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15,273 grants matching “antimicrobial resistance”
Collaborative Research: Novel Hybrid Metal-Piezoelectric Biomaterials for Anti-infectious Implantable Medical Devices
$200,000Albert Kim · University Of South Florida · · FY2023 · MPS
Georgia Department of Agriculture - NARMS
$200,000Carrie Crabtree · Georgia State Department Of Agriculture · U01 · FY2025 · FD
Comprehensive Sickle Cell Center
$200,000St. Jude Children'S Research Hospital · U54 · FY2005 · HL
Detection and surveillance of antimicrobial resistance among enteric bacteria from raw retail meat and seafood in Iowa: A NARMS Retail Food Surveillance Project
$200,000Orhan Sahin · Iowa State University · U01 · FY2025 · FD
Automated Data Collection on Antimicrobial Use in Dogs and Cats in a Tertiary Hospital and Private Practices
$200,000Cristina Lanzas · North Carolina State University Raleigh · U01 · FY2024 · FD
NARMS in Maryland: surveilling levels and investigating drivers of antimicrobial resistance in retail foods
$200,000Sinisa Urban · Maryland State Department Of Health · U01 · FY2025 · FD
A pharmacokinetic and safety study of IV gallium nitrate (Ganite) in cystic fibro
$200,000Christopher Hooper Goss · University Of Washington · R01 · FY2010 · FD
BOVINE RESPIRATORY DISEASE (BRD) IS THE LEADING CAUSE OF DISEASE IN BEEF CATTLE ACROSS NORTH AMERICA AND THEREFORE, BRD IS ONE OF THE MAIN ECONOMIC AND WELFARE CONCERNS IN BEEF CATTLE PRODUCTION. BRD IS ALSO THE LEADING CAUSE OF ANTIMICROBIAL USE IN BEEF CATTLE; THUS, DISCOVERIES THAT DECREASE BRD WILL ALSO DECREASE ANTIMICROBIAL USE AND DECREASE ANTIMICROBIAL RESISTANCE. THE DIAGNOSIS AND TREATMENT OF BRD IS OFTEN MADE FROM CLINICAL SIGNS, BUT THIS MISSES ANIMALS WITH SUBCLINICAL DISEASE. THIS FREQUENTLY LEADS TO MISDIAGNOSING ANIMALS THAT HAVE SUBCLINICAL BRD AS HEALTHY. IF VETERINARIANS AND CATTLE PRODUCERS COULD ACCURATELY PREDICT WHICH CATTLE ARE LIKELY TO DEVELOP OR RESIST BRD BEFORE IT OCCURS, THEY COULD FOCUS ATTENTION ON THE CATTLE LIKELY TO DEVELOP DISEASE, WHICH SHOULD IMPROVE ACCURACY AND EFFICIENCY OF DETECTION AND TREATMENT. OUR HYPOTHESIS IS THAT BEEF CATTLE THAT REMAIN HEALTHY CAN BE IDENTIFIED, AT FEEDING FACILITY ARRIVAL, TO HAVE INCREASED LEVELS OF ACTIVITY OF SPECIFIC GENES INVOLVED IN PROCESSES FOR BRD RESISTANCE. WE WILL FOCUS ON TWO MAIN OBJECTIVES WITH THIS PROJECT. FIRST, USING BLOOD TESTING, WE WILL COMPARE THE ACTIVITY OF GENES IN CATTLE THAT NEVER DEVELOP BRD VERSUS THOSE THAT DEVELOP BRD WITHIN 28 DAYS OF THEIR ARRIVAL. SECOND, WE WILL DEVELOP A MORE RAPID AND SIMPLE TEST TO IDENTIFY THE GENES THAT WE LEARNED ARE DIFFERENT IN CATTLE THAT DEVELOP BRD VERSUS CATTLE THAT REMAIN HEALTHY. WE ARE EXPECTING TO FIND GENES AT ARRIVAL THAT ACCURATELY PREDICT WHETHER CATTLE DEVELOP BRD OR REMAIN HEALTHY OVER TIME. THIS WORK WILL LEAD TO A BETTER UNDERSTANDING OF WHY CATTLE DEVELOP OR RESIST BRD, AND WILL CREATE TOOLS THAT WILL HELP SCIENTISTS, VETERINARIANS, AND CATTLE PRODUCERS DETERMINE CATTLE THAT ARE LIKELY TO STAY HEALTHY OR DEVELOP BRD, SUPPORTING THE DEVELOPMENT OF BETTER PROTOCOLS TO IDENTIFY, TREAT, AND PREVENT BRD IN CATTLE.
$200,000Mississippi State University · · FY2020 · National Institute of Food and Agriculture
ERI: Engineering a biofilm infection-on-a-chip to elucidate the host-biofilm interface
$200,000Elizabeth J Stewart · Worcester Polytechnic Institute · · FY2023 · ENG
A 3D Printed Resorbable Antimicrobial Envelope to Prevent Infection of Implanted Cardiac Devices
$200,000Glenn Brunner · N8 Medical, Inc. · R41 · FY2018 · HL
Bridging Critical Data Gaps in Veterinary Medicine Via Artificial Intelligence and Advanced Large Language Models to Procure Real-Time Antibiotic Use Data in Livestock, Poultry and Companion Animals
$200,000Majid Jaberi-Douraki · Kansas State University · U01 · FY2024 · FD
Antibiotic Resistance Surveillance in Retail Food Specimens in Texas and Oklahoma
$200,000Alejandro Echeverry · Texas Tech University · U01 · FY2024 · FD
A CRISPRi screen of essential genes of Neisseria gonorrhoeae
$200,000H. Steven Seifert · Northwestern University At Chicago · R21 · FY2024 · AI
Immunopathogenesis of Toxoplasmic encephalitis
$200,000Christopher A Hunter · University Of Pennsylvania · R01 · FY2015 · AI
Collaborative Research: Linking Pharmacokinetics to Epidemiological Models of Vector-Borne Diseases and Drug Resistance Prevention
$199,999Katharine F Gurski · Howard University · · FY2018 · MPS
Automated Data Collection on Antimicrobial Use in Dogs and Cats in a Tertiary Hospital and Private Practices
$199,999Cristina Lanzas · North Carolina State University Raleigh · U01 · FY2020 · FD
Advancing Antimicrobial Use Measurement in U.S. Companion Animal Practice
$199,999Jennifer Lea Granick · University Of Minnesota · U01 · FY2025 · FD
Representative, scalable, and sustainable surveillance methodologies to track companion animal antimicrobial use
$199,998Jennifer Lea Granick · University Of Minnesota · U01 · FY2023 · FD
Representative, scalable, and sustainable surveillance methodologies to track companion animal antimicrobial use
$199,996Jennifer Lea Granick · University Of Minnesota · U01 · FY2020 · FD
Strengthening Antimicrobial Resistance Surveillance in Retail Food Commodities in Kentucky as a Part of the National Antimicrobial Resistance Monitoring System (NARMS)
$199,996Yosra A. Helmy · University Of Kentucky · U01 · FY2025 · FD
ANTIMICROBIAL FEEDS ARE ESSENTIAL FOR CONTROL OF FISH DISEASES AND FOR SUSTAINING PROFITABILITY IN THE AQUACULTURE SECTOR. UNFORTUNATELY, MULTIDRUG-RESISTANT (MDR) PLASMIDS HAVE BEEN REPORTED AMONG BACTERIAL STRAINS IN CATFISH FARMS IN THE UNITED STATES. THE POTENTIAL SPREAD OF THESE PLASMIDS COULD ADD CONSIDERABLE AND AVOIDABLE COSTS TO THE CATFISH INDUSTRY BY INCREASING THE FREQUENCY OF TREATMENT FAILURES. HOWEVER, FACTORS THAT FOSTER THE TRANSFER AND PERSISTENCE OF THESE PLASMIDS IN THE AQUATIC ENVIRONMENT REMAIN UNCLEAR AND UNINVESTIGATED. THE OBJECTIVE OF THE CURRENT PROPOSAL IS TO UNDERSTAND THE FATE, MOBILITY, AND DISSEMINATION OF THESE PLASMIDS IN THE AQUATIC ENVIRONMENT. CURTAILING THE SPREAD OF MDR-PLASMIDS REQUIRES A COMPREHENSIVE UNDERSTANDING OF WHEN, WHERE, AND HOW RESISTANCE WAS ACQUIRED, AND HOW PLASMIDS MOVE AMONG AND WITHIN ENVIRONMENTS. THE TWO SPECIFIC AIMS OF THIS PROPOSAL ARE TO: 1) EXAMINE THE TRANSMISSION DYNAMICS AND FATE OF MDR-PLASMIDS IN CATFISH MICROBIOTA.; 2) DETERMINE THE IMPACT OF ANTIMICROBIAL USE ON TRANSFER OF MDR-PLASMIDS.DATA GENERATED FROM THIS STUDY WILL PROVIDE A COMPREHENSIVE UNDERSTANDING OF THE FATE AND PREVALENCE OF MDR-PLASMIDS IN THE AQUACULTURE ENVIRONMENT, AND EFFECTS OF ANTIMICROBIAL USE ON THE PERSISTENCE OF THESE PLASMIDS IN CATFISH GUT MICROBIOME. THE PROPOSED QPCR ASSAY WOULD PROVIDE ADDITIONAL DIAGNOSTIC AND MANAGEMENT TOOLS FOR CATFISH PRODUCERS TO DETECT AND QUANTIFY THESE MDR-PLASMIDS IN THE AQUATIC ENVIRONMENT. A BETTER UNDERSTANDING OF THE TRANSMISSION OF MDR-PLASMIDS IS ESSENTIAL TO DEVELOP MANAGEMENT OPTIONS FOR REDUCING THE SPREAD OF AMR DETERMINANTS IN AQUACULTURE PONDS.
$199,994Mississippi State University · · FY2021 · National Institute of Food and Agriculture
Representative, scalable, and sustainable surveillance methodologies to track companion animal antimicrobial use
$199,993Jennifer Lea Granick · University Of Minnesota · U01 · FY2021 · FD
Representative, scalable, and sustainable surveillance methodologies to track companion animal antimicrobial use
$199,993Jennifer Lea Granick · University Of Minnesota · U01 · FY2024 · FD
Representative, scalable, and sustainable surveillance methodologies to track companion animal antimicrobial use
$199,992Jennifer Lea Granick · University Of Minnesota · U01 · FY2022 · FD
Continue the NARMS retail food surveillance in the state of California
$199,973Xunde Li · University Of California At Davis · U01 · FY2025 · FD