2023
Antibiotic-induced microbial depletion enhances murine small intestinal epithelial growth in a serotonin-dependent manner
Salvi P, Shaughnessy M, Sumigray K, Cowles R. Antibiotic-induced microbial depletion enhances murine small intestinal epithelial growth in a serotonin-dependent manner. AJP Gastrointestinal And Liver Physiology 2023, 325: g80-g91. PMID: 37158470, DOI: 10.1152/ajpgi.00113.2022.Peer-Reviewed Original ResearchConceptsSerotonin activitySERT protein expressionSerotonin potentiationEpithelial proliferationSerotonin transporterEndogenous serotoninVillus heightMicrobial depletionIntestinal epithelial growthProtein expressionEpithelial growthSerotonin-dependent mechanismIntestinal villus heightSmall intestine resultsIntestinal surface areaSmall intestinal villiSmall intestinal cryptsIntestinal pathologyPara-chlorophenylalanineISC numbersSerotonin synthesisIntestinal homeostasisEpithelial expressionMouse modelAnimal models
2022
Jejunoileal mucosal growth in mice with a limited microbiome
Shaughnessy MP, Park CJ, Salvi PS, Cowles RA. Jejunoileal mucosal growth in mice with a limited microbiome. PLOS ONE 2022, 17: e0266251. PMID: 35349599, PMCID: PMC8963542, DOI: 10.1371/journal.pone.0266251.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsAnti-Bacterial AgentsGerm-Free LifeIntestinal MucosaIntestine, SmallMiceMice, Inbred C57BLMicrobiotaConceptsIntestinal mucosal growthMucosal surface areaSmall intestinal mucosal growthCrypt proliferation indexCONV miceGF miceMucosal growthVillus heightEnteral antibioticsCrypt depthCell proportionSmall intestinal villus heightGerm-free miceBroad-spectrum antibioticsConventional floraIntestinal villus heightGerm-free conditionsEnteral administrationMucosal homeostasisGnotobiotic miceProliferation indexEnterocyte proliferationMiceTaller villiGF conditions
2020
Mucosal characteristics vary across developmental stages in the small intestine of C57BL/6J mice
Park CJ, Shaughnessy MP, Cowles RA. Mucosal characteristics vary across developmental stages in the small intestine of C57BL/6J mice. Life Sciences 2020, 260: 118428. PMID: 32931798, DOI: 10.1016/j.lfs.2020.118428.Peer-Reviewed Original Research
2019
Potentiated serotonin signaling in serotonin re‐uptake transporter knockout mice increases enterocyte mass and small intestinal absorptive function
Greig CJ, Zhang L, Cowles RA. Potentiated serotonin signaling in serotonin re‐uptake transporter knockout mice increases enterocyte mass and small intestinal absorptive function. Physiological Reports 2019, 7: e14278. PMID: 31724827, PMCID: PMC6854605, DOI: 10.14814/phy2.14278.Peer-Reviewed Original ResearchConceptsIntestinal absorptive functionEnterocyte massCrypt proliferation indexSmall intestineAbsorptive functionDistal bowelSmall bowelCrypt depthSERT knockoutVillus heightProliferative parametersSmall intestinal absorptive functionPlasma citrulline levelsCrypt cell proliferationPeptide absorptionSignificant increaseMucosal surface areaAttractive therapeutic targetFunctional intestinal mucosaWT miceCitrulline levelsPlasma citrullineSerotonin systemIntestinal mucosaLuminal instillationPotentiation of serotonin signaling leads to increased carbohydrate and lipid absorption in the murine small intestine
Park CJ, Armenia SJ, Shaughnessy MP, Greig CJ, Cowles RA. Potentiation of serotonin signaling leads to increased carbohydrate and lipid absorption in the murine small intestine. Journal Of Pediatric Surgery 2019, 54: 1245-1249. PMID: 30879746, DOI: 10.1016/j.jpedsurg.2019.02.027.Peer-Reviewed Original ResearchConceptsPotentiation of serotoninSmall intestineMucosal growthLipid absorptionSmall intestinal mucosal growthMucosal growth factorsSerotonin reuptake transporterSERT knockout miceDistal small intestineIntestinal mucosal growthCrypt cell proliferationT-testMucosal surface areaMurine small intestineStudent's t-testEnteric serotoninIntestinal failureIntestinal adaptationReuptake transporterDeficient miceWT animalsIntestinal homeostasisFatty acid analogueCrypt depthVillus height
2016
Distribution of muscarinic acetylcholine receptor subtypes in the murine small intestine
Muise ED, Gandotra N, Tackett JJ, Bamdad MC, Cowles RA. Distribution of muscarinic acetylcholine receptor subtypes in the murine small intestine. Life Sciences 2016, 169: 6-10. PMID: 27866962, DOI: 10.1016/j.lfs.2016.10.030.Peer-Reviewed Original ResearchConceptsSmall intestineReceptor subtypesMuscarinic acetylcholine receptor subtypesShort bowel syndromeEffects of acetylcholineStem cell compartmentMuscarinic receptor subtypesAcetylcholine receptor subtypesSmall intestinal mucosaPotential therapeutic targetMurine small intestineCell compartmentSpecific mAChRBowel syndromeCholinergic pathwaysMyenteric plexusAnatomic distributionMuscarinic receptorsEntire alimentary tractIntestinal diseaseIntestinal mucosaEnterocyte turnoverIntestinal growthTherapeutic targetCrypt bases