Targeting apoptosis via chemical design of Bcl-2 antagonists
Targeting apoptosis via chemical design of Bcl-2 antagonists
批准号:
8212494
负责人:
Maurizio Pellecchia
金额:
$38.44万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-04-01 至 2015-01-31
关键词:
AffectAnisotropyAntineoplastic AgentsAntisense OligonucleotidesApoptosisApoptosis RegulatorApoptoticAttentionAugmerosenB-Cell LymphomasBH3 DomainBehaviorBenzamidesBenzoic AcidsBindingBiological AssayBiological FactorsBloodCH3OCF2CH(CF3)OCH2FCalorimetryCancer cell lineCell Culture TechniquesCell DeathCell Death InhibitionCellsChemical StructureChemicalsChronic Lymphocytic LeukemiaClinicalClinical TreatmentClinical TrialsCollaborationsCombined Modality TherapyCoupledCytotoxic agentDataDefectDevelopmentDimerizationDockingDoseDrug Delivery SystemsDrug FormulationsEnsureEquilibriumEvaluationFamilyFamily memberFluorescence PolarizationGenesGoalsGossypolHomeostasisHumanIn VitroInvestigationKetonesLaboratoriesLeadLymphomaMCL1 proteinMaintenanceMalignant NeoplasmsMalignant neoplasm of lungMeasurementMediatingMethodsMichiganMonitorMultiple MyelomaMusNMR SpectroscopyNatureNon-Small-Cell Lung CarcinomaNormal tissue morphologyNuclear Magnetic ResonanceOblimersenOutcomePatientsPharmaceutical ChemistryPharmaceutical PreparationsPharmacologic SubstancePharmacologyPhase I Clinical TrialsPhase II Clinical TrialsPhase III Clinical TrialsPlayProductionPropertyProtein BindingProtein FamilyProteinsRadiationRadiation therapyRegulationReportingResearchResearch DesignResearch MethodologyResearch PersonnelResistanceRoleRouteSchemeSignal PathwaySignal TransductionSolidStructureSurfaceTechniquesTestingTherapeuticTimeTitrationsToxic effectTumorigenicityUniversitiesUp-RegulationValidationWorkXenograft ModelXenograft procedureantitumor agentapogossypolbasecancer cellcancer therapychemotherapycomparative efficacycytotoxicitydesigndosagedrug candidatedrug developmentdrug discoveryexperienceimprovedin vitro Assayin vivoinhibitor/antagonistinnovationinterdisciplinary approachinterestleukemialeukemia/lymphomamelanomamembermouse modelnovelpharmacokinetic characteristicpreclinical studypro-apoptotic proteinprogramspublic health relevanceresearch clinical testingresponsesmall moleculetreatment strategytumortumor xenografttumorigenesis
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Most lung cancer cells are characterized by elevated levels of anti-apoptotic Bcl-2 family proteins and the resulting inhibition of cell-death influences tumorigenicity, metastatic behavior, chemoresistance and radioresistance. In non-small-cell lung cancer (NSCLC) upregulation of anti-apoptotic Bcl-2 proteins, such as Bcl-xL, Bcl-2 and Mcl-1, is often associated with resistance to traditional chemotherapy and radiation, which are therapeutic strategies that rely on the ability to induce apoptosis. Thus, novel optimized strategies for treatment of cancer might combine traditional chemotherapeutics with molecules that neutralize the effects of the anti-apoptotic Bcl-2 proteins. Already, Bcl-2- targeting antisense oligonucleotides (GenasenseTM) are in Phase III clinical trials for melanoma and chronic lymphocytic leukemia (CLL), a quintessential example of a human malignancy caused by defective programmed cell death and Bcl-xL/2 over- expression. Similarly, a dual Bcl-xL/Bcl-2 small molecule inhibitor (ABT-263, Abbott) is advancing clinical evaluation for patients affected by CLL. However, several studies suggest that in non-small cell lung cancers (NSCLC), in addition to Bcl-2 and Bcl-xL, Mcl-1 over-expression dictates resistance to chemotherapy and radiation. Hence, we propose to use a highly integrated multidisciplinary approach involving innovative structure-based design, medicinal chemistry, cell-based and in vivo studies to derive novel, potent and drug-like pan-Bcl-2 antagonists that primarily target Mcl-1, Bcl2 and Bcl-xL, focusing on their development against NSCLC. Given the arsenal of techniques and alternative approaches proposed, we anticipate that we will be able to identify novel pan-Bcl-2 antagonists that induce apoptosis in lung cancer cells that are resistant to current advanced compounds such as ABT-263 or Genasense.
PUBLIC HEALTH RELEVANCE: Alterations in the expression of the apoptosis-regulating Bcl-2 genes, including the protein Mcl-1, can contribute to the origins of non-small cell lung cancers (NSCLC), as well as adversely influence tumor responses to chemo- and radiotherapy. Therefore, agents that directly target Mcl-1 can induce apoptosis and sensitize cells to apoptosis induced by cytotoxic agents in lung cancer. The development of small molecule Mcl-1 inhibitors represent a promising route for the development of more effective combination therapies for the treatment of NSCLC.
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海外基金