Advancement of Novel Small Molecules for Treatment of Rabies

Information

  • Research Project
  • 8366564
  • ApplicationId
    8366564
  • Core Project Number
    R21AI101276
  • Full Project Number
    1R21AI101276-01
  • Serial Number
    101276
  • FOA Number
    RFA-AI-11-027
  • Sub Project Id
  • Project Start Date
    6/8/2012 - 12 years ago
  • Project End Date
    5/31/2014 - 10 years ago
  • Program Officer Name
    TSENG, CHRISTOPHER K.
  • Budget Start Date
    6/8/2012 - 12 years ago
  • Budget End Date
    5/31/2013 - 11 years ago
  • Fiscal Year
    2012
  • Support Year
    01
  • Suffix
  • Award Notice Date
    6/7/2012 - 12 years ago
Organizations

Advancement of Novel Small Molecules for Treatment of Rabies

DESCRIPTION (provided by applicant): We have taken a novel approach to antiviral drug discovery, using cell-free protein synthesis to recreate the host-catalyzed capsid assembly pathways for 20 of the 23 families of viruses causing human disease. Ten of these have been adapted to moderate throughput whole pathway screens by which small molecules that interfere with protein-protein interactions in this pathway can be identified. Using this approach a plethora of distinct pharmacophores with potent activity against infectious virus in cell culture has been identified, for every viral family studied. Advanced analogs reveal substantial improvement in potency with concomitant diminution in toxicity, suggesting distinct structure-activity relationships (SAR) for efficacy and toxicity. The advanced analogs have also been used as ligands for affinity chromatography to identify the host targets. These host targets have been shown to comprise assembly machines that show a remarkable degree of viral specificity: they appear to be modified by the nature of the substrate being assembled, hence accounting for our ability to target their use by the virus, without significant toxicity to the host. This has resultd in identification of numerous lead series' with selectivity indices (CC50/EC50, SI) > 100. The advanced compounds display some unusual properties consistent with their activity against host targets: in general, they are effective against all members of a viral family, with no evidence of viral resistance development. Here we propose to advance a small molecule lead series identified in a cell-free whole pathway screen for rabies virus (RABV) capsid assembly that has potent activity against infectious RABV in cell culture. SAR will be used in the R21 phase of the project to achieve modest advances in potency and diminution of toxicity necessary to improve the SI from 50-100 to >100. We will also optimize pharmacokinetic and pharmacodynamic (PK/PD) properties sufficient to justify advancement under the R33 component to proof of concept animal efficacy testing in a pre-exposure model using mice. Upon success, further R33 studies will advance the most efficacious compounds to post-exposure prophylaxis in the hamster model of RABV infection, with additional lead optimization, as needed. The proposed work will advance RABV small molecule therapeutics by achieving animal efficacy in two vertebrate species, with adequate exposure to support once or twice daily dosing, thereby setting the stage for future IND-enabling studies. PUBLIC HEALTH RELEVANCE: Rabies is a disease that, once contracted, is almost universally fatal. Over 30,000 people die yearly worldwide and many more are at risk. There are significant limitations of the available vaccines that a small molecule, effective against the viru even after onset of clinical symptoms, would ameliorate. We have identified a small molecule with good activity against rabies virus in cell culture that we propose to advance to protect animals, a key step before taking the advanced drug to the FDA.

IC Name
NATIONAL INSTITUTE OF ALLERGY AND INFECTIOUS DISEASES
  • Activity
    R21
  • Administering IC
    AI
  • Application Type
    1
  • Direct Cost Amount
    197398
  • Indirect Cost Amount
    133350
  • Total Cost
    330748
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    855
  • Ed Inst. Type
  • Funding ICs
    NIAID:330748\
  • Funding Mechanism
    Non-SBIR/STTR RPGs
  • Study Section
    ZAI1
  • Study Section Name
    Special Emphasis Panel
  • Organization Name
    PROSETTA CORPORATION
  • Organization Department
  • Organization DUNS
    142334114
  • Organization City
    SAN FRANCISCO
  • Organization State
    CA
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    941071517
  • Organization District
    UNITED STATES