The overall goal of this project is to identify new compounds, as well as new pathways to discover new compounds for development of new treatments for the major AIDS- and cancer-related disseminated fungal infections. This is a competitive renewal of R01 AI27094 and expands our current work in the area of antifungal drug discovery, with an emphasis on the identification of mechanistically characterized and validated novel antifungal compounds. Our approach is to validate the unique lead compounds with antifungal and resistance-reversing properties that were identified in the previous project period, determine their mechanisms of action, and evaluate their in vivo efficacies against resistant strains.
The specific aims of this project are: 1. Validate new lead compounds (already in hand) that show reversal of fluconazole resistance by using efflux pump assays and genomic approaches; 2. Determine mechanisms of action of lead antifungal compounds using genomic profiling approaches, and validate the molecular targets identified using genetic and biochemical strategies; 3. Evaluate the in vivo efficacy of selected lead compounds in murine models of systemic mycoses, including activity against resistant strains; and, 4. Identify other new lead compounds that exhibit unique mechanistic profiles. Successful completion of the proposed work will yield new prototype lead compounds that will serve as templates for development of new classes of antifungal agents, as templates for the development of new drugs to be used in combination with existing antifungal agents to reverse resistance to these agents, and as probes to identify novel mechanisms of action that can be exploited in the future search for other new derivatives. This information will expand the foundation of knowledge regarding the therapeutic control of these infections and the understanding of the basic biology of these pathogens.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI027094-16
Application #
6858573
Study Section
AIDS Discovery and Development of Therapeutics Study Section (ADDT)
Program Officer
Lambros, Chris
Project Start
1989-07-01
Project End
2009-06-30
Budget Start
2005-07-01
Budget End
2006-06-30
Support Year
16
Fiscal Year
2005
Total Cost
$314,593
Indirect Cost
Name
University of Mississippi
Department
Pharmacology
Type
Schools of Pharmacy
DUNS #
067713560
City
University
State
MS
Country
United States
Zip Code
38677
Shenmar, Kitika; Sharma, Krishna K; Wangoo, Nishima et al. (2017) Synthesis, stability and mechanistic studies of potent anticryptococcal hexapeptides. Eur J Med Chem 132:192-203
Tripathi, Siddharth K; Xu, Tao; Feng, Qin et al. (2017) Two plant-derived aporphinoid alkaloids exert their antifungal activity by disrupting mitochondrial iron-sulfur cluster biosynthesis. J Biol Chem 292:16578-16593
Ferreira, Mariana C; Cantrell, Charles L; Duke, Stephen O et al. (2017) New Pesticidal Diterpenoids from Vellozia gigantea (Velloziaceae), an Endemic Neotropical Plant Living in the Endangered Brazilian Biome Rupestrian Grasslands. Molecules 22:
Crockett, Sara L; Kunert, Olaf; Pferschy-Wenzig, Eva-Maria et al. (2016) Phloroglucinol and Terpenoid Derivatives from Hypericum cistifolium and H. galioides (Hypericaceae). Front Plant Sci 7:961
Gonçalves, Vívian N; Cantrell, Charles L; Wedge, David E et al. (2016) Fungi associated with rocks of the Atacama Desert: taxonomy, distribution, diversity, ecology and bioprospection for bioactive compounds. Environ Microbiol 18:232-45
Ravu, Ranga Rao; Jacob, Melissa R; Jeffries, Cynthia et al. (2015) LC-MS- and (1)H NMR Spectroscopy-Guided Identification of Antifungal Diterpenoids from Sagittaria latifolia. J Nat Prod 78:2255-9
Kushwaha, Avadhesh; Jacob, Melissa; Shiva Kumar, H N et al. (2015) Trans-ungual delivery of itraconazole hydrochloride by iontophoresis. Drug Dev Ind Pharm 41:1089-94
Moawad, Abeer; Hetta, Mona; Zjawiony, Jordan K et al. (2014) Two new dihydroamentoflavone glycosides from Cycas revoluta. Nat Prod Res 28:41-7
Ahmed, Marwa H; Ibrahim, Mohamed Ali; Zhang, Jin et al. (2014) Methicillin-resistant Staphylococcus aureus, vancomycin-resistant Enterococcus faecalis and Enterococcus faecium active dimeric isobutyrylphloroglucinol from Ivesia gordonii. Nat Prod Commun 9:221-4
Falodun, Abiodun; Imieje, Vincent; Erharuyi, Osayewenre et al. (2014) Evaluation of three medicinal plant extracts against Plasmodium falciparum and selected microganisms. Afr J Tradit Complement Altern Med 11:142-6

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