health · food_and_nutrition · science_technology_and_other_research_and_development · HHS-FDA
Developing PBPK Model-Based Mechanistic IVIVCs for Long Acting Injectable Suspensions and Implants (U01) Clinical Trial Optional
Food and Drug Administration · FOR-FD-24-002
Award Range
$0 – $300K
Total Program Funding
$600K
Expected Awards
2
Deadline
TBD
GRANTQUICK SUMMARYPlain-English Overview
Developing PBPK Model-Based Mechanistic IVIVCs for Long Acting Injectable Suspensions and Implants (U01) Clinical Trial Optional. Food and Drug Administration. The objective of this research proposal is to develop physiologically based pharmacokinetic (PBPK) model-based mechanistic in vitro in vivo correlations (IVIVCs) for two major types of long acting injectables (LAIs) such as crystalline suspensions and polymer-based implants by considering their... up to $300,000 per award; $600,000 total program funding; ~2 awards expected.
Who Should Apply
Nonprofits (501c3), Independent school districts, County governments, Federally Recognized Native American Tribal Governments, Nonprofits (non-501c3) (+10 more)
Who Should NOT Apply
Organizations not matching the eligible applicant types listed above
Key Requirements (Plain English)
- •Independent School DistrictsPublic Housing Authorities/Indian Housing AuthoritiesNative American Tribal Organizations (other than Federally recogni...
💡 GrantQuick Tip
Clearly demonstrate alignment with funding priorities and provide measurable outcomes.
Competitiveness: Very high — extremely limited awards available
What This Grant Funds
The objective of this research proposal is to develop physiologically based pharmacokinetic (PBPK) model-based mechanistic in vitro in vivo correlations (IVIVCs) for two major types of long acting injectables (LAIs) such as crystalline suspensions and polymer-based implants by considering their distinct characteristics. The goal of the project is to develop a bottom-up mechanistic PBPK model for these two LAI categories by accounting for the influence of critical formulation attributes of each LAI drug product type to predict its in vivo release mechanism. The model formulation parameters and relevant physiology should be informed with suitable in vitro and in vivo experiments. A suitable preclinical animal model can be used to validate the PBPK model based IVIVCs for both LAI suspensions and polymer based implants.
The use of PBPK modelling provides a unique opportunity to understand how the physicochemical properties of drug molecules/polymer, implant specific properties, critical formulation attributes, and physiology, among other things, influence the in vivo release mechanisms of LAI drug products and their disposition characteristics. Moreover, once developed, a mechanistic PBPK model can help to define the 'safe space' for critical formulation attributes relevant to the reference listed drug (RLD) product, explain sources of PK variability and extrapolate predictions to human subjects by leveraging animal model data and by accounting for species-specific physiological differences.
Who Can Apply
Eligible Applicant Types
Funding Details
- Maximum Award
- $300K
- Total Program Funding
- $600K
- Expected Number of Awards
- 2
- Cost Sharing Required?
- No
- Funding Instrument
- cooperative_agreement
Key Dates
Agency Contact
Terrin Brown Grants Management Specialist 240-402-7610
Terrin.Brown@fda.hhs.govReady to apply?
View the full NOFO and submit your application on Grants.gov