grant

Photoreceptor induction in wounded corneas

Organization UNIVERSITY OF WASHINGTONLocation SEATTLE, UNITED STATESPosted 1 Sept 2024Deadline 31 May 2029
NIHUS FederalResearch GrantFY2025AccelerationAcuteAffectAgonistBlindnessBody TissuesCRE RecombinaseCell BodyCell Communication and SignalingCell Culture TechniquesCell Growth in NumberCell LineCell MultiplicationCell ProliferationCell SignalingCellLineCellsCellular ProliferationCicatrixCollaborationsCommunicationCorneaCorneal InjuryDREADDsDarknessEnterobacteria phage P1 Cre recombinaseEnvironmentEpithelial CellsExposure toEyeEyeballFutureGene ExpressionGenesGeneticGoalsHealthHistoryHumanIlluminationImmediate-Early GenesImpairmentIn VitroInjuryIntracellular Communication and SignalingIntracellular Second MessengerKO miceKnock-out MiceKnockout MiceLaboratoriesLightLightingLoxP-flanked alleleMacacaMacaqueMeasuresMediatingMiceMice MammalsModern ManMolecularMonitorMotilityMurineMusNatureNull MouseOpsinOpticsPansyParacrine CommunicationParacrine SignalingPhosphorylationPhotoradiationPhotoreceptor CellPhotoreceptorsPhotosensitive CellPhotosensitiveness due to sunPhotosensitivityPhysiologicPhysiologicalPlayPrimatesPrimates MammalsProtein PhosphorylationProteinsRecording of previous eventsRegimenRegulationReporterRestRetinaRod-OpsinRoleScarsSecond Messenger SystemsSecond MessengersSightSignal TransductionSignal Transduction SystemsSignalingStrains Cell LinesSurfaceSystemTechniquesTestingTherapeuticTissuesUpregulationViolaVioletVisionVisualVisual ReceptorVisual SystemVisualizationWorkWound Repairantagonismantagonistbacteriophage P1 recombinase Crebiological signal transductioncell culturecell culturescircadian clockcircadian pacemakercornealcorneal epithelialcorneal epithelial wound healingcorneal epitheliumcorneal healingcorneal regenerationcorneal woundcorneal wound healingcultured cell linedesigner receptors exclusively activated by designer drugsexperimentexperimental researchexperimental studyexperimentsexposure to lightexposure to visible lightfloxedfloxed allelehealinghistoriesin vivoinjuriesinnovateinnovationinnovativelight exposurelight pollution exposuremigrationmouse modelmurine modelnon-human primatenonhuman primatenovelopticalparacrinere-epithelializationresponsesignal transduction second messengerssocial rolesun sensitivitytherapeutic targettissue woundtranslational opportunitiestranslational potentialvision lossvisual functionvisual losswoundwound closurewound healingwound recoverywound resolutionwoundingwounds
Sign up free to applyApply link · pipeline · email alerts
— or —

Get email alerts for similar roles

Weekly digest · no password needed · unsubscribe any time

Description preview

Project Summary/Abstract
The cornea is the optically clear, curved tissue that provides the majority of refractive power in

the eye. Improper healing of corneal wounds is a serious issue that can lead to blindness or

permanent refractive visual complications. We have demonstrated that the cornea becomes

intrinsically photoreceptive after injury,…

🔒

Full details available on the Agency plan

Unlock the complete grant description, eligibility criteria, contract value, evaluation details and apply link — plus alerts, pipeline tracking, and CSV export.

Start 7-day free trial — $29.99/mo →

Agency Plan

7-day free trial

Unlock procurement & grants

Upgrade to access active tenders from World Bank, UNDP, ADB and more — with email alerts and pipeline tracking.

$29.99 / month

  • 🔔Email alerts for new matching tenders
  • 🗂️Track tenders in your pipeline
  • 💰Filter by contract value
  • 📥Export results to CSV
  • 📌Save searches with one click
Start 7-day free trial →
Photoreceptor induction in wounded corneas — UNIVERSITY OF WASHINGTON | UNITED STATES | Sept 2024 | Dev Procure