Amplyx Pharmaceuticals, Inc. — Department of Health and Human Services SBIR Phase II: R

Amplyx Pharmaceuticals, Inc. — SBIR Phase II award from Department of Health and Human Services.

Amount
$1,495,390
Agency
Department of Health and Human Services · National Institutes of Health
Program / Phase
SBIR · Phase II
Topic
R
Solicitation
PA14-071
NAICS
Place of performance
CA
Period
2015-07-01 → 2017-06-30

Description

DESCRIPTION provided by applicant Invasive aspergillosis IA caused by the fungus Aspergillus fumigatus is associated with mortality rates of In response to the lack of effective treatments the Infectious Diseases Society of America highlighted A fumigatus as one of only six pathogens for which it mandated that a andquot substantive breakthrough is urgently neededandquot IA accounts for the largest financial burden of all invasive fungal infections with an annual economic cost in the United States of over $ billion Driven by the growing immunosuppressed patient population both the incidence and mortality due to A fumigatus have risen three fold in the last decade While much is known regarding the cellular processes required for fungal pathogenesis translating understanding into tangible clinical benefit has been difficult due to the fact that these fungal pathogens and their hosts have similar physiology As a result current antifungal agents have limited clinical efficacy are poorly fungicidal in the host are occasionally toxic and are increasingly ineffective due to emerging resistance Thus innovative antifungal targeting agents and strategies are critically needed It has been well established that molecules targeting fungal calcineurin FC have extremely potent antifungal activity against a broad range of fungi Our collaborator at Duke University Dr William Steinbach MD has established that calcineurin is required for A fumigatus hyphal growth and virulence Moreover calcineurin is required for fungal stress response and small molecule or genetic inhibition of calcineurin thwarts drug resistance The challenge of exploiting FC as an antifungal agent is due to structural and sequence homology with human calcineurin HC Knowledge of the HC pathway and the immunosuppressive capacity of calcineurin inhibition has been one of the greatest contributions to our current solid organ and bone marrow transplantation abilities However inhibition of HC causes severe immunosuppression and toxicity Recent chemical innovations have enabled Amplyx to rapidly create libraries of analogues of FK that were previously synthetically intractable to design and test specific FC inhibitors Moreover we have recently solved the X ray structure of A fumigatus calcineurin allowing unprecedented structural insight to help guide our development efforts Amplyx has established that inhibitors of FC are well tolerated in vivo at doses that provide a therapeutic benefit in an animal model of IA To further develop this project we propose the following Aims Aim Design and synthesize a first generation library of analogues of current hit compounds Aim Assess compounds for advancement employing in vitro studies Aim Characterize and select compounds for advancement employing in vivo studies PUBLIC HEALTH RELEVANCE Mortality rates due to infections caused by the pathogenic fungus Aspergillus fumigatus are and there is an urgent need for more effective therapeutics The estimated annual healthcare cost due to these infections is over $ billion in the United States Amplyx proposes to create a new class of antifungal drugs to improve treatment outcomes