2025
Stem cells and female reproduction: endometrial physiology, disease and therapy
Cevik E, Mamillapalli R, Taylor H. Stem cells and female reproduction: endometrial physiology, disease and therapy. Stem Cells 2025, 43: sxaf016. PMID: 40317260, DOI: 10.1093/stmcls/sxaf016.Peer-Reviewed Original ResearchConceptsBone marrow-derived mesenchymal stem cellsStem cellsKnowledge of stem cell biologyStem cell-based therapiesEngraftment of stem cellsRecurrent pregnancy lossImprove pregnancy outcomesEndometrial progenitor cellsMinimally invasive techniquesProgenitor stem cellsCell-based therapiesStem cell biologyAsherman's syndromeCells to areasPotential therapeutic avenuePregnancy outcomesThin endometriumHuman endometriumMarrow-derived mesenchymal stem cellsTargeted therapyEndometrial repairEndometrial regenerationPregnancy lossImplant failureInvasive techniques
2018
Therapeutic strategies involving uterine stem cells in reproductive medicine
Simoni M, Taylor HS. Therapeutic strategies involving uterine stem cells in reproductive medicine. Current Opinion In Obstetrics & Gynecology 2018, 30: 209-216. PMID: 29652725, DOI: 10.1097/gco.0000000000000457.Peer-Reviewed Original ResearchConceptsStem cell mobilizationMultipotent stem cellsEndometrial defectAsherman's syndromeStem cellsStem cell biologyEndometrial receptivity defectsLow estrogen levelsBone marrow-derived multipotent stem cellsInjury-induced expressionUterine stem cellsEndometriosis therapyProgenitor stem cellsEndometrial diseaseEstrogen levelsNormal endometriumOverwhelming injuryStem cell recruitmentMenstrual cycleEndometrial cellsStem cell traffickingReservoir of cellsCell recruitmentChemokine CXCL12Therapeutic strategies
2015
The Role of Stem Cells in the Etiology and Pathophysiology of Endometriosis
Hufnagel D, Li F, Cosar E, Krikun G, Taylor HS. The Role of Stem Cells in the Etiology and Pathophysiology of Endometriosis. Seminars In Reproductive Medicine 2015, 33: 333-340. PMID: 26375413, PMCID: PMC4986990, DOI: 10.1055/s-0035-1564609.Peer-Reviewed Original ResearchConceptsStem cellsStem cell populationProgenitor stem cellsStem cell traffickingCyclic regenerationPool of cellsCell mobilityBone marrow-derived stem cellsMarrow-derived stem cellsDynamic organRecent characterizationUnrestrained growthCell populationsCell traffickingEctopic sitesCellsRapid regenerationHuman endometriumRegenerationPathologic roleGrowthEndometriosis interferesPathophysiology of endometriosisDevelopment of endometriosisTrafficking
2013
Atypical Expression of COX-2, StAR, CYP19A1 and Apoptotic Regulators in CD90 Positive Endometrial Stromal Cells from Women with Endometriosis
Kadalmani B, Taylor H, Krikun G, Palanivel K. Atypical Expression of COX-2, StAR, CYP19A1 and Apoptotic Regulators in CD90 Positive Endometrial Stromal Cells from Women with Endometriosis. Journal Of Endometriosis And Pelvic Pain Disorders 2013, 5: 77-85. DOI: 10.5301/je.5000149.Peer-Reviewed Original ResearchProgenitor stem cell populationEndometrial stromal cellsCyclo-oxygenase-2Stromal cellsStem cell populationProtein levelsPro-apoptotic moleculesAnti-apoptotic moleculesSteroidogenic acute regulatory proteinSingle cell cloningProgenitor stem cellsStem cell-like propertiesRegulatory proteinsEctopic survivalColony forming capacityApoptotic regulatorsExpression patternsAcute regulatory proteinCell-like propertiesApoptotic genesSteroidogenic genesEndometrial cellsDiminished apoptosisGenesQRT-PCR
2012
Endometrial Stem Cells.
Taylor H. Endometrial Stem Cells. Biology Of Reproduction 2012, 87: 32-32. DOI: 10.1093/biolreprod/87.s1.32.Peer-Reviewed Original ResearchProgenitor stem cellsMesenchymal stem cellsUterine injuryMenstrual cycleMultipotent stem cellsStem cellsAdult progenitor stem cellsPathogenesis of endometriosisEndometrial stem cellsMurine diabetes modelPancreatic beta cellsAsherman's syndromeEndometrial regenerationDopaminergic neuronsDiabetes modelRetrograde fashionMurine modelPeritoneal cavitySex steroidsParkinson's diseaseBeta cellsBone marrowEndometriosisRemarkable regenerative capacityEctopic locations
2011
Stem cells in endometrium and their role in the pathogenesis of endometriosis
Figueira PG, Abrão MS, Krikun G, Taylor H. Stem cells in endometrium and their role in the pathogenesis of endometriosis. Annals Of The New York Academy Of Sciences 2011, 1221: 10-17. PMID: 21401624, PMCID: PMC3076708, DOI: 10.1111/j.1749-6632.2011.05969.x.Peer-Reviewed Original ResearchConceptsProgenitor stem cellsPathogenesis of endometriosisMesenchymal stem cellsMultipotent stem cellsStem cellsAdult progenitor stem cellsEndometrial stem cellsDopaminergic neuronsMenstrual cycleHuman endometriumRetrograde fashionMurine modelPeritoneal cavityParkinson's diseaseEndometriosisBone marrowRemarkable regenerative capacityEndometriumEctopic locationsRegenerative capacityPathogenesisDiseaseNeuronsDynamic tissueCells
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