Search results for "Antineoplastic agent"

showing 10 items of 1538 documents

Antibody Complementarity-Determining Regions (CDRs) Can Display Differential Antimicrobial, Antiviral and Antitumor Activities

2008

9 p. Background: Complementarity-determining regions (CDRs) are immunoglobulin (Ig) hypervariable domains that determine specific antibody (Ab) binding. We have shown that synthetic CDR-related peptides and many decapeptides spanning the variable region of a recombinant yeast killer toxin-like antiidiotypic Ab are candidacidal in vitro. An alanine-substituted decapeptide from the variable region of this Ab displayed increased cytotoxicity in vitro and/or therapeutic effects in vivo against various bacteria, fungi, protozoa and viruses. The possibility that isolated CDRs, represented by short synthetic peptides, may display antimicrobial, antiviral and antitumor activities irrespective of Ab…

Antifungal AgentsBIOCHEMISTRY AND MOLECULAR BIOLOGYMolecular Sequence DataImmunologylcsh:MedicineAntineoplastic AgentsMicrobial Sensitivity TestsComplementarity determining regionBiologyAntiviral AgentsOncology/Skin CancersAntibodiesMiceMicrobiology/Applied MicrobiologyAntigenBiochemistry/Protein ChemistryInfectious Diseases/Fungal InfectionsIn vivoCell Line TumorCandida albicansInfectious Diseases/Viral InfectionsAnimalsHumansAmino Acid Sequencelcsh:SciencePeptide sequenceMultidisciplinaryMEDICINElcsh:RAntimicrobialComplementarity Determining RegionsVirologyIn vitroOncologyBiochemistryViral replicationAGRICULTURAL AND BIOLOGICAL SCIENCESVirology/Immunodeficiency VirusesHIV-1biology.proteinlcsh:QAntibodyResearch ArticlePLoS ONE
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Synthesis and biological evaluation of abietic acid derivatives

2009

A series of C18-oxygenated derivatives of abietic acid were synthesized and evaluated for their cytotoxic, antimycotic, and antiviral activities. In general, the introduction of an aldehyde group at C18 did improve the resultant bioactivity, while the presence of an acid or alcohol led to less active compounds.

Antifungal AgentsCarboxylic acidMolecular ConformationAntineoplastic AgentsAlcoholHerpesvirus 1 HumanMicrobial Sensitivity TestsPrimary alcoholAntiviral AgentsChemical synthesisAldehydeStructure-Activity Relationshipchemistry.chemical_compoundChlorocebus aethiopsDrug DiscoveryAnimalsHumansStructure–activity relationshipOrganic chemistryAbietic acidVero CellsCandidaCell ProliferationPharmacologychemistry.chemical_classificationDose-Response Relationship DrugAspergillus fumigatusOrganic Chemistryfood and beveragesStereoisomerismGeneral Medicineequipment and suppliesAspergilluschemistryDrug DesignAbietaneslipids (amino acids peptides and proteins)DiterpeneHeLa CellsEuropean Journal of Medicinal Chemistry
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Synthesis and biological evaluation of (+)-labdadienedial, derivatives and precursors from (+)-sclareolide

2010

Labdadienedial and a series of C15,C16-functionalized derivatives were synthesized from commercial (+)-sclareolide and evaluated for their cytotoxic, antimycotic, and antiviral activities. Their precursors were similarly evaluated.

Antifungal AgentsStereochemistryAntineoplastic AgentsHerpesvirus 1 HumanAntiviral AgentsChemical synthesisInhibitory Concentration 50chemistry.chemical_compoundChlorocebus aethiopsDrug Discoveryotorhinolaryngologic diseasesAnimalsHumansCytotoxicityVero CellsPharmacologyOrganic ChemistryFungifood and beveragesSclareolideBiological activityGeneral MedicineCombinatorial chemistryTerpenoidIn vitrostomatognathic diseaseschemistrylipids (amino acids peptides and proteins)DiterpenesDiterpeneEnantiomerHeLa CellsEuropean Journal of Medicinal Chemistry
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Characterization of the interaction of the antifungal and cytotoxic cyclic glycolipopeptide hassallidin with sterol-containing lipid membranes.

2019

Hassallidins are cyclic glycolipopeptides produced by cyanobacteria and other prokaryotes. The hassallidin structure consists of a peptide ring of eight amino acids where a fatty acid chain, additional amino acids, and sugar moieties are attached. Hassallidins show antifungal activity against several opportunistic human pathogenic fungi, but does not harbor antibacterial effects. However, they have not been studied on mammalian cells, and the mechanism of action is unknown. We purified hassallidin D from cultured cyanobacterium Anabaena sp. UHCC 0258 and characterized its effect on mammalian and fungal cells. Ultrastructural analysis showed that hassallidin D disrupts cell membranes, causin…

Antifungal AgentskolesteroliPeptideLipopeptide01 natural sciencesBiochemistrychemistry.chemical_compoundSTRUCTURE ELUCIDATIONCandida albicansMARINE CYANOBACTERIAmammalian cellsmembrane1183 Plant biology microbiology virologychemistry.chemical_classification0303 health sciencesCell DeathMembraneGlycopeptidesLipopeptideHERBICOLIN-ADEHYDROPEPTIDE LACTONEAmino acidSterolsCholesterolMembraneBiochemistrysolunsalpaajatMitochondrial Membranesmedicine.symptomBacterial outer membraneBiophysicsmechanismAntineoplastic Agentssaponin digitoninMolecular dynamicsCyanobacteriaITURIN-A03 medical and health sciencesLipopeptidesMembrane LipidsNATURAL-PRODUCTSCell Line TumormedicineHumansPropidium iodidesyanobakteerit030304 developmental biologyantimikrobiset yhdisteet010405 organic chemistryMAJOR COMPONENTCell BiologyluonnonaineetAnabaenaSterol0104 chemical sciencesMechanism of actionchemistrylipopeptidepeptiditMOLECULAR-DYNAMICS1182 Biochemistry cell and molecular biologyDrug Screening Assays AntitumorGlycolipidsBiochimica et biophysica acta. Biomembranes
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Recent Trends in the Pharmacological Activity of Isoprenyl Phenolics

2012

Abstract A number of prenylated phenols, mainly flavonoids, have been identified as active constituents of medicinal plants. Due to their beneficial effects on human health, this class of compounds has received a great deal of attention, not only from the pharmaceutical industry, but also from other areas of applied sciences, including the food, brewing, and cosmetics industries. The addition of prenyl residues through the activity of isoprenyltransferases, the key biosynthetic enzymes for these plant metabolites, endows flavonoids with a variety of biological activities, mostly due to improved interaction with membranes and proteins. The role of prenylated flavonoids in plants correlates w…

AntifungalAntioxidantmedicine.drug_classmedicine.medical_treatmentAnti-Inflammatory AgentsAntineoplastic AgentsPharmacologyBiochemistryAntioxidantschemistry.chemical_compoundPhenolsPrenylationDrug DiscoverymedicineHumansHypoglycemic AgentsTechnology PharmaceuticalPhenolsMedicinal plantsPrenylationPharmacologyTraditional medicineOrganic Chemistryfood and beveragesBiological activityBiosynthetic enzymechemistryAntiprotozoalMolecular MedicineCurrent Medicinal Chemistry
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Zinc oxide nanoparticles for therapeutic purposes in cancer medicine.

2020

The importance of zinc as a trace metal in the human body has long been overlooked. We now gradually discover that the impact of zinc on the health of our body might be as far-reaching as that of iron. Concurrently, nanomaterials containing zinc, in particular zinc oxide nanoparticles (ZnO NPs), are becoming increasingly attractive as innovative agents for medical applications. Zinc oxide is characterized by a good biocompatibility which allows the exploitation of its antibacterial, antifungal, antiviral, and anti-cancer qualities in a therapeutic setting. This perspective outlines the current state of knowledge concerning the interaction of zinc oxide nanoparticles with eukaryotic cells an…

AntifungalBiocompatibilitymedicine.drug_classCell SurvivalBiomedical EngineeringNanoparticlechemistry.chemical_elementContext (language use)NanotechnologyAntineoplastic Agents02 engineering and technologyZincNanomaterials03 medical and health sciencesCancer MedicineNeoplasmsmedicineAnimalsHumansGeneral Materials Science030304 developmental biologyCell Proliferation0303 health sciencesMolecular StructureChemistryGeneral ChemistryGeneral Medicine021001 nanoscience & nanotechnologyNanomedicineNanomedicineNanoparticlesZinc Oxide0210 nano-technologyJournal of materials chemistry. B
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DHFR Inhibitors: Reading the Past for Discovering Novel Anticancer Agents.

2019

Dihydrofolate reductase inhibitors are an important class of drugs, as evidenced by their use as antibacterial, antimalarial, antifungal, and anticancer agents. Progress in understanding the biochemical basis of mechanisms responsible for enzyme selectivity and antiproliferative effects has renewed the interest in antifolates for cancer chemotherapy and prompted the medicinal chemistry community to develop novel and selective human DHFR inhibitors, thus leading to a new generation of DHFR inhibitors. This work summarizes the mechanism of action, chemical, and anticancer profile of the DHFR inhibitors discovered in the last six years. New strategies in DHFR drug discovery are also provided, …

AntifungalCancer chemotherapymedicine.drug_classDrug Evaluation Preclinicaldihydrofolate reductase (DHFR) enzymePharmaceutical ScienceAntineoplastic AgentsComputational biologyReview01 natural scienceshybrid compoundsAnalytical Chemistrylcsh:QD241-44103 medical and health sciencesStructure-Activity RelationshipFolic Acidlcsh:Organic chemistryheterocyclic compoundsNeoplasmsDihydrofolate reductaseparasitic diseasesDrug DiscoverymedicineAnimalsHumansPhysical and Theoretical Chemistry030304 developmental biology0303 health sciencesHeterocyclic compoundbiology010405 organic chemistryDrug discoveryOrganic ChemistryDHFR inhibitors as anticancer agentSettore CHIM/08 - Chimica Farmaceutica0104 chemical sciencesDHFR drug discoveryTetrahydrofolate DehydrogenaseMechanism of actionChemistry (miscellaneous)Settore CHIM/03 - Chimica Generale E InorganicaDHFR inhibitors as anticancer agentsbiology.proteinMolecular MedicineFolic Acid Antagonistsmedicine.symptomMolecules (Basel, Switzerland)
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Ag+ Complexes as Potential Therapeutic Agents in Medicine and Pharmacy

2019

Silver is a non-essential element with promising antimicrobial and anticancer properties. This work is a detailed summary of the newest findings on the bioinorganic chemistry of silver, with a special focus on the applications of Ag+ complexes and nanoparticles. The coordination chemistry of silver is given a reasonable amount of attention, summarizing the most common silver binding sites and giving examples of such binding motifs in biologically important proteins. Possible applications of this metal and its complexes in medicine, particularly as antibacterial and antifungal agents and in cancer therapy, are discussed in detail. The most recent data on silver nanoparticles are also summari…

Antifungalsilver nanoparticlesSilvermedicine.drug_classCancer therapyMetal NanoparticlesNanoparticleAntineoplastic Agents02 engineering and technologyPharmacology010402 general chemistry01 natural sciencesBiochemistrySilver(I) complexesSilver nanoparticleCoordination complexStructure-Activity RelationshipAnti-Infective AgentsCoordination ComplexesDrug DiscoverymedicineHumansAmino Acid SequenceAmino AcidsIonsPharmacologychemistry.chemical_classificationMolecular StructureChemistryOrganic Chemistryantibacterial and anticancer activity of Ag+021001 nanoscience & nanotechnologyCombinatorial chemistry0104 chemical sciencescysteine and methionine motifsMolecular Medicine0210 nano-technologyProtein BindingCurrent Medicinal Chemistry
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Influence of DNA damage and repair upon the risk of treatment related leukemia

2008

Therapy-related myelodysplasia and acute myeloid leukemia (t-MDS/AML) are malignancies occurring after exposure to chemotherapy and/or radiotherapy. Several studies have addressed cumulative dose, dose intensity and exposure to specific agents of preceding cytotoxic therapy in relation to the risk of developing such leukemia. Since only a small percentage of patients exposed to cytotoxic therapy develop t-MDS/AML, it has been suggested that some genetic predisposition may be involved, specifically associated to polymorphisms in certain genes involved in chemotherapy/radiotherapy response - fundamentally genes intervening in drug detoxification and DNA synthesis and repair. A review is made …

Antimetabolites AntineoplasticCancer ResearchDNA RepairDNA repairDNA damagemedicine.medical_treatmentAntineoplastic AgentsBiologyhemic and lymphatic diseasesmedicineGenetic predispositionHumansTopoisomerase II InhibitorsGenetic Predisposition to DiseaseAntineoplastic Agents AlkylatingChemotherapyPolymorphism GeneticDrug detoxificationMyeloid leukemiaNeoplasms Second PrimaryHematologymedicine.diseaseRadiation therapyLeukemiaOncologyImmunologyCancer researchDNA DamageLeukemia & Lymphoma
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Stilbene-based anticancer agents: Resveratrol analogues active toward HL60 leukemic cells wit a non-specific phase mechanism

2006

Several stilbenes, related to known resveratrol, have been synthesized and tested for their anticancer effect on HL60 leukemia cell line, taking particular care of the cell cycle analysis. The most potent compound was the known (Z)-3,4',5-trimethoxystilbene (6b) which was active as apoptotic agent at 0.24 microM. Differently from other stilbenes (including resveratrol) that induced a prevalent recruitment of cells in S phase of cell cycle, we found a peculiar behavior of 6b that caused a decrease of cells in all phases of cell cycle (G0-G1, S, and G2-M) and a proportional increase of apoptotic cells. The potent pro-apoptotic activity shown by compound 6b and its effects on cell cycle make t…

AntimonyHL60Clinical BiochemistryPharmaceutical ScienceAntineoplastic AgentsHL-60 CellsResveratrolBiochemistryStructure-Activity Relationshipchemistry.chemical_compoundStilbenesDrug DiscoverymedicineHumansStructure–activity relationshipMolecular BiologyS phaseCell ProliferationMolecular StructureOrganic ChemistryCell cycleMechanism of actionchemistryBiochemistryAnticancer agentResveratrolCell cultureApoptosisResveratrol analogueCell cycle analysisMolecular Medicinemedicine.symptom
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