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Cell and Tissue Research|February 28, 2015
Prolonged high fat diet ingestion, obesity, and type 2 diabetes symptoms correlate with phenotypic plasticity in myenteric neurons and nerve damage in the mouse duodenumChloe M Stenkamp-Strahm, Yvonne E A Nyavor, Adam J Kappmeyer, et al.The Journal of Physiology|July 14, 2010
Hydrophobic bile salts inhibit gallbladder smooth muscle function via stimulation of GPBAR1 receptors and activation of KATP channelsBrigitte Lavoie, Onesmo B Balemba, Cody Godfrey, et al.Journal of Virology|June 21, 2019
Human Cytomegalovirus Compromises Development of Cerebral OrganoidsRebecca M Brown, Pranav S J B Rana, Hannah K Jaeger, et al.Microorganisms|March 29, 2023
High-Resolution Taxonomic Characterization Reveals Novel Human Microbial Strains with Potential as Risk Factors and Probiotics for Prediabetes and Type 2 DiabetesSarah A Hendricks, Chantal A Vella, Daniel D New, et al.Journal of Smooth Muscle Research = Nihon Heikatsukin Gakkai Kikanshi|July 5, 2023
Garcinia buchananii stem bark extract and its bioactive constituents manniflavanone, GB-2 and buchananiflavanone attenuate intestinal inhibitory neuromuscular transmissionSavannah Patterson, Michael Elder Waters, Nancy Braman, et al.Journal of Agricultural and Food Chemistry|April 22, 2017
(2R,3S,2″R,3″R)-Manniflavanone Protects Proliferating Skeletal Muscle Cells against Oxidative Stress and Stimulates Myotube FormationSuresh Acharya, Timo D Stark, Seung Tack Oh, et al.Journal of Virology|November 12, 2020
Human Cytomegalovirus Interactions with the Basement Membrane Protein Nidogen 1Man I Kuan, Hannah K Jaeger, Onesmo B Balemba, et al.Neurogastroenterology and Motility|March 14, 2020
High-fat diet-induced alterations to gut microbiota and gut-derived lipoteichoic acid contributes to the development of enteric neuropathyYvonne Nyavor, Catherine R Brands, George May, et al.Neurogastroenterology and Motility|July 27, 2026
Postbiotic Stool Filtrates From Patients With Type 2 Diabetes Impair Mouse Intestinal Muscle Contractility Ex Vivo and Alter Enteric Cholinergic Neuronal Activity in VivoPeter F Voller, Cameron S Bowen, Afiya Aunjum, et al.Neurogastroenterology and Motility|September 24, 2020
Supernatants of intestinal luminal contents from mice fed high-fat diet impair intestinal motility by injuring enteric neurons and smooth muscle cellsYvonne Nyavor, Catherine R Brands, Jessica Nicholson, et al.Pageof 4