Development of Toll-Like Receptor Agonists as Neuroprotectants in Brain Ischemia
Development of Toll-Like Receptor Agonists as Neuroprotectants in Brain Ischemia
批准号:
8328649
负责人:
MARY P STENZEL-POORE
金额:
$156.96万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-04-20 至 2015-02-28
关键词:
AcuteAgonistAnti-Inflammatory AgentsAnti-inflammatoryBrainBrain IschemiaClinicalClinical InvestigatorClinical TrialsClinical Trials DesignContractsDataDevelopmentDoseDrug FormulationsDrug KineticsEvaluationExclusion CriteriaFailureFemaleFutureHumanImiquimodInflammatoryInjuryInstitutional Review BoardsIntellectual PropertyInternationalIschemiaIschemic Brain InjuryIschemic PreconditioningLeadLicensingModelingMonitorNeuroprotective AgentsOregonPamphletsPathway interactionsPatientsPharmaceutical PreparationsPhasePrimatesPrincipal InvestigatorProphylactic treatmentReceptor SignalingResearch InstituteResearch PersonnelRodentSafetyScientistSecureServicesSignal TransductionStrokeTLR7 geneTLR9 geneTestingTherapeuticTherapeutic IndexTimeToll-like receptorsToxic effectToxicologyWorkagedbasecell injurydrug candidatedrug testinghigh riskindustry partnerneuroprotectionnonhuman primatenovel strategiespre-clinicalpreclinical evaluationpreconditioningprogramsprophylacticresearch clinical testingresponse
中文摘要
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英文摘要
DESCRIPTION (provided by applicant):
Endogenous mechanisms of ischemic preconditioning-tolerance have reviled the brain's ability to reprogram (precondition) its response to acute ischemia from that of induced cell injury signaling cascades to induction of neuroprotective pathways (tolerance). Such endogenous neuroprotection occurs through Toll Like Receptor (TLR) signaling which reprograms an inflammatory (injurious) response to stroke into an anti- inflammatory (neuroprotective) response. We offer the preferred agonists (CpG ODNs and imiquimod - IMQ) of TLR 9 and 7 respectively as lead compounds for prophylactic neuroprotection against stroke. Although robust rodent data have been produced, past and recent translational failures require additional preclinical evaluation. Accordingly, we have developed a new primate stroke model for assessment of putative pharmacotherapeutics and propose to perform rigorous trials of our recently discovered neuroprotectants to establish essential efficacy and pharmacokinetic data. Thus our preliminary studies support new robust neuroprotective strategies for high-risk stroke patients to be further tested in the non-human primate via: Aim 1. Determine the optimal dose to achieve neuroprotective efficacy for TLR9 (K- and D-mix CpG ODNs) and TLR7 (IMQ) candidate drugs as prophylactic therapy in a NHP model of cortical stroke. Aim 2. Determine the time window of neuroprotective efficacy for K- and D-mix CpG ODNs and IMQ as prophylactic therapy in a NHP model of cortical stroke. Aim 3. Determine neuroprotective efficacy CpG ODN (K and D mix) and IMQ as prophylactic therapy in a model of cortical stroke in the aged NHP. Aim 4. Determine the neuroprotective efficacy of repeated administration of CpG ODN (K- and D-mix) and IMQ as prophylactic therapy in a NHP model of cortical stroke. Aim 5. Determine the neuroprotective efficacy of the optimal CpG ODN (K- and D-mix) and IMQ as prophylactic therapy in a model of cortical stroke in female NHPs. Aim 6. Determine pharmacokinetic and toxicity profiles of CpG ODN (K- and D-mix) and IMQ as potential stroke therapeutics. Aim 7. Submit an IND application for the optimal TLR candidate based on efficacy, pharmacokinetics and toxicity profiles.
RELEVANCE: Many drug treatments to protect the brain from stroke have been tried and failed. This proposal offers a new approach based on the brain's own endogenous neuroprotective program. We will investigate 3 new drugs that have been shown to be safe in humans and test them as prophylaxis against ischemic brain injury. We will first test these drugs in a relevant primate model of stroke before moving to a clinical trial to treat humans that are at very high risk for future stroke.
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