BD2K product for enhancing phenotypic screens
BD2K product for enhancing phenotypic screens
批准号:
9912056
负责人:
Jennifer Fuller
金额:
$74.29万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-30 至 2021-08-31
关键词:
AddressAdverse eventAgonistAlgorithmsAntipsychotic AgentsAreaAtlasesAwardBig DataBig Data to KnowledgeBioinformaticsBiological AssayBiological ModelsBrainBuprenorphineBupropionBusinessesCell NucleusCellsClinicClinicalClozapineClozarilComputational BiologyComputer softwareDataData SetDevelopmentDiseaseDrug AddictionDrug AntagonismDrug IndustryDrug KineticsDrug ScreeningDrug effect disorderEpidemicFundingGene ExpressionGoalsInformaticsInvestmentsLeadLicensingMarket ResearchMental HealthMethadoneMethodsModelingMolecularMolecular ComputationsMolecular TargetNaltrexoneNational Institute of Drug AbuseNeurosciencesNucleus AccumbensPatternPerformancePharmaceutical PreparationsPharmacologic SubstancePharmacologyPhasePhenotypeProbabilityProcessProteomicsPsychiatryPublic HealthPublicationsReportingResearchSideSisterSpecificitySpinal GangliaStatistical ModelsStructureSubstance abuse problemTechnologyTestingTimeTissuesTranslatingTranslationsUnited States National Institutes of HealthUpdateaddictionbasebrain tissuecloud basedcommercializationcomputational chemistrycravingdata integrationdesigndigitaldrug candidatedrug developmentdrug discoverydrug of abusefallshuman tissueinsightinterestmolecular modelingmu opioid receptorsnovelnovel drug classnovel therapeuticsopioid use disorderprescription opioidpreventproduct developmentprogramsprotein expressionprototypereceptorresearch and developmentscreeningscreening programsmall moleculetooltrenduser-friendlyvalidation studies
中文摘要
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英文摘要
Project(Summary(
!
The public health problem addressed by the proposed project is the critical, long-term absence of progress in
anti-addiction medication discovery and development. GeneCentrix’ “historeceptomics” technology has the
potential to alter this trend by providing advanced insights during the process of anti-addiction medication
discovery and development. Digital/computational advanced insights are recognized as the critical value-
added emerging piece of technology in pharmaceutical R&D. The unique concept underlying our technology is
specificity of anti-addiction drug action in different brain tissues. No software product currently provides
this capability. The overall goal of this program is to commercialize a product that enhances anti-addiction
medication discovery by providing previously unavailable advanced structure-activity insights specifically
targeted to phenotypic screening assays. A Phase I award successfully established the technical merit,
feasibility and commercial potential of the envisioned product, as well as identifying the key remaining
concerns of customers who expressed intent to purchase the product capabilities. The overall objective of this
Phase II renewal is to produce a commercialization ready software product that eliminates the remaining
concerns of the customers for commercialization. Based on the prototype built in Phase I and the insights
gained from market analysis, the remaining obstacles to commercialization and sustainability of the product
have been identified. In this Phase II project, we will establish a partnership with a sister company in the space,
Molsoft LLC, whose products already addresses a key customer concern. The GeneCentrix technology to
enhance the translatability of phenotypic screens will be integrated as feature into Molsoft’s ICM product line
(Aim 1). In addition, customer requested and sponsor (NIDA/NCATS)-desired R&D will update the product core
to optimize it for anti-addiction drug discovery by incorporation of new and growing brain atlas, proteomic and
pharmacokinetic big data (Aim 2). For this FOA, this application falls within Area 4: Tools and Model Systems
for OUD Research and proposes a project including the development of drug discovery and development-
enabling technologies. Funding is sought for activities and steps in the product development process
encompassing the development and demonstration of the capability of bioinformatic methods or algorithms for
research data integration and data harmonization. Accordingly, as required by the FOA, a broad validation
study (Aim 3) will be performed of the technology that that will demonstrate and validate the commercial utility
and value proposition of the proposed technology. The commercial plan establishes a clear and feasible
approach to take advantage of a growing business opportunity that should lead to a sustainable product cycle
with minimal further Phase III investment. Overall, a needed commercial software product could emerge from
NIH product development support that could contribute to anti-addiction drug discovery.
!
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BD2K product for enhancing phenotypic screens
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批准号:10020785
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项目类别:
-
资助金额:$72.98万
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财政年份:2019
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负责人:Jennifer Fuller
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依托单位:
海外基金