From Academia to Business: Development of Novel Therapeutics Against HPV-Associated Cancer
From Academia to Business: Development of Novel Therapeutics Against HPV-Associated Cancer
批准号:
10377785
负责人:
Anne Rietz
金额:
$42.1万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
已结题
起止时间:
2022-03-01 至 2023-04-30
关键词:
AcademiaAffinityAlgorithmsAntiviral AgentsBindingBiochemicalBiological AssayBiotechnologyBusinessesCancer cell lineCanis familiarisCell Culture TechniquesCell ProliferationCell SurvivalCellsCervicalChemistryClinicalClinical TrialsComplexCoupledCrystallizationCysteineCytochrome P450DataDevelopmentDoseDrug DesignDrug IndustryDrug KineticsEpithelialEvaluationExhibitsFluorescence PolarizationFundingGrowthHPV-High RiskHumanHuman Papilloma Virus VaccineHuman Papilloma Virus-Related Malignant NeoplasmHuman PapillomavirusHuman papilloma virus infectionHuman papillomavirus 16Immunocompromised HostImmunodeficient MouseIn VitroInfectionInterferometryInvestigationLeadLicensingLiver MicrosomesMalignant - descriptorMalignant NeoplasmsMalignant Vaginal NeoplasmMalignant neoplasm of anusMalignant neoplasm of cervix uteriMalignant neoplasm of penisMalignant neoplasm of vulvaMass Spectrum AnalysisMaximum Tolerated DoseMediatingMedicalMentorsMetabolismMolecularMusNeoplastic Cell TransformationOralOropharyngealOutcomePathologyPharmaceutical ChemistryPharmaceutical PreparationsPharmacology and ToxicologyPharmacotherapyPhasePlasmaPositioning AttributePreventionPropertyProteinsRattusRoentgen RaysRouteSafetySchoolsSeriesSmall Business Innovation Research GrantSmall Business Technology Transfer ResearchStructureSurfaceTP53 geneTestingTherapeuticToxic effectToxicologyTumor Cell LineTumor Suppressor ProteinsUBE3A geneUbiquitinationValidationViral GenomeViral ProteinsVirus DiseasesVirus ReplicationWomanXenograft Modeladductbasecancer cellcareercell growthcellular targetingchronic infectioncovalent bonddesigndosagedrug candidatedrug developmentexperienceexperimental studyhigh riskin silicoin vitro activityin vivoinhibitorinterdisciplinary approachintravenous administrationiterative designlead candidatelead optimizationmalignant oropharynx neoplasmmulticatalytic endopeptidase complexnovel therapeuticspharmacokinetic modelphase 1 studypremalignantpreventscaffoldscreeningsmall moleculesmall molecule librariessubcutaneoustime usetumortumor growthtumor xenograftubiquitin ligase
中文摘要
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英文摘要
ABSTRACT
“High-risk” human papillomavirus (HPV) types such as 16 (HPV-16) are identified in the majority of HPV-
associated pre-malignant and malignant pathologies of cervical, anogenital, and oropharyngeal epithelia. The
E6 protein is essential for viral replication. Structure-based computational screening followed by design and
synthesis of derivatives led to the identification of a series of small molecules that bind to the HPV-16 E6
protein and inhibits its association with the E6AP ubiquitin ligase in vitro as well as E6-mediated p53
degradation in cells. Using iterative cycles of structure based drug design and rigorous biochemical assays,
Kovina Therapeutics’ academic collaborators have identified more potent E6 inhibitory compounds. Kovina
has an exclusive worldwide license to these discoveries. The objective of this STTR application is to
characterize the pharmacokinetic properties of these unique E6 inhibitors and identify the best candidates for
advancement as therapeutics. Specific inhibition of growth of HPV-16 xenograft tumors will serve as proof of
concept validation for our lead candidates. We are ideally positioned to perform and complete requisite
pharmacokinetic, pharmacologic and toxicologic studies in the SBIR phase, leading to IND-enabling selection
of a clinical lead. Having developed and executed the experiments described in this project, the PI, Dr. Anne
Rietz, is superbly suited to continue these investigations. She will be mentored by senior leaders from
academia and the drug industry. Kovina’s CEO and Board Chair, who have successfully grown and managed
two biotech companies that were acquired, will also mentor Dr. Rietz. Along with other mentoring venues and
business school courses, Dr. Rietz will transition to a career in corporate drug development.
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From Academia to Business: Development of Novel Therapeutics Against HPV-Associated Cancer
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批准号:10813323
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项目类别:
-
资助金额:$90.97万
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财政年份:2023
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负责人:Anne Rietz
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依托单位:
海外基金