Merritt Gillilland
Biochemistry, Genetics and Molecular Biology · University of Michigan
Publications
65
Citations
3,462
Est. group size
~1
Recurring co-author estimate
Active years
25
Publishing since 2001
Typically publishes in teams of ~5 · 0% small-team papers (≤3 authors) · across 3 venues
- 659: CHRONIC EFFECT OF LINACLOTIDE ON THE COMPOSITION AND FUNCTION OF GUT MICROBIOTA: POTENTIAL MECHANISMS FOR INHIBITION OF VISCERAL PAIN
Gastroenterology · 2022
- Fr429 TLR4 SIGNAL TRANSDUCTION PATHWAY MEDIATES UPREGULATION OF 2-PORE DOMAIN POTASSIUM TRESK CHANNEL AND IS RESPONSIBLE FOR HIGH-FAT DIET-INDUCED VAGAL AFFERENT DYSFUNCTION
Gastroenterology · 2021
- 132 GUT DYSBIOSIS INDUCED BY CIRCADIAN RHYTHM DISRUPTION PROMOTES VISCERAL HYPERSENSITIVITY: MEDIATION BY DEGRADATION OF COLONIC MUCUS BARRIER AND LPS ENDOTOXEMIA.
Gastroenterology · 2020
- 1011 IMPAIRED THERMOGENESIS IN BROWN ADIPOSE TISSUE INDUCED BY DIETARY EMULSIFIERS CARBOXYMETHYL CELLULOSE IS MEDIATED BY MUCOLYTIC BACTERIA AND LPS ENDOTOXEMIA
Gastroenterology · 2020
- 658 GUT DYSBIOSIS PROMOTES COLONIC M1 MACROPHAGE EXPRESSION AND CONTRIBUTES TO MUCOSA INFLAMMATION: MEDIATION BY LPS ACTING ON TOLL-LIKE RECEPTOR 4
Gastroenterology · 2020
- 559 ACTIVATION OF TOLL-LIKE RECEPTOR 2 (TLR2) IN THE HYPOTHALAMUS IS RESPONSIBLE FOR HIGH FAT DIET INDUCED REDUCTION OF BAT THERMOGENESIS AND DEVELOPMENT OF OBESITY MEDIATION BY GUT DYSBIOSIS AND BACTERIAL LIPOTHEICHOIC ACID
Gastroenterology · 2020
- Su1229 PANETH CELL LOSS IS ASSOCIATED WITH MUCOSA DYSBIOSIS, INTESTINAL BARRIER DYSFUNCTION AND MUCOSA INFLAMMATION
Gastroenterology · 2020
- 264 – Dietary Emulsifiers Reduce Thermogenesis in Brown Adipose Tissue, Leading to Obesity and Metabolic Syndrome
Gastroenterology · 2019
- Mo2012 – High-Fat Diet Reduces Brown Adipose Tissue Thermogenesis, Which Contributes to Obesity: Mediation by Gut Dysbiosis and Endotoxemia
Gastroenterology · 2019
- Su2004 – Disruption of Circadian Rhythm Reduces Thermogenesis in Brown Adipose Tissue, Leading to Abnormal Weight Gain and Development of Metabolic Syndrome. Mediation by Gut Dysbiosis and Endotoxemia
Gastroenterology · 2019
- 830 - Secondary Bile Acids are Responsible for High Fat Diet (HFD)-Induced Upregulation of R-Spondin 3 Which in Turn Mediates HFD-Inducted Intestinal Epithelial Proliferation in Rodents
Gastroenterology · 2018
- Sa1551 - Gut Dysbiosis Contributes Significantly to Gastric Pain in Diabetic Gastroparesis: Treatment Effects with Rifaximin
Gastroenterology · 2018
- FODMAP diet modulates visceral nociception by lipopolysaccharide-mediated intestinal inflammation and barrier dysfunction
Journal of Clinical Investigation · 2017
- High-Fat Feeding Enhances Stemness of Intestinal Progenitors and Stimulates Epithelial Proliferation via Upregulation of R-Spondin 3 and its Receptors LGR4 and 5
Gastroenterology · 2017
- Bile Acids Regulate Intestinal Paneth Cell Functions and Contribute to Gut Dysbiosis Induced by High Fat Feeding
Gastroenterology · 2017
- Gastroenterology×18
- JCI Insight×4
- bioRxiv (Cold Spring Harbor Laboratory)×3
- Cell Reports×2
- Nature Materials×1
- Ingrid L. Bergin
Biochemistry, Genetics and Molecular Biology · University of Michigan
- Christine M. Bassis
Biochemistry, Genetics and Molecular Biology · University of Michigan
- Taichi A. Suzuki
Biochemistry, Genetics and Molecular Biology · University of Michigan
- Celeste Alexander
Biochemistry, Genetics and Molecular Biology · University of Michigan
- Anna V. Mathew
Biochemistry, Genetics and Molecular Biology · University of Michigan
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 25, 2026.
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