Platform for the High Throughput Generation and Validation of Affinity Reagents
Platform for the High Throughput Generation and Validation of Affinity Reagents
批准号:
10598276
负责人:
Michael P Weiner
金额:
$108.02万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-02-01 至 2025-01-31
关键词:
AdvocateAffinityAntibodiesAreaBackBacteriophagesBindingBiological MarkersBiophysicsBiotechnologyCapitalCapital FinancingCatalogsCellsConsumptionCost SavingsDataDevelopmentDirected Molecular EvolutionEmploymentEngineeringEnzyme-Linked Immunosorbent AssayEpitopesEscherichia coliFailureFlow CytometryFutureGenerationsGenesGenetic RecombinationImmunization ScheduleImmunoglobulin GIntegraseKineticsLibrariesMeasurementMeasuresMethodsMolecular BiologyMonoclonal AntibodiesPainPeptide Sequence DeterminationPhage DisplayPhasePlasmidsPrincipal InvestigatorProductionProtein EngineeringProteinsPublicationsPublishingQualifyingReagentRecombinantsResourcesRiskRoboticsSiteSpecificitySurfaceSystemSystems IntegrationT-Cell ReceptorTechnologyTestingTimeValidationWorkYeastsbiophysical analysisbiophysical propertiescommercializationcostexpectationexperiencefallsimprovedinnovationinstrumentationpressurepromoterprotein expressionscale upscreeningsingle moleculetechnology validationtimelinetoolvector
中文摘要
摘要
英文摘要
ABSTRACT
We present a complete platform for the rapid generation and validation of recombinant mAbs. The
innovations of this proposal include: (1) the pATHENA vector system for overnight conversion of phage
display scFv or Fab clones into IgG molecules, (2) the Epivolve method for the isolation of site-specific
Abs, (3) the incorporation of yeast display into pATHENA to allow biophysical measurement of binding
affinities without the need for protein isolation, and (4) our MILKSHAKE technology for the validation of Abs
for IHC, Western, and ELISA applications. This proposal is a culmination of- and largely a focused
integration of several independent technologies that have been developed (and de-risked) by the principal
investigator (PI). We now want to incorporate these technologies and add them into a single Abbratech
platform. In essence, the proposal is a very robust set of molecular biology modules for: (i) library
construction, (ii) library screening using both phage- and yeast display, (iii) biophysical and kinetic analysis,
(iv) directed evolution, (v) affinity maturation (“AffMat”), (vi) protein engineering, (vii) production of site-
directed Abs, (viii) protein expression integrated into a single platform, and (viii) Ab validation for flow
cytometry, ICC, ELISA and Western applications. All parts of the proposed workflow have either can be-
or have already been automated for high-throughput (HT) production with off-the-shelf robotic solutions.
The proposed platform represents an innovative way to deliver recombinant mAbs, at ideally a retail total
cost of less than several thousand dollars (costs are discussed in the Commercialization plan). This
accuracy, specificity, projected timeline, and cost cannot be currently achieved by any other commercially
available mAb discovery platform. This proposal meets a need that has not been markedly improved upon
since the advent of monoclonal Abs forty years ago and phage display, around the same time. And it can
finally place phage display as a primary engine of diversity, replacing the inefficient and time-consuming
immunization schedules that even phage display advocates fall back on. The significance is high, the team
is well-qualified, the innovation, tactical and strategic, is imaginative, and even though the scope of this
Phase II is daunting, the team is well-equipped to do it.
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会议论文
T-cell receptor mimic affinity reagent generation using an in vivo novel immunogen strategy
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批准号:10599584
-
项目类别:
-
资助金额:$29.55万
-
财政年份:2023
-
负责人:Michael P Weiner
-
依托单位:
Method for the validation by Western analysis of affinity reagents against post-translationally modified proteins.
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批准号:10819809
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项目类别:
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资助金额:$112.2万
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财政年份:2022
-
负责人:Michael P Weiner
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依托单位:
Method for the isolation of antibodies with functional activity against cell surface targets
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批准号:10478450
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项目类别:
-
资助金额:$25.34万
-
财政年份:2022
-
负责人:Michael P Weiner
-
依托单位:
海外基金