The bone marrow is the primary site of thrombopoiesis

Megakaryocytes generate thousands of platelets over their lifespan. More recently, roles in infection and inflammation have been reported. These findings have driven a study of extra-medullary thrombopoiesis, and megakaryocytes have been increasingly reported within the spleen and lung. However, the...

全面介紹

書目詳細資料
Main Authors: Asquith, NL, Carminita, E, Camacho, V, Rodriguez-Romera, A, Stegner, D, Freire, D, Becker, IC, Machlus, KR, Khan, A, Italiano, JE
格式: Journal article
語言:English
出版: American Society of Hematology 2023
_version_ 1826315006091722752
author Asquith, NL
Carminita, E
Camacho, V
Rodriguez-Romera, A
Stegner, D
Freire, D
Becker, IC
Machlus, KR
Khan, A
Italiano, JE
author_facet Asquith, NL
Carminita, E
Camacho, V
Rodriguez-Romera, A
Stegner, D
Freire, D
Becker, IC
Machlus, KR
Khan, A
Italiano, JE
author_sort Asquith, NL
collection OXFORD
description Megakaryocytes generate thousands of platelets over their lifespan. More recently, roles in infection and inflammation have been reported. These findings have driven a study of extra-medullary thrombopoiesis, and megakaryocytes have been increasingly reported within the spleen and lung. However, the relative abundance of megakaryocytes in these organs compared to the bone marrow and the scale of their contribution to the platelet pool in steady state remains controversial. We investigated the relative abundance of megakaryocytes in the adult murine bone marrow, spleen, and lung using whole-mount light sheet and quantitative histological imaging, flow cytometry, intravital imaging, and an assessment of scRNA-seq repositories. Flow cytometry revealed significantly higher numbers of hematopoietic stem and progenitor cells and megakaryocytes in the murine bone marrow compared to spleens or perfused lungs. Two-photon intravital and light-sheet microscopy, as well as cryosections confirmed these findings. Moreover, ex-vivo cultured megakaryocytes from the bone marrow subject to static or microfluidic platelet production assays had a higher capacity for proplatelet-formation than MKs from other organs. Analysis of previously published murine and human scRNA-seq datasets revealed that only a marginal fraction of megakaryocyte-like cells can be found within the lung and most likely only marginally contribute to platelet production in the steady state.
first_indexed 2024-03-07T08:18:28Z
format Journal article
id oxford-uuid:4465f7dc-c020-46e4-9373-557ad76e5f92
institution University of Oxford
language English
last_indexed 2024-12-09T03:16:03Z
publishDate 2023
publisher American Society of Hematology
record_format dspace
spelling oxford-uuid:4465f7dc-c020-46e4-9373-557ad76e5f922024-10-25T08:46:28ZThe bone marrow is the primary site of thrombopoiesisJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:4465f7dc-c020-46e4-9373-557ad76e5f92EnglishSymplectic ElementsAmerican Society of Hematology2023Asquith, NLCarminita, ECamacho, VRodriguez-Romera, AStegner, DFreire, DBecker, ICMachlus, KRKhan, AItaliano, JEMegakaryocytes generate thousands of platelets over their lifespan. More recently, roles in infection and inflammation have been reported. These findings have driven a study of extra-medullary thrombopoiesis, and megakaryocytes have been increasingly reported within the spleen and lung. However, the relative abundance of megakaryocytes in these organs compared to the bone marrow and the scale of their contribution to the platelet pool in steady state remains controversial. We investigated the relative abundance of megakaryocytes in the adult murine bone marrow, spleen, and lung using whole-mount light sheet and quantitative histological imaging, flow cytometry, intravital imaging, and an assessment of scRNA-seq repositories. Flow cytometry revealed significantly higher numbers of hematopoietic stem and progenitor cells and megakaryocytes in the murine bone marrow compared to spleens or perfused lungs. Two-photon intravital and light-sheet microscopy, as well as cryosections confirmed these findings. Moreover, ex-vivo cultured megakaryocytes from the bone marrow subject to static or microfluidic platelet production assays had a higher capacity for proplatelet-formation than MKs from other organs. Analysis of previously published murine and human scRNA-seq datasets revealed that only a marginal fraction of megakaryocyte-like cells can be found within the lung and most likely only marginally contribute to platelet production in the steady state.
spellingShingle Asquith, NL
Carminita, E
Camacho, V
Rodriguez-Romera, A
Stegner, D
Freire, D
Becker, IC
Machlus, KR
Khan, A
Italiano, JE
The bone marrow is the primary site of thrombopoiesis
title The bone marrow is the primary site of thrombopoiesis
title_full The bone marrow is the primary site of thrombopoiesis
title_fullStr The bone marrow is the primary site of thrombopoiesis
title_full_unstemmed The bone marrow is the primary site of thrombopoiesis
title_short The bone marrow is the primary site of thrombopoiesis
title_sort bone marrow is the primary site of thrombopoiesis
work_keys_str_mv AT asquithnl thebonemarrowistheprimarysiteofthrombopoiesis
AT carminitae thebonemarrowistheprimarysiteofthrombopoiesis
AT camachov thebonemarrowistheprimarysiteofthrombopoiesis
AT rodriguezromeraa thebonemarrowistheprimarysiteofthrombopoiesis
AT stegnerd thebonemarrowistheprimarysiteofthrombopoiesis
AT freired thebonemarrowistheprimarysiteofthrombopoiesis
AT beckeric thebonemarrowistheprimarysiteofthrombopoiesis
AT machluskr thebonemarrowistheprimarysiteofthrombopoiesis
AT khana thebonemarrowistheprimarysiteofthrombopoiesis
AT italianoje thebonemarrowistheprimarysiteofthrombopoiesis
AT asquithnl bonemarrowistheprimarysiteofthrombopoiesis
AT carminitae bonemarrowistheprimarysiteofthrombopoiesis
AT camachov bonemarrowistheprimarysiteofthrombopoiesis
AT rodriguezromeraa bonemarrowistheprimarysiteofthrombopoiesis
AT stegnerd bonemarrowistheprimarysiteofthrombopoiesis
AT freired bonemarrowistheprimarysiteofthrombopoiesis
AT beckeric bonemarrowistheprimarysiteofthrombopoiesis
AT machluskr bonemarrowistheprimarysiteofthrombopoiesis
AT khana bonemarrowistheprimarysiteofthrombopoiesis
AT italianoje bonemarrowistheprimarysiteofthrombopoiesis