Search results for "Radioactive Tracers"

showing 7 items of 7 documents

The accuracy of sentinel lymph node biopsy in the treatment of multicentric invasive breast cancer using a subareolar injection of tracer.

2008

BACKGROUND: The aim of this study was to evaluate the feasibility and the accuracy of sentinel lymph node biopsy in multicentric breast cancer (MBC) performed by means of a subareolar (SA) injection of both 99Tc-labeled human albumin colloid and lymphazurin. METHODS: Between January 2002 and October 2007, 34 patients with MBC with clinically negative axilla underwent sentinel lymph node biopsy (SLNB) followed by total axillary node dissection (AD). Overall successful identification rate of SLN was 100%; there were no false negatives and overall accuracy rate was 100%. RESULTS: The mean number of sentinel lymph nodes (SLNs) identified was 1.8 +/- 0.88 (range = 1-4); the mean number of axilla…

Adultmedicine.medical_specialtyAxillary lymph nodesInjections IntradermalSentinel lymph nodeBreast NeoplasmsIsosulfan BlueSettore MED/08 - Anatomia PatologicaCohort StudiesBreast cancerPredictive Value of TestsBiopsymedicineRosaniline DyesHumansRadioactive TracersColoring AgentsTechnetium Tc 99m Aggregated AlbuminAgedRetrospective Studiesmedicine.diagnostic_testbusiness.industrySentinel Lymph Node BiopsyCarcinoma Ductal BreastReproducibility of ResultsSentinel Lymph Node Biopsy Multicentric Invasive Breast CancerMiddle Agedmedicine.diseaseSurgeryAxillaCarcinoma LobularSettore MED/18 - Chirurgia Generalemedicine.anatomical_structureSurgeryFemaleBreast diseaseRadiologyLymphRadiopharmaceuticalsbusiness
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Reinvestigation of the synthesis and evaluation of [N-methyl-11C]vorozole, a radiotracer targeting cytochrome P450 aromatase

2009

Abstract Introduction We reinvestigated the synthesis of [ N -methyl- 11 C]vorozole, a radiotracer for aromatase, and discovered the presence of an N -methyl isomer which was not removed in the original purification method. Herein we report the preparation and positron emission tomography (PET) studies of pure [ N -methyl- 11 C]vorozole. Methods Norvorozole was alkylated with [ 11 C]methyl iodide as previously described and also with unlabeled methyl iodide. A high-performance liquid chromatography (HPLC) method was developed to separate the regioisomers. Nuclear magnetic resonance (NMR) spectroscopy ( 13 C and 2D-nuclear Overhauser effect spectroscopy NMR) was used to identify and assign s…

Cancer ResearchMagnetic Resonance SpectroscopyTime FactorsAlkylationStereochemistryStereoisomerismNuclear Overhauser effectAlkylationHigh-performance liquid chromatographyArticlechemistry.chemical_compoundAromatasemedicineStructural isomerAnimalsRadiology Nuclear Medicine and imagingHydrocarbons IodinatedRadioactive TracersChromatography High Pressure LiquidChemistryBrainStereoisomerismNuclear magnetic resonance spectroscopyTriazolesPositron-Emission TomographyVorozoleMolecular MedicineFemalePapiomedicine.drugMethyl iodideNuclear Medicine and Biology
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Gallium-68 and scandium-44 labelled radiotracers based on curcumin structure linked to bifunctional chelators: Synthesis and characterization of pote…

2019

Abstract Curcumin metal complexes showed widespread applications in medicine and can be exploited as a lead structure for developing new tracers for nuclear medicine application. Herein, the synthesis, chemical characterization and radiolabelling with gallium-68 and scandium-44 of two new targeting vectors based on curcumin scaffolds and linked to the chelators 1,4,7-triazacyclononane,1-glutaric acid-4,7-acetic acid (NODAGA) and 1,4-bis(carboxymethyl)-6-[bis(carboxymethyl)]amino-6-methylperhydro-1,4-diazepine (AAZTA) are reported. Synthesis of the precursors could be achieved with a 13% and 11% yield and radiolabelling generally afforded rapid incorporation under mild conditions (>95%). Sta…

CurcuminRadionuclide imagingGallium RadioisotopesPyrazole010402 general chemistry01 natural sciencesBiochemistryInorganic Chemistrychemistry.chemical_compoundMoietyAnimalsHumansTissue DistributionRadioactive TracersBifunctionalDerivatizationPET radiopharmaceuticalsChelating AgentsRadioisotopes010405 organic chemistryGallium-68Combinatorial chemistryIn vitro0104 chemical scienceschemistryYield (chemistry)Positron-Emission TomographyLipophilicityNuclear medicineCurcuminCurcumin; Gallium-68; Nuclear medicine; PET radiopharmaceuticals; Radionuclide imaging; Scandium-44RadiopharmaceuticalsScandium-44Scandium
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Positron emission tomography in CNS drug discovery and drug monitoring.

2014

Molecular imaging methods such as positron emission tomography (PET) are increasingly involved in the development of new drugs. Using radioactive tracers as imaging probes, PET allows the determination of the pharmacokinetic and pharmacodynamic properties of a drug candidate, via recording target engagement, the pattern of distribution, and metabolism. Because of the noninvasive nature and quantitative end point obtainable by molecular imaging, it seems inherently suited for the examination of a pharmaceutical’s behavior in the brain. Molecular imaging, most especially PET, can therefore be a valuable tool in CNS drug research. In this Perspective, we present the basic principles of PET, th…

DrugCentral Nervous Systemmedia_common.quotation_subjectDopamineGlutamic AcidPharmacologyPermeabilityReceptors DopamineDrug DiscoverymedicineAnimalsHumansRadioactive Tracersmedia_commonEnd pointmedicine.diagnostic_testChemistryDrug discoveryDrug candidateTarget engagementBrainModels ChemicalPharmaceutical PreparationsPositron emission tomographyPositron-Emission TomographyReceptors SerotoninSchizophreniaMolecular MedicineMolecular imagingDrug MonitoringGlycolysisBiomedical engineeringCentral Nervous System AgentsJournal of medicinal chemistry
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Isomerism of [64Cu-NOTA-Bn]-labeled radiotracers: separation of two complex isomers and determination of their interconversion energy barrier using i…

2011

The model complex [(64)Cu((S)-p-NH(2)-Bn-NOTA)](-) ([(64)Cu]1) was used to study the isomerism of [(64)Cu-NOTA-Bn]-labeled radiotracers. Two complex isomers [(64)Cu]1a and [(64)Cu]1b, which were formed at a ratio of 1:9 during the complexation of [(64)Cu]Cu(2+) with (S)-p-NH(2)-Bn-NOTA, were separated using ion pair chromatography. To study the interconversion, the nonradioactive complex isomers Cu1a and Cu1b were separated and thermally treated at 90 °C in both ammonium acetate solution and deionized water. A faster interconversion rate was observed for both isomers with lower concentrations of ammonium ions. At the end of reaction, the thermodynamic Cu1a to Cu1b equilibrium ratio was 6:94…

Ion pair chromatographyAnalytical chemistryMolecular Conformationchemistry.chemical_elementAcetatesChemical Fractionation010402 general chemistry01 natural sciencesMolecular conformationIonInorganic Chemistrychemistry.chemical_compoundHeterocyclic Compounds 1-RingDrug StabilityIsomerismCoordination ComplexesHeterocyclic CompoundsAmmoniumPhysical and Theoretical ChemistryRadioactive TracersChromatography010405 organic chemistryChemistryChemical fractionationTemperatureWaterHydrogen-Ion ConcentrationCopper0104 chemical sciencesSolutionsPositron-Emission TomographyPhysical chemistryThermodynamicsAmmonium acetateCopperInorganic chemistry
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18F-labeling and evaluation of novel MDL 100907 derivatives as potential 5-HT2A antagonists for molecular imaging.

2009

Abstract Introduction The serotonergic system, especially the 5-HT2A receptor, is involved in various diseases and conditions. It is a very interesting target for medicinal applications. Methods Two novel 5-HT2A tracers, namely, [ 18 F]DD-1 and the enantiomeric pure ( R )-[ 18 F]MH.MZ, were radiolabeled by 18 F-fluoroalkylation of the corresponding desmethyl analogue. In vitro binding autoradiography on rat brain slices was performed to test the affinity and selectivity of these tracers. Moreover, first μPET experiments of ( R )-[ 18 F]MH.MZ were carried out in Sprague-Dawley rats. Results [ 18 F]DD-1 ( K i =3.23 nM) and ( R )-[ 18 F]MH.MZ ( K i =0.72 nM) were 18 F-fluoroalkylated by the se…

MaleCancer ResearchFluorine RadioisotopesStereochemistryRats Sprague-DawleyPiperidinesAnimalsRadiology Nuclear Medicine and imagingReceptor Serotonin 5-HT2ARadioactive TracersRadiochemistryChemistrySynthonBinding potentialDesmethylCortex (botany)Molecular ImagingRatsFluorobenzenesPositron-Emission TomographySerotonin 5-HT2 Receptor AntagonistsMolecular MedicineAutoradiographySpecific activitySteady state (chemistry)EnantiomerSelectivityNuclear medicine and biology
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Analytical model for the long- distance tracer-transport in plants

2011

International audience; Recent investigations of long-distance transport in plants using non-invasive tracer techniques such as C radiolabeling monitored by positron emission tomography (PET) combined with magnetic resonance imaging (MRI) revealed the need of dedicated methods to allow a quantitative data analysis and comparison of such experiments. A mechanistic compartmental tracer transport model is presented, defined by a linear system of partial differential equations (PDEs). This model simplifies the complexity of axial transport and lateral exchanges in the transport pathways of plants (e.g. the phloem) by simulating transport and reversible exchange within three compartments using j…

metabolism [Plant Structures]Transport pathwaysPlant RootsNuclear magnetic resonanceCarbon RadioisotopesPositron emissiontomography(PET)11CPartial differential equationFourier AnalysisApplied MathematicsLinear systemfood and beveragesGeneral MedicinePlantsphysiology [Biological Transport]Magnetic Resonance Imagingmetabolism [Plants]Jddc:580Modeling and SimulationPositron emission tomography (PET)Beta vulgarisGeneral Agricultural and Biological SciencesBiological systemmetabolism [Zea mays]AlgorithmsSimulationStatistics and ProbabilityMaterials scienceC-11metabolism [Phloem]Data analysisPhloemZea maysModels BiologicalGeneral Biochemistry Genetics and Molecular Biologymetabolism [Plant Roots]RaphanusXylemTRACERddc:570metabolism [Carbon Radioisotopes]Computer SimulationSensitivity (control systems)Radioactive TracersGeneral Immunology and Microbiologymetabolism [Xylem]Biological Transportmetabolism [Raphanus]metabolism [Beta vulgaris]Positron-Emission TomographyConstant (mathematics)Plant Structures
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