0301 basic medicineCancer ResearchPhytochemicalsContext (language use)Antineoplastic AgentsPharmacologymedicine.disease_causeMetastasis03 medical and health sciences0302 clinical medicineAlkaloidsNeoplasmsDrug DiscoveryToxicity TestsmedicineAnimalsHumansRepurposingCardiotoxicitybusiness.industryDrug Repositioningmedicine.diseaseDrug repositioning030104 developmental biology030220 oncology & carcinogenesisCancer cellbusinessCarcinogenesisGenotoxicitySeminars in cancer biology
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Impact of NADPH oxidase functional polymorphisms in acute myeloid leukemia induction chemotherapy.

2016

Efficacy and toxicity of anthracycline treatment in acute myeloid leukemia (AML) is mediated by reactive oxygen species (ROS). NADPH oxidase is the major endogenous source of ROS and a key mediator of oxidative cardiac damage. The impact of NADPH oxidase polymorphisms (CYBA:rs4673, NCF4:rs1883112, RAC2:rs13058338) was evaluated in 225 adult de novo AML patients. Variant alleles of NCF4 and RAC2 were related to higher complete remission (P=0.035, P=0.016), and CYBA homozygous variant showed lower overall survival with recessive model (P=0.045). Anthracycline-induced cardiotoxicity was associated to NCF4 homozygous variant (P=0.012) and CYBA heterozygous genotype (P=0.027). Novel associations…

0301 basic medicineMaleAnthracyclinePharmacologyBiologyPolymorphism Single NucleotideNephrotoxicity03 medical and health sciences0302 clinical medicineAntineoplastic Combined Chemotherapy ProtocolsGeneticsHumansAgedRetrospective StudiesPharmacologychemistry.chemical_classificationReactive oxygen speciesCardiotoxicityNADPH oxidaseRemission InductionMyeloid leukemiaNADPH OxidasesInduction ChemotherapyMiddle Agedrac GTP-Binding ProteinsRac GTP-Binding ProteinsLeukemia Myeloid Acute030104 developmental biologychemistry030220 oncology & carcinogenesisToxicitybiology.proteinMolecular MedicineFemaleReactive Oxygen SpeciesThe pharmacogenomics journal
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Levosimendan prevents doxorubicin-induced cardiotoxicity in time- and dose-dependent manner: implications for inotropy.

2019

Abstract Aims Levosimendan (LEVO) a clinically-used inodilator, exerts multifaceted cardioprotective effects. Case-studies indicate protection against doxorubicin (DXR)-induced cardiotoxicity, but this effect remains obscure. We investigated the effect and mechanism of different regimens of levosimendan on sub-chronic and chronic doxorubicin cardiotoxicity. Methods and results Based on preliminary in vivo experiments, rats serving as a sub-chronic model of doxorubicin-cardiotoxicity and were divided into: Control (N/S-0.9%), DXR (18 mg/kg-cumulative), DXR+LEVO (LEVO, 24 μg/kg-cumulative), and DXR+LEVO (acute) (LEVO, 24 μg/kg-bolus) for 14 days. Protein kinase-B (Akt), endothelial nitric oxi…

0301 basic medicineMaleMice 129 StrainTime FactorsHeart DiseasesNitric Oxide Synthase Type IIIPhysiology030204 cardiovascular system & hematologyPharmacology03 medical and health sciences0302 clinical medicineEnosPhysiology (medical)medicineCyclic AMPCyclic GMP-Dependent Protein KinasesAnimalsDoxorubicinMyocytes CardiacCalcium SignalingRats WistarProtein kinase BCyclic GMPCells CulturedSimendanCardioprotectionMice KnockoutCardiotoxicityAntibiotics AntineoplasticbiologyDose-Response Relationship DrugChemistryCalcium-Binding ProteinsMammary Neoplasms ExperimentalCardiovascular AgentsLevosimendanbiology.organism_classificationCyclic AMP-Dependent Protein KinasesMyocardial ContractionCardiotoxicityPhospholambanMice Inbred C57BL030104 developmental biologyDoxorubicinMilrinoneFemaleCardiology and Cardiovascular MedicineProto-Oncogene Proteins c-aktmedicine.drugCardiovascular research
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VEGF-B gene therapy inhibits doxorubicin-induced cardiotoxicity by endothelial protection

2016

Congestive heart failure is one of the leading causes of disability in long-term survivors of cancer. The anthracycline antibiotic doxorubicin (DOX) is used to treat a variety of cancers, but its utility is limited by its cumulative cardiotoxicity. As advances in cancer treatment have decreased cancer mortality, DOX-induced cardiomyopathy has become an increasing problem. However, the current means to alleviate the cardiotoxicity of DOX are limited. We considered that vascular endothelial growth factor-B (VEGF-B), which promotes coronary arteriogenesis, physiological cardiac hypertrophy, and ischemia resistance, could be an interesting candidate for prevention of DOX-induced cardiotoxicity …

0301 basic medicineMaleVEGFBVascular Endothelial Growth Factor BAnthracyclineAdipose Tissue WhiteCardiomyopathyheart failureApoptosisheart030204 cardiovascular system & hematologyPharmacologyta3111Mitochondria Heart03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCell Line TumorNeoplasmsmedicinepolycyclic compoundscancerAnimalsDoxorubicinTube formationCardiotoxicityMultidisciplinaryAntibiotics Antineoplasticbusiness.industryta1184MyocardiumEndothelial CellsGenetic TherapyBiological Sciencesmedicine.diseaseCardiotoxicity3. Good healthVascular endothelial growth factorMice Inbred C57BL030104 developmental biologychemistryLiverDoxorubicinHeart failureendothelial cellArteriogenesisbusinessmedicine.drugDNA Damage
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The anti-cancer drug doxorubicin induces substantial epigenetic changes in cultured cardiomyocytes.

2019

Abstract The anthracycline doxorubicin (DOX) is widely used in cancer therapy with the limitation of cardiotoxicity leading to the development of congestive heart failure. DOX-induced oxidative stress and changes of the phosphoproteome as well as epigenome were described but the exact mechanisms of the adverse long-term effects are still elusive. Here, we tested the impact of DOX treatment on cell death, oxidative stress parameters and expression profiles of proteins involved in epigenetic pathways in a cardiomyocyte cell culture model. Markers of oxidative stress, apoptosis and expression of proteins involved in epigenetic processes were assessed by immunoblotting in cultured rat myoblasts…

0301 basic medicineProgrammed cell deathMethyltransferaseApoptosisToxicologymedicine.disease_causeHistone DeacetylasesEpigenesis GeneticHistones03 medical and health sciences0302 clinical medicinemedicineAnimalsMyocytes CardiacEpigeneticsCells CulturedHistone DemethylasesAntibiotics AntineoplasticbiologyDose-Response Relationship DrugHistone deacetylase 2ChemistryGeneral MedicineEpigenomeHydrogen PeroxideCardiotoxicityCell biologyRatsOxidative Stress030104 developmental biologyHistoneAcetylationDoxorubicin030220 oncology & carcinogenesisbiology.proteinOxidative stressBiomarkersChemico-biological interactions
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Cardiotoxicity and Cardioprotection by Artesunate in Larval Zebrafish

2019

Although artesunate (ART) is generally accepted as a safe and well-tolerated first-line treatment of severe malaria, cases of severe side effects and toxicity of this compound are also documented. This study applied larval zebrafishes to determine the acute toxicity and efficacy of ART and performed RNA-sequencing analyses to unravel the underlying signaling pathways contributing to ART’s activities. Results from acute toxicity assay showed that a single-dose intravenous injection of ART from 3.6 ng/fish (1/9 maximum nonlethal concentration) to 41.8 ng/fish (lethal dose 10%) obviously induced pericardial edema, circulation defects, yolk sac absorption delay, renal edema, and swim bladder l…

0301 basic medicinenatural productsHealth Toxicology and MutagenesisShort ReportmalariaDevelopmental toxicityPharmacologyToxicologyNephrotoxicity03 medical and health scienceschemistry.chemical_compound0302 clinical medicineEdemamedicinecancernetwork pharmacologyCardiotoxicityChemical Health and Safetybusiness.industrylcsh:RM1-950Public Health Environmental and Occupational Healthmedicine.diseaseAcute toxicity030104 developmental biologylcsh:Therapeutics. PharmacologychemistryArtesunate030220 oncology & carcinogenesisHeart failureToxicitymedicine.symptombusinessDose-Response
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