Larisa Lozovatsky
Research Assistant 1 MSDownloadHi-Res Photo
Cards
Contact Info
About
Titles
Research Assistant 1 MS
Research
Research at a Glance
Yale Co-Authors
Frequent collaborators of Larisa Lozovatsky's published research.
Publications Timeline
A big-picture view of Larisa Lozovatsky's research output by year.
Karin Finberg, MD, PhD
Jackie A. Fretz, PhD
Diane Krause, MD, PhD
Luis Gonzalez
Patrick Gallagher, MD, BS
Stephanie Halene, MD, Dr Med
6Publications
126Citations
Publications
2023
Bone marrow sinusoidal endothelial cells are a site of Fgf23 upregulation in a mouse model of iron deficiency anemia
Li X, Lozovatsky L, Tommasini S, Fretz J, Finberg K. Bone marrow sinusoidal endothelial cells are a site of Fgf23 upregulation in a mouse model of iron deficiency anemia. Blood Advances 2023, 7: 5156-5171. PMID: 37417950, PMCID: PMC10480544, DOI: 10.1182/bloodadvances.2022009524.Peer-Reviewed Original ResearchCitationsAltmetricMeSH Keywords and ConceptsConceptsSinusoidal endothelial cellsEndothelial cellsBone marrowBM sectionsFGF23 upregulationFibroblast growth factor 23Iron deficiencyElevated serum erythropoietinFGF23 promoter activityBM endothelial cellsGrowth factor 23Vitamin D metabolismIron deficiency anemiaSystemic iron deficiencyKnockout mice exhibitBone marrow sinusoidal endothelial cellsNormal iron balanceNonanemic controlsChronic anemiaFactor 23D metabolismEndothelial cell populationErythropoietin treatmentDeficiency anemiaMouse model
2021
Bone Marrow Sinusoidal Endothelial Cells Are a Site of Fgf23 Upregulation in Iron Deficiency Anemia
Li X, Lozovatsky L, Fretz J, Finberg K. Bone Marrow Sinusoidal Endothelial Cells Are a Site of Fgf23 Upregulation in Iron Deficiency Anemia. Blood 2021, 138: 759. DOI: 10.1182/blood-2021-153329.Peer-Reviewed Original ResearchCitationsAltmetricConceptsIron deficiency anemiaSinusoidal endothelial cellsBone marrow sinusoidal endothelial cellsNon-anemic controlsBone marrowFGF23 upregulationEndothelial cellsHepcidin elevationDeficiency anemiaFGF23 productionSerum erythropoietinChronic iron deficiency anemiaIron deficiencyFGF23 promoter activityTissue iron deficiencyIron-restricted anemiaFemurs of miceSystemic iron deficiencyBone marrow sectionsReporter alleleNormal iron balanceEndothelial cell subtypesTotal FGF23Phosphaturic hormoneBlood loss
2020
Functional characterization of a novel SLC40A1 Arg88Ile mutation in a kindred with familial iron overload treated by phlebotomy
Womack J, Sukumaran A, Li X, Lozovatsky L, Gallagher PG, Seid JE, Finberg KE. Functional characterization of a novel SLC40A1 Arg88Ile mutation in a kindred with familial iron overload treated by phlebotomy. Blood Cells Molecules And Diseases 2020, 87: 102532. PMID: 33385755, PMCID: PMC8272917, DOI: 10.1016/j.bcmd.2020.102532.Peer-Reviewed Original ResearchMeSH Keywords and ConceptsNCOA4 is regulated by HIF and mediates mobilization of murine hepatic iron stores after blood loss
Li X, Lozovatsky L, Sukumaran A, Gonzalez L, Jain A, Liu D, Ayala-Lopez N, Finberg KE. NCOA4 is regulated by HIF and mediates mobilization of murine hepatic iron stores after blood loss. Blood 2020, 136: 2691-2702. PMID: 32659785, PMCID: PMC7735158, DOI: 10.1182/blood.2020006321.Peer-Reviewed Original ResearchCitationsAltmetricMeSH Keywords and ConceptsConceptsHepatic iron storesHypoxia-inducible factorNonheme iron concentrationsIron storesBlood lossNCOA4 expressionSubunit levelsHIF-2α knockdownMurine hepatoma cell lineMessenger RNA inductionDietary ironHepatic responseHepatoma cell lineHIF-1αHepatic originIron deficiencyInducible factorMiceCell linesNCOA4PhlebotomyModest effectRNA inductionIron concentrationProlyl hydroxylases
2019
Low iron promotes megakaryocytic commitment of megakaryocytic-erythroid progenitors in humans and mice
Xavier-Ferrucio J, Scanlon V, Li X, Zhang PX, Lozovatsky L, Ayala-Lopez N, Tebaldi T, Halene S, Cao C, Fleming MD, Finberg KE, Krause DS. Low iron promotes megakaryocytic commitment of megakaryocytic-erythroid progenitors in humans and mice. Blood 2019, 134: 1547-1557. PMID: 31439541, PMCID: PMC6839952, DOI: 10.1182/blood.2019002039.Peer-Reviewed Original ResearchCitationsAltmetricMeSH Keywords and ConceptsConceptsMK lineage commitmentExtracellular signal-regulated kinase (ERK) pathwaySignal-regulated kinase pathwayMegakaryocytic-erythroid progenitorsBone marrow transplantation assaysSignal transduction analysisIron-deficient conditionsGene expression analysisMegakaryocytic commitmentLineage commitmentTransferrin receptor 2MK lineageTmprss6-/- miceIron sensorExpression analysisKinase pathwayTransduction analysisTransplantation assaysErythroid progenitorsMarrow environmentHematopoietic cellsMessenger RNAPhospho-ERK1/2Systemic iron deficiencyLow ironGenetic loss of Tmprss6 alters terminal erythroid differentiation in a mouse model of β-thalassemia intermedia
Stagg DB, Whittlesey RL, Li X, Lozovatsky L, Gardenghi S, Rivella S, Finberg KE. Genetic loss of Tmprss6 alters terminal erythroid differentiation in a mouse model of β-thalassemia intermedia. Haematologica 2019, 104: e442-e446. PMID: 30819909, PMCID: PMC6886429, DOI: 10.3324/haematol.2018.213371.Peer-Reviewed Original ResearchCitationsAltmetric