0000000000657368

AUTHOR

Sandra S. Meyer

0000-0002-1778-8768

showing 2 related works from this author

Co-localisation of hypoxia and perfusion markers with parameters of glucose metabolism in human squamous cell carcinoma (hSCC) xenografts

2009

Purpose: To examine relationships between tumour hypoxia, perfusion and metabolic microenvironment at themicroregional level in three different human squamous cell carcinomas (hSCC). Materials and methods: Nude mice bearing FaDu, UT-SCC-15, and UT-SCC-5 hSCC were injected with pimonidazole hypoxia and Hoechst perfusion markers. Bioluminescence imaging was used to determine spatial distribution of glucose and lactate content in serial tumour sections. Metabolite levels were grouped in 10 concentration ranges. Images were co-registered and at each concentration range the proportion of area stained for pimonidazole and Hoechst was determinedin 11–13 tumours per tumour line. Results: The spatia…

MaleRadiation-Sensitizing AgentsPathologymedicine.medical_specialtyMetaboliteglucose metabolismTransplantation HeterologousCellMice NudeBiologyCarbohydrate metabolismperfusionbiological imagingMicechemistry.chemical_compoundhuman tumour xenograftsCell Line TumorBiomarkers TumormedicineCo localisationAnimalsHumansPimonidazoleBioluminescence imagingRadiology Nuclear Medicine and imagingLactic AcidHypoxiatumour micromilieuFluorescent DyesRadiological and Ultrasound TechnologyHypoxia (medical)Glucosemedicine.anatomical_structureMicroscopy Fluorescencechemistrypimonidazole hypoxiaNitroimidazolesCarcinoma Squamous CellBenzimidazolesFemalemedicine.symptomPerfusionNeoplasm Transplantation
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Glycolytic metabolism and tumour response to fractionated irradiation.

2009

Abstract Background and purpose To study whether pre-therapeutic lactate or pyruvate predict for tumour response to fractionated irradiation and to identify possible coherencies between intermediates of glycolysis and expression levels of selected proteins. Materials and methods Concentrations of lactate, pyruvate, glucose and ATP were quantified via bioluminescence imaging in tumour xenografts derived from 10 human head and neck squamous cell carcinoma (HNSCC) lines. Tumours were irradiated with 30 fractions within 6weeks. Expression levels of the selected proteins in tumours were measured at the mRNA and protein level. Tumour-infiltrating leucocytes were quantified after staining for CD45…

Pathologymedicine.medical_specialtyMiceAdenosine TriphosphateIn vivoRadioresistanceCell Line TumorPyruvic AcidmedicineBioluminescence imagingAnimalsHumansRadiology Nuclear Medicine and imagingGlycolysisRadiosensitivityLactic AcidbiologyChemistryDose fractionationHematologyMetabolismGlucoseOncologyHead and Neck Neoplasmsbiology.proteinCancer researchCarcinoma Squamous CellGLUT1Dose Fractionation RadiationGlycolysisRadiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology
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