Project Grant R03DK140419
- This $3,103,125.00 Project Grant award from the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), supports research to understand how changes in gastrointestinal anatomy after Roux-en-Y gastric bypass surgery affect energy homeostasis and lead to improvements in glucose regulation and type 2 diabetes remission. The central hypothesis is that alteration in intestinal epithelial...
- This federal Project Grant award for $2,970,076, provided by the National Institute of Diabetes and Digestive and Kidney Diseases (CFDA 93.847 - Diabetes, Digestive, and Kidney Diseases Extramural Research), aims to investigate the developmental programming of adult intestinal stem cells (ISCs) and the impact of early life exposures, such as an obesogenic maternal diet, on ISC function and long-term disease susceptibility. Using genetically engineered mouse and organoid models, the project...
- This federal Project Grant award of $828,771 from the National Institute of Diabetes and Digestive and Kidney Diseases (CFDA 93.847 Diabetes, Digestive, and Kidney Diseases Extramural Research) supports research to investigate the neural mechanisms underlying the metabolic benefits of bariatric surgery procedures like vertical sleeve gastrectomy (VSG) and Roux-en-Y gastric bypass (RYGB). The research aims to study changes in the activity and transcriptional profiles of key neurons in the arcuate...
- The National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), through the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), awarded a $325,408 Project Grant to Intailor Bariatrics, LLC to develop an "easy-to-operate endoscopic automatic gastroplasty device" that mimics the effects of gastric bypass/bariatric surgery for the treatment of diabetes and obesity. The technology creates a reinforced circular plication of the stomach tissue,...
- The National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) awarded Duke University a $241,500 Project Grant under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847) to study the regulation of metabolic diseases by the human commensal bacterium Clostridium immunis. The overarching goal is to determine the mechanism by which an exopolysaccharide (EPS) secreted by C. immunis decreases visceral adiposity, a key risk factor for type 2 diabetes and...
- This federal Project Grant award of $140,116 was provided by the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847). The grant was awarded on September 15, 2025 to the Beckman Research Institute of the City of Hope, a nonprofit medical research organization in California. The objective of this project is to identify and characterize a new mechanism of communication between the...
- This federal Project Grant award from the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), provides $761,399 to support research on the mechanisms regulating lipid absorption in the gut. The key objectives are to: Define the molecular mechanisms by which gut T cells modulate dietary lipid absorption, focusing on the role of the IL-22/IL-22R signaling axis. Elucidate the...
- This $303,364 Project Grant award from the National Institute of Diabetes and Digestive and Kidney Diseases (CFDA 93.847 Diabetes, Digestive, and Kidney Diseases Extramural Research) aims to elucidate the mechanisms of Notch signaling in immature and adult intestinal stem cells (ISCs) that regulate both stem cell and Paneth cell maintenance. The research will utilize genetically engineered in vivo and ex vivo mouse models to test hypotheses about how ISCs maintain Notch signaling and provide...
- This $611,447 Project Grant award from the National Institute of Diabetes and Digestive and Kidney Diseases (CFDA 93.847) will fund research to define a novel signaling axis regulating gastric epithelial cell homeostasis and response to injury. The project aims to investigate how WNT signaling activates retinoic acid signaling to maintain gastric epithelial cell function and regulate chief cell remodeling after injury. The award will support in vivo mouse models and in vitro organoid models to...
- This $108,486 Project Grant was awarded on September 30, 2025 by the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), part of the National Institutes of Health, under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847). The grant supports research by the Scripps Research Institute in La Jolla, CA to leverage novel in vivo protein tracking tools to identify novel immune markers associated with obesity-driven diseases. The research aims...
MECHANISMS OF OBESITY-RELATED ALTERED STOMACH PLASTICITY - PROJECT SUMMARY INDIVIDUALS WITH TYPE 2 DIABETES AND OBESITY ARE AT GREATER RISK FOR DEVELOPING GASTROINTESTINAL DISEASES INCLUDING CROHN'S DISEASE, GASTRO-ESOPHAGEAL REFLUX DISEASE, VARIOUS GASTROINTESTINAL CANCERS, AS WELL AS DIVERTICULOSIS. IN ORDER TO DEVELOP TREATMENTS TO REVERSE PATHOGENESIS, IT IS NECESSARY TO DETERMINE HOW CELLULAR CHANGES TO THE TISSUES OF THE GASTROINTESTINAL TRACT CONTRIBUTE TO DISEASE. INTERESTINGLY, THE EXPRESSION OF GENES IN THE STOMACH ARE MORE STRONGLY ALTERED COMPARED TO REGIONS OF THE SMALL AND LARGE INTESTINE DURING OBESITY. AND WHILE THE ABUNDANCE OF MANY GASTRIC CELLS, PARTICULARLY HORMONE-SECRETING ENDOCRINE CELLS, ARE INCREASED WITH DISEASE, THERE IS EVIDENCE TO SUPPORT THAT THESE CELLS ARE DYSFUNCTIONAL. THE MECHANISMS INITIATING THESE CHANGES REMAIN UNCLEAR. ENDOCRINE CELLS ARE REPOPULATED FROM STEM AND PROGENITOR CELLS. IN PRELIMINARY EVIDENCE PRESENTED IN THIS PROPOSAL, THE CANDIDATE HAS FOUND THAT THERE ARE MORE GASTRIC NEUROG3+ ENDOCRINE PROGENITOR CELLS, BUT MINIMAL CHANGE IN LGR5+ STEM CELLS, WITH DISEASE, THE LATTER OF WHICH IS DIFFERENT FROM WHAT IS FOUND IN THE INTESTINE. FURTHERMORE, THE CANDIDATE HAS FOUND A CELL-SPECIFIC INCREASE IN NOTCH COMPONENTS IN THE STOMACH OF MICE AFTER HIGH FAT DIET FEEDING. USING TWO SPECIFIC AIMS, THE GOAL OF THIS PROPOSAL IS TO DETERMINE HOW OBESITY ALTERS THE FUNCTION AND DISTRIBUTION OF GASTRIC ENDOCRINE PROGENITOR CELLS. THE HYPOTHESIS IS THAT LIPOTOXICITY DISRUPTS STEM AND PROGENITOR CELL HOMEOSTASIS THROUGH ALTERED NOTCH SIGNALING. IN AIM1, THROUGH GAIN-OF- FUNCTION STUDIES IN MICE, THE CANDIDATE WILL DIRECTLY TEST WHETHER ACTIVATION OF NOTCH SIGNALING CONTRIBUTES TO THE METABOLIC DYSREGULATION AND ALTERED FUNCTION OF GASTRIC ENDOCRINE CELLS THAT OCCURS DURING OBESITY. IN AIM2, USING FLUORESCENT REPORTER MICE TO MARK PROGENITOR AND LINEAGE-COMMITTED ENDOCRINE POPULATIONS, THE CANDIDATE WILL PERFORM SINGLE CELL RNA-SEQ TO ISOLATE UNIQUE POPULATIONS OF DYSFUNCTIONAL GASTRIC ENDOCRINE CELLS. IN ADDITION, USING A TARGETED APPROACH, THE CANDIDATE WILL ALSO DIRECTLY TEST, USING KNOCKOUT MICE, THE ROLE OF THE NOTCH LIGAND JAG1 IN PROMOTING THE EXPANSION OF ENDOCRINE CELLS WITH OBESITY. UPON COMPLETION, THE APPLICANT WILL HAVE CREATED A DETAILED PICTURE ON HOW UNIQUE POPULATIONS OF GASTRIC ENDOCRINE CELLS ARE ALTERED BY OBESITY. THE APPLICANT WILL ALSO ELUCIDATE HOW SPECIFIC SIGNALING MECHANISMS, SUCH AS ALTERED NOTCH SIGNALING, ARE CONNECTED TO DISEASE PATHOGENESIS. TOGETHER, THESE STUDIES WILL FORM THE BASIS OF AN R01 GRANT, ARE NECESSARY TO PERMIT A MORE COMPLETE ANALYSIS OF REGIONAL SPECIFIC DIFFERENCES IN ENDOCRINE CELL LINEAGE, AND WILL SHED LIGHT ON NEW THERAPEUTICS FOR DIABETES AND OBESITY.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($117k) | 6/25/25 | ||
| Not listed | $116.8k | 6/25/25 | ||
| Not listed | $117.4k | 6/17/25 | ||
| Not listed | $117.4k | 6/17/25 | ||
| Not listed | $0 | 6/16/25 |