De-risking ONL1204 to enable venture capital investment for first-in-human clinical trials
De-risking ONL1204 to enable venture capital investment for first-in-human clinical trials
批准号:
9253126
负责人:
Jana van de Goor
金额:
$49.98万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-06-01 至 2019-03-31
关键词:
AcuteAddressAffectAge related macular degenerationAnatomyAnimal ModelApplications GrantsAwardBackBiological PreservationBiological SciencesBiotechnologyBlindnessCD95 AntigensCapitalCell DeathCell SurvivalCell physiologyCellsCessation of lifeChronicChronic DiseaseClinicalClinical TrialsCommunitiesDataDevelopmentDevelopment PlansDiabetic RetinopathyDiseaseDoseDrug KineticsDrug PrescriptionsEnvironmentExudative age-related macular degenerationEyeFormulationFundingFutureGoalsGrantHealth Care CostsHomeostasisHumanInjuryInnovative TherapyInterventionInvestmentsLeadLightMediatingMedicalMetabolicMethodologyModelingNeuroprotective AgentsNonexudative age-related macular degenerationOperative Surgical ProceduresOphthalmologyOrphanOrphan DrugsOutcomePathway interactionsPatient-Focused OutcomesPatientsPeptidesPerioperativePharmaceutical PreparationsPhasePhotoreceptorsPhysiciansProductivityProgram DevelopmentRetinaRetinalRetinal DegenerationRetinal DetachmentRetinal DiseasesRiskRodentSafetySecureSeedsSmall Business Innovation Research GrantSocial ImpactsSocietiesStructure of retinal pigment epitheliumTherapeuticTissuesToxicologyTranslatingUnited StatesVisionVisualVisual AcuityWorkclinical developmentcommercial applicationcommercializationcosteconomic impactimprovedinhibitor/antagonistinterestintravitreal injectionmanufacturing scale-upneurotransmissionnovelpreventprogramsrelating to nervous systemrepairedsystemic toxicity
中文摘要
项目摘要/摘要
英文摘要
PROJECT SUMMARY / ABSTRACT
Retinal degenerative disease and injury are among the leading causes of irreversible vision loss and
blindness in the United States and the developed world, affecting hundreds of thousands of people every year
and resulting in billions of dollars in added healthcare costs and lost productivity. Photoreceptor cell death is a
consequence of many of these acute and chronic retinal diseases, leading to vision loss, and helping
photoreceptors survive during the period of disease would significantly improve the visual outcomes for
patients. A problem that limits the efficacy of current treatments is the lack of interventions that can specifically
prevent photoreceptor cell death; therefore, a safe and potent photoreceptor protectant would provide a
significant visual benefit to hundreds of thousands of people every year.
ONL1204 is a novel, small peptide inhibitor of Fas-mediated photoreceptors cell death in development
for peri-operative adjunctive use in patients with acute retinal detachment (an orphan indication for which
ONL1204 has received an orphan drug designation) with the goal of preventing photoreceptor cell death until
definitive surgical repair can occur. This acute indication provides a rapid development pathway that lays the
groundwork for future expansion of ONL1204 development for chronic indications, such as age-related
macular degeneration. The product for acute retinal detachment will be a prescription drug administered by
intravitreal injection.
Completion of the proposed studies in this grant will help ONL Therapeutics address final investor
questions and attract the significant financial investment required for IND submission and clinical development
of ONL1204. Specifically, in this grant, we will 1) determine the minimal dose of ONL1204 required for
photoreceptor protection and preservation of function in large eye animal models of retinal detachment, and 2)
demonstrate the GLP safety and tolerability of a single intravitreal injection of ONL1204 at clinically meaningful
doses.
The studies proposed in this application are necessary for development and commercialization of
ONL1204, will de-risk the program, and enable significant financial investment, allowing ONL Therapeutics to
evaluate clinical POC for ONL1204 in retinal detachment.
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