💭🎯Today’s case-based question!
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#CMML #Hematology #HemeOnc #Anemia #Erythropoietin #ChronicMyelomonocyticLeukemia #BoneMarrowFailure #EPO #Erythropoiesis #BloodDisorders #HemeHub #MedicalEducation #MedEd #ClinicalHematology #HematologyEducation
🩸Facts about Myelofibrosis:
Specific Strategies for Anemia
#Myelofibrosis #Hematology #Oncology #BloodDisorders #Anemia #ESAtherapy #Danazol #Thalidomide #Lenalidomide #Hepcidin #Erythropoiesis #MedEd #RareDiseases #HEMEHUB
🩸🔬Today’s question!
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#Myelofibrosis #MF #Hematology #HemeOnc #Hepcidin #JAKSTAT #Erythropoiesis #MPN #BloodDisorders #HematologyEducation #MedEd #HemeHub #ClinicalHematology #PatientCare @gmpnsf.bsky.social
🩸Today’s questions!
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#Myelofibrosis #MPN #Hematology #HemeOnc #Ruxolitinib #Selinexor #Pelabresib #JAKInhibitors #Hepcidin #Erythropoiesis #Splenomegaly #BoneMarrow #BloodDisorders #MedEd #ClinicalHematology #MPNResearch #BloodCancer #HEMEHUB
🩸Facts about Myelofibrosis:
JAK Inhibitor Therapy
#Myelofibrosis #MPN #Hematology #JAKInhibitors #Ruxolitinib #Momelotinib #ACVR1 #Hepcidin #Erythropoiesis #Splenomegaly #BoneMarrow #BloodDisorders #ClinicalHematology #MedEd #HemeOnc #HEMEHUB
@gmpnsf.bsky.social @rarediseaseadvisor.bsky.social
🩸Facts about Myelofibrosis:
Disease Pathogenesis & Diagnosis
#Myelofibrosis #Hematology #HemeHub #Hepatosplenomegaly #Anemia #MF #JAK2 #CALR #MPL #Erythropoiesis #Inflammation #Pathophysiology #HematologyEducation #MedicalEducation
TKI-mediated inhibition of NLRP1 #inflammasome restores #erythropoiesis in Diamond-Blackfan anemia syndrome 👉 doi.org/10.1038/s443...
By J. Lozano-Gil, A. Martínez-López, S. Tyrkalska, V. Mulero & colleagues @ciberisciii.bsky.social & @um.es
Where are red blood cells produced? #redbloodcells #erythrocytes #erythropoiesis #anatomy ... Continue to: www.youtube.com/watch?v=_p4f...
New findings from Sebastian Stifter, Melanie Greter et al. (University of Zurich) reveal that XPR1 is required for the development, identity, and function of #macrophages involved in #erythropoiesis. rupress.org/jem/article/...
#InnateImmunity #inflammation
Synergistic mechanisms of pleiotropic cytokines and lineage-specific factors. IL-17A dramatically enhances erythropoiesis, increasing the production of ProE precursors above levels generated by Epo alone. HSC, hematopoietic stem cell; MPP, multipotent progenitor; EBMP, erythroid/basophil-mast cell/megakaryocytic progenitor; BFU-E, erythroid burst-forming unit; CFU-E, erythroid colony-forming unit; ProE, pro-erythroblast; BasoE, basophilic erythroblast; PolyE, poly erythroblast; OrthoE, ortho-chromatic erythroblast; RBC, red blood cell. Created in BioRender. Wilson, N. (2025).
What underlies the dynamics of #RedBloodCell production? Nicola Wilson explores a @plosbiology.org study that suggests a broadly applicable mechanism able to balance the maintenance of the steady-state with an effective stress response 🧪 #erythropoiesis Paper: plos.io/3KDskbX Primer: plos.io/4j4QBV1
Synergistic mechanisms of pleiotropic cytokines and lineage-specific factors. IL-17A dramatically enhances erythropoiesis, increasing the production of ProE precursors above levels generated by Epo alone. HSC, hematopoietic stem cell; MPP, multipotent progenitor; EBMP, erythroid/basophil-mast cell/megakaryocytic progenitor; BFU-E, erythroid burst-forming unit; CFU-E, erythroid colony-forming unit; ProE, pro-erythroblast; BasoE, basophilic erythroblast; PolyE, poly erythroblast; OrthoE, ortho-chromatic erythroblast; RBC, red blood cell. Created in BioRender. Wilson, N. (2025).
What underlies the dynamics of #RedBloodCell production? Nicola Wilson explores a @plosbiology.org study that suggests a broadly applicable mechanism able to balance the maintenance of the steady-state with an effective stress response 🧪 #erythropoiesis Paper: plos.io/3KDskbX Primer: plos.io/4j4QBV1
Synergistic mechanisms of pleiotropic cytokines and lineage-specific factors. IL-17A dramatically enhances erythropoiesis, increasing the production of ProE precursors above levels generated by Epo alone. HSC, hematopoietic stem cell; MPP, multipotent progenitor; EBMP, erythroid/basophil-mast cell/megakaryocytic progenitor; BFU-E, erythroid burst-forming unit; CFU-E, erythroid colony-forming unit; ProE, pro-erythroblast; BasoE, basophilic erythroblast; PolyE, poly erythroblast; OrthoE, ortho-chromatic erythroblast; RBC, red blood cell. Created in BioRender. Wilson, N. (2025).
What underlies the dynamics of #RedBloodCell production? Nicola Wilson explores a @plosbiology.org study that suggests a broadly applicable mechanism able to balance the maintenance of the steady-state with an effective stress response 🧪 #erythropoiesis Paper: plos.io/3KDskbX Primer: plos.io/4j4QBV1
Single-cell transcriptomics of the Epo/IL-17A synergism in erythropoiesis. Left: UMAP visualization of single-cell transcriptomes across conditions and tissues, colored by annotated cell states. MPP, multipotent progenitor; EBMP, erythroid-basophilic-megakaryocytic progenitor; BaMaP, basophil-mast cell progenitor; MegP, megakaryocyte progenitor; EosP, eosinophil progenitor; LyP, lymphoid progenitor; GMP, granulocyte monocyte progenitor; MoP, monocyte progenitor; imMo; immature monocyte; mMo, mature monocyte; NeuP, neutrophil progenitor; imNeu, immature neutrophil; mNeu, mature neutrophil; imB, immature B cell; proB, proB cell; T, T cell; cDC1/2, conventional dendritic cell 1/2; pDC, plasmacytoid dendritic cell; Mac, macrophage; EEP, early erythroid progenitor (BFU-e equivalent); CEP, committed erythroid progenitor (CFU-e equivalent); ProE, proerythroblast; BasoE, basophilic erythroblast; PolyE, polychromatic erythroblast; OrthoE, orthochromatic erythroblast; pyrenocytes, and reticulocytes. Right: Relative cell densities across the sampled RNA-Seq state space, evaluated in high dimensions and visualized on the UMAP plot. The plots are colored by the log2-transformed ratio of cell densities in the neighborhood of each sampled transcriptome, for each treatment pair as indicated.
#Erythropoietin can be an effective #anemia treatment, but not with cancer or chronic disease. This study identifies the pleiotropic #cytokine IL-17A as a stimulator of #erythropoiesis in vivo that acts by amplifying the response of erythroid progenitors to Epo @plosbiology.org 🧪 plos.io/3KDskbX
Single-cell transcriptomics of the Epo/IL-17A synergism in erythropoiesis. Left: UMAP visualization of single-cell transcriptomes across conditions and tissues, colored by annotated cell states. MPP, multipotent progenitor; EBMP, erythroid-basophilic-megakaryocytic progenitor; BaMaP, basophil-mast cell progenitor; MegP, megakaryocyte progenitor; EosP, eosinophil progenitor; LyP, lymphoid progenitor; GMP, granulocyte monocyte progenitor; MoP, monocyte progenitor; imMo; immature monocyte; mMo, mature monocyte; NeuP, neutrophil progenitor; imNeu, immature neutrophil; mNeu, mature neutrophil; imB, immature B cell; proB, proB cell; T, T cell; cDC1/2, conventional dendritic cell 1/2; pDC, plasmacytoid dendritic cell; Mac, macrophage; EEP, early erythroid progenitor (BFU-e equivalent); CEP, committed erythroid progenitor (CFU-e equivalent); ProE, proerythroblast; BasoE, basophilic erythroblast; PolyE, polychromatic erythroblast; OrthoE, orthochromatic erythroblast; pyrenocytes, and reticulocytes. Right: Relative cell densities across the sampled RNA-Seq state space, evaluated in high dimensions and visualized on the UMAP plot. The plots are colored by the log2-transformed ratio of cell densities in the neighborhood of each sampled transcriptome, for each treatment pair as indicated.
#Erythropoietin can be an effective #anemia treatment, but not with cancer or chronic disease. This study identifies the pleiotropic #cytokine IL-17A as a stimulator of #erythropoiesis in vivo that acts by amplifying the response of erythroid progenitors to Epo @plosbiology.org 🧪 plos.io/3KDskbX
Single-cell transcriptomics of the Epo/IL-17A synergism in erythropoiesis. Left: UMAP visualization of single-cell transcriptomes across conditions and tissues, colored by annotated cell states. MPP, multipotent progenitor; EBMP, erythroid-basophilic-megakaryocytic progenitor; BaMaP, basophil-mast cell progenitor; MegP, megakaryocyte progenitor; EosP, eosinophil progenitor; LyP, lymphoid progenitor; GMP, granulocyte monocyte progenitor; MoP, monocyte progenitor; imMo; immature monocyte; mMo, mature monocyte; NeuP, neutrophil progenitor; imNeu, immature neutrophil; mNeu, mature neutrophil; imB, immature B cell; proB, proB cell; T, T cell; cDC1/2, conventional dendritic cell 1/2; pDC, plasmacytoid dendritic cell; Mac, macrophage; EEP, early erythroid progenitor (BFU-e equivalent); CEP, committed erythroid progenitor (CFU-e equivalent); ProE, proerythroblast; BasoE, basophilic erythroblast; PolyE, polychromatic erythroblast; OrthoE, orthochromatic erythroblast; pyrenocytes, and reticulocytes. Right: Relative cell densities across the sampled RNA-Seq state space, evaluated in high dimensions and visualized on the UMAP plot. The plots are colored by the log2-transformed ratio of cell densities in the neighborhood of each sampled transcriptome, for each treatment pair as indicated.
#Erythropoietin can be an effective #anemia treatment, but not with cancer or chronic disease. This study identifies the pleiotropic #cytokine IL-17A as a stimulator of #erythropoiesis in vivo that acts by amplifying the response of erythroid progenitors to Epo @plosbiology.org 🧪 plos.io/3KDskbX
Examining mechanisms relevant for restoring #Erythropoiesis & mitigation of pro-inflammatory IFNγ action in #MouseModel #Anemia of #Inflammation (AI) doi.org/10.1182/bloo... #TranslationalScience
Anti-inflammatory signals promote the transition to differentiation of SEPs. buff.ly/2b2lvLf #hemesky #erythropoiesis
Dysregulation of #Stress #Erythropoiesis and Enhanced Susceptibility to #Salmonella #Typhimurium #Infection in #Aryl #Hydrocarbon #Receptor-Deficient Mice; #JInfectDis #FoersterLab @unibonn.bsky.social shorturl.at/tSUdF
Impaired primitive #erythropoiesis and defective #vascular #development in #Trim71-KO #embryos #LifeSciAlliance #KolanusLab @unibonn.bsky.social #organogenesis #gene-expression shorturl.at/Vnhu6
Lower serum #magnesium level is an important risk factor for #erythropoiesis -stimulating agents hypo-responsiveness in hemodialysis patients
Lower serum magnesemia is an important risk factor for ESAs hypo-responsiveness with more dialysis-associated symptoms.
ejim.springeropen.com/articles/10....
Cluster funded publication in @NatureComms with @kuzina_mariia and @levkinlab on the inhibition of #lysyl oxidases synergizes with 5-azacytidine to restore #erythropoiesis in myelodysplastic and myeloid #malignancies: https://doi.org/10.1038/s41467-023-37175-8 #cancer #therapies