Apoptosis driven by elastase inhibitor: new approach to detection and study.
Apoptosis driven by elastase inhibitor: new approach to detection and study.
批准号:
8569324
负责人:
VLADIMIR V DIDENKO
金额:
$19.19万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-07-01 至 2015-06-30
关键词:
AliquotAlzheimer&aposs DiseaseApoptosisApoptoticAreaBiochemicalBiochemistryBiological AssayBrain NeoplasmsCaliberCaspaseCell Culture TechniquesCell DeathCell NucleusCellsCharacteristicsClinical ResearchColorCysteine ProteaseDNADNA DamageDeoxyribonucleasesDetectionDevelopmentDiagnosticDiseaseEvaluationEventFluorescenceFluorescence Resonance Energy TransferFluorescent ProbesFutureGlioblastomaGoalsImageImageryImaging DeviceImaging technologyIn SituInvestigationLabelLifeMalignant NeoplasmsMedicalMethodologyMethodsModelingOutcomeParticipantPathologyPathway interactionsPeptide HydrolasesPlayProtease InhibitorResearchRoleRouteSamplingSerine Proteinase InhibitorsSignal TransductionSiteSpecificitySpottingsStrokeSurfaceSystemTechnologyTestingTherapeutic InterventionTimeTissuesUp-RegulationWorkbasecancer celleffective therapyelastase inhibitormembermonocyteneoplastic cellneutrophil elastase inhibitornovel strategiesnucleaseprognosticprogramspublic health relevancesensortooltumor
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Multiple pathways leading to apoptosis of cancer cells have been discovered. To understand the mechanisms controlling cell elimination in each specific situation, it is necessary to have probes which can distinguish between different apoptotic routes. One of the most recently identified apoptotic programs is the elastase inhibitor-driven apoptosis. However, this particular pathway still lacks specific tools for its visualizationin the tissue section format, which is most relevant for pathology studies. Monocyte neutrophil elastase inhibitor (MNEI) is the main member of this pathway responsible for its activation. It acts by self-converting into an active nuclease and can rapidly dispose of tumor cells. The conditions promoting such a unique transition in brain tumors are not fully understood at this time. To a large extent this is because of the absence of specific tools for selective labeling of MNEI-driven apoptosis in tissue sections and in live cell cultures. In the absence of specific in situ methods for this apoptotic pathway, it is currently studied by using the bulk biochemical approaches which have limited value in heterogeneous pathology samples. In this project we will overcome this obstacle and will develop new enabling imaging technologies. We will apply the new probes to visualize MNEI-driven apoptosis in glioblastoma (GBM). Specific aims: 1. To develop the first methodology for selective detection of the elastase inhibitor- driven apoptotic pathway in tissue sections. The approach will label the key event of this pathway and visualize the characteristic DNA cleavage activity of monocyte neutrophil elastase inhibitor (MNEI) after its transformation into an active DNase. To test this newly developed imaging tool in glioblastoma sections. 2. To develop the new methodology for selective labeling of the elastase inhibitor-driven apoptotic pathway in live cell cultures. The new fluorescent sensors specific for MNEI pathway will produce fluorescence only after they detect a specific marker of this apoptotic route. The project will introduce enabling technologies for apoptosis research in general, and for cancer studies in particular. Their application to glioblastoma will provide information useful for future clinical and research investigations of these tumors, and for the development of effective therapeutic interventions.
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