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24,576 grants matching microbiome

Pore Formation by Cholesterol Dependent Cytolysins

$475,153
Rodney K. Tweten · University Of Oklahoma Hlth Sciences Ctr · R37 · FY2025 · AI

Redox Regulation of Gingival Inflammation

$475,027
Juhi Bagaitkar · University Of Louisville · R01 · FY2021 · DE

RECENT REGULATORY CHANGES AND SHIFTS IN CONSUMER PREFERENCE HAVE LED TO AN INCREASE IN ANTIBIOTIC-FREE AGRICULTURAL PRODUCTION, INCLUDING THAT OF MEAT-TYPE (BROILER) CHICKENS. THE ABSENCE OF ANTIBIOTICS CAN NEGATIVELY IMPACT BIRD GROWTH PERFORMANCE, ULTIMATELY LEADING TO REDUCED PROFIT MARGINS FOR POULTRY PRODUCERS AND INCREASED COST OF POULTRY PRODUCTS FOR CONSUMERS. ALTERNATIVE STRATEGIES TO THE USE OF ANTIBIOTICS THAT MAINTAIN BIRD GROWTH PERFORMANCE MUST BE DEVELOPED. FOR THIS TO OCCUR, IT IS NECESSARY TO IDENTIFY BIOLOGICAL MECHANISMS THAT CONTROL METABOLIC EFFICIENCY AND DETERMINE HOW THESE MECHANISMS ARE INFLUENCED BY ANTIBIOTICS AND SUBOPTIMAL CONDITIONS THAT CAN OCCUR IN PRODUCTION SYSTEMS SUCH AS HIGH ENVIRONMENTAL TEMPERATURE. OUR OVERALL HYPOTHESIS IS THAT BIOLOGICAL MECHANISMS REGULATING METABOLISM ARE CLOSELY INTEGRATED WITH THE INTESTINAL MICROBIOME, AND THAT UNDERSTANDING THIS INTEGRATION WILL FACILITATE DEVELOPMENT OF INNOVATIVE STRATEGIES AIMED AT ENHANCING THE PRODUCTION EFFICIENCY OF MODERN BROILERS. THIS PROJECT WILL EVALUATE BIOLOGICAL SYSTEMS ASSOCIATED WITH BIRDS THAT EXHIBIT EITHER HIGH OR LOW FEED CONVERSION RATIO, A COMMON MEASURE OF EFFICIENCY OF FEED NUTRIENT USE IN ANIMAL AGRICULTURE. THE MECHANISMS TO BE INVESTIGATED ARE ASSOCIATED WITH ACTION OF HORMONES REGULATING GROWTH AND METABOLISM, GENES REGULATING NUTRIENT UTILIZATION AND INTESTINAL INFLAMMATION, AND THE COMPOSITION AND METABOLISM OF THE INTESTINAL MICROBIAL POPULATION. THE PROJECT WILL ALSO EVALUATE HOW THESE SAME MECHANISMS ARE INFLUENCED BY HEAT STRESS, BOTH IN THE ABSENCE AND PRESENCE OF ANTIBIOTICS. IT IS EXPECTED THAT BIOLOGICAL SYSTEMS ASSOCIATED WITH METABOLIC EFFICIENCY WILL BE IDENTIFIED, AND THESE SYSTEMS WILL INCLUDE THOSE ASSOCIATED WITH HORMONES, NUTRIENT UPTAKE AND UTILIZATION, AND THE INTESTINAL MICROBIOME. THE IMPACT OF DIETARY ANTIBIOTICS AND HIGH ENVIRONMENTAL TEMPERATURES ON THESE SYSTEMS WILL ALSO BE DETERMINED. TOGETHER, RESULTS FROM THIS PROJECT WILL REVEAL TARGETS THAT CAN BE USED FOR DEVELOPMENT OF NOVEL STRATEGIES TO MAINTAIN OR IMPROVE EFFICIENCY OF MEAT PRODUCTION IN ANTIBIOTIC-FREE SYSTEMS. SUCCESSFUL DEVELOPMENT AND IMPLEMENTATION OF SUCH STRATEGIES WOULD SUBSTANTIALLY IMPROVE PROFIT MARGINS FOR BROILER PRODUCERS BECAUSE FEED ACCOUNTS FOR OVER 70% OF THEIR PRODUCTION COST. AS IMPROVEMENTS IN FEED CONVERSION ARE LIKELY REFLECTIVE OF SHIFTS IN NUTRIENT USE THAT FAVOR MUSCLE ACCRETION OVER FAT DEPOSITION, SUCH STRATEGIES WOULD ALSO ENHANCE MEAT PRODUCTION, AND THIS IMPROVED PRODUCTION EFFICIENCY WOULD BE PASSED ON TO THE CONSUMER IN THE FORM OF A REDUCED COST FOR POULTRY PRODUCTS.

$475,000
University Of Georgia Research Foundation, Inc. · · FY2020 · National Institute of Food and Agriculture

Collaborative Research: Defining the role of skin microbiomes in defense against chytridiomycosis in frogs with seasonal infections

$474,972
Louise A Rollins-Smith · Vanderbilt University Medical Center · · FY2020 · BIO

Project 3: Application of the Microbiome and Microenvironment to Novel Non Endoscopic Screening and Surveillance in Barrett's Esophagus

$474,801
Julian Abrams · Columbia University Health Sciences · U54 · FY2021 · CA

RCN-UBE: A National Network for Integrating the Study of Microbiomes into Course-based Undergraduate Research Experiences

$474,610
Theodore R Muth · Cuny City University Of New York · · FY2018 · BIO

Bile Acids in Necrotizing Enterocolitis

$474,591
Melissa D Halpern · University Of Arizona · R01 · FY2020 · DK

Molecular signatures of the periodontitis metagenome

$474,580
Susan Kinder Haake · University Of California Los Angeles · RC1 · FY2009 · DE

Myalgic Encephalomyelitis/Chronic Fatigue Syndrome

$474,561
Avindra Nath · National Institute Of Neurological Disorders And Stroke · ZIA · FY2017 · NS

Regulation of the Intestinal Stem Cells During Regeneration

$474,521
David T Breault · Boston Children'S Hospital · R01 · FY2021 · DK

Regulation of the Intestinal Stem Cells During Regeneration

$474,521
David T Breault · Boston Children'S Hospital · R01 · FY2020 · DK

Regulation of the Intestinal Stem Cells During Regeneration

$474,521
David T Breault · Boston Children'S Hospital · R01 · FY2019 · DK

Regulation of the Intestinal Stem Cells During Regeneration

$474,521
David T Breault · Boston Children'S Hospital · R01 · FY2022 · DK

Investigating Immune-Microbiome interactions during treatment of Clostridioides difficile with fecal microbiome transplantation

$474,349
Michael C. Abt · University Of Pennsylvania · R01 · FY2021 · AI

Modulation of Tumor Microenvironment by Microbiome in Head and Neck Cancer

$474,275
Shi-Long Lu · University Of Colorado Denver · R56 · FY2019 · DE

Project 2: Leveraging Metagenomics of the Microbiome to predict colonization/infection by antimicrobial-resistant pathogens

$474,264
Samuel A Shelburne · Methodist Hospital Research Institute · P01 · FY2025 · AI

Targeting Succinate Signaling Impedes Periodontitis Progression

$474,261
Xin Li · New York University · R01 · FY2018 · DE

Project 2: Leveraging Metagenomics of the Microbiome to predict colonization/infection by antimicrobial-resistant pathogens

$474,261
Samuel A Shelburne · Methodist Hospital Research Institute · P01 · FY2024 · AI

Cape Town Adolescent Antiretroviral Cohort- Substance, Imaging, Mental Health (CTAAC-SIM)

$474,228
Jacqueline Hoare · University Of Cape Town · R33 · FY2025 · DA

Systems Biology

$474,147
Nathan D Price · California Pacific Med Ctr Res Institute · U19 · FY2021 · AG

(PQ #10) Gut-brain interactions underlying chemotherapy-induced behavioral comorbidities

$474,121
Leah M Pyter · Ohio State University · R01 · FY2021 · CA

MICROBIOME-DERIVED TRNA Q MODIFICATIONS MEDIATE BREAST CANCER BIOLOGY

$474,000
University Of Chicago · · FY2017 · Department of Defense

Project 3: Microbiota generated aryl sulfates and secondary bile acids in cardiometabolic disease

$473,989
Michael Andrew Fischbach · Cleveland Clinic Lerner Com-Cwru · P01 · FY2021 · HL

Project 3: Microbiota generated aryl sulfates and secondary bile acids in cardiometabolic disease

$473,989
Michael Andrew Fischbach · Cleveland Clinic Lerner Com-Cwru · P01 · FY2022 · HL

Project 3: Microbiota generated aryl sulfates and secondary bile acids in cardiometabolic disease

$473,989
Michael Andrew Fischbach · Cleveland Clinic Lerner Com-Cwru · P01 · FY2020 · HL