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Distinct molecular profiles of skull bone marrow in health and neurological disorders

The bone marrow in the skull is important for shaping immune responses in the brain and meninges, but its molecular makeup among bones and relevance in human diseases remain unclear. Here, we show that the mouse skull has the most distinct transcriptomic profile compared with other bones in states o...

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Autores principales: Kolabas, Zeynep Ilgin, Kuemmerle, Louis B., Perneczky, Robert, Förstera, Benjamin, Ulukaya, Selin, Ali, Mayar, Kapoor, Saketh, Bartos, Laura M., Büttner, Maren, Caliskan, Ozum Sehnaz, Rong, Zhouyi, Mai, Hongcheng, Höher, Luciano, Jeridi, Denise, Molbay, Muge, Khalin, Igor, Deligiannis, Ioannis K., Negwer, Moritz, Roberts, Kenny, Simats, Alba, Carofiglio, Olga, Todorov, Mihail I., Horvath, Izabela, Ozturk, Furkan, Hummel, Selina, Biechele, Gloria, Zatcepin, Artem, Unterrainer, Marcus, Gnörich, Johannes, Roodselaar, Jay, Shrouder, Joshua, Khosravani, Pardis, Tast, Benjamin, Richter, Lisa, Díaz-Marugán, Laura, Kaltenecker, Doris, Lux, Laurin, Chen, Ying, Zhao, Shan, Rauchmann, Boris-Stephan, Sterr, Michael, Kunze, Ines, Stanic, Karen, Kan, Vanessa W.Y., Besson-Girard, Simon, Katzdobler, Sabrina, Palleis, Carla, Schädler, Julia, Paetzold, Johannes C., Liebscher, Sabine, Hauser, Anja E., Gokce, Ozgun, Lickert, Heiko, Steinke, Hanno, Benakis, Corinne, Braun, Christian, Martinez-Jimenez, Celia P., Buerger, Katharina, Albert, Nathalie L., Höglinger, Günter, Levin, Johannes, Haass, Christian, Kopczak, Anna, Dichgans, Martin, Havla, Joachim, Kümpfel, Tania, Kerschensteiner, Martin, Schifferer, Martina, Simons, Mikael, Liesz, Arthur, Krahmer, Natalie, Bayraktar, Omer A., Franzmeier, Nicolai, Plesnila, Nikolaus, Erener, Suheda, Puelles, Victor G., Delbridge, Claire, Bhatia, Harsharan Singh, Hellal, Farida, Elsner, Markus, Bechmann, Ingo, Ondruschka, Benjamin, Brendel, Matthias, Theis, Fabian J., Erturk, Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10443631/
https://www.ncbi.nlm.nih.gov/pubmed/37562402
http://dx.doi.org/10.1016/j.cell.2023.07.009
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author Kolabas, Zeynep Ilgin
Kuemmerle, Louis B.
Perneczky, Robert
Förstera, Benjamin
Ulukaya, Selin
Ali, Mayar
Kapoor, Saketh
Bartos, Laura M.
Büttner, Maren
Caliskan, Ozum Sehnaz
Rong, Zhouyi
Mai, Hongcheng
Höher, Luciano
Jeridi, Denise
Molbay, Muge
Khalin, Igor
Deligiannis, Ioannis K.
Negwer, Moritz
Roberts, Kenny
Simats, Alba
Carofiglio, Olga
Todorov, Mihail I.
Horvath, Izabela
Ozturk, Furkan
Hummel, Selina
Biechele, Gloria
Zatcepin, Artem
Unterrainer, Marcus
Gnörich, Johannes
Roodselaar, Jay
Shrouder, Joshua
Khosravani, Pardis
Tast, Benjamin
Richter, Lisa
Díaz-Marugán, Laura
Kaltenecker, Doris
Lux, Laurin
Chen, Ying
Zhao, Shan
Rauchmann, Boris-Stephan
Sterr, Michael
Kunze, Ines
Stanic, Karen
Kan, Vanessa W.Y.
Besson-Girard, Simon
Katzdobler, Sabrina
Palleis, Carla
Schädler, Julia
Paetzold, Johannes C.
Liebscher, Sabine
Hauser, Anja E.
Gokce, Ozgun
Lickert, Heiko
Steinke, Hanno
Benakis, Corinne
Braun, Christian
Martinez-Jimenez, Celia P.
Buerger, Katharina
Albert, Nathalie L.
Höglinger, Günter
Levin, Johannes
Haass, Christian
Kopczak, Anna
Dichgans, Martin
Havla, Joachim
Kümpfel, Tania
Kerschensteiner, Martin
Schifferer, Martina
Simons, Mikael
Liesz, Arthur
Krahmer, Natalie
Bayraktar, Omer A.
Franzmeier, Nicolai
Plesnila, Nikolaus
Erener, Suheda
Puelles, Victor G.
Delbridge, Claire
Bhatia, Harsharan Singh
Hellal, Farida
Elsner, Markus
Bechmann, Ingo
Ondruschka, Benjamin
Brendel, Matthias
Theis, Fabian J.
Erturk, Ali
author_facet Kolabas, Zeynep Ilgin
Kuemmerle, Louis B.
Perneczky, Robert
Förstera, Benjamin
Ulukaya, Selin
Ali, Mayar
Kapoor, Saketh
Bartos, Laura M.
Büttner, Maren
Caliskan, Ozum Sehnaz
Rong, Zhouyi
Mai, Hongcheng
Höher, Luciano
Jeridi, Denise
Molbay, Muge
Khalin, Igor
Deligiannis, Ioannis K.
Negwer, Moritz
Roberts, Kenny
Simats, Alba
Carofiglio, Olga
Todorov, Mihail I.
Horvath, Izabela
Ozturk, Furkan
Hummel, Selina
Biechele, Gloria
Zatcepin, Artem
Unterrainer, Marcus
Gnörich, Johannes
Roodselaar, Jay
Shrouder, Joshua
Khosravani, Pardis
Tast, Benjamin
Richter, Lisa
Díaz-Marugán, Laura
Kaltenecker, Doris
Lux, Laurin
Chen, Ying
Zhao, Shan
Rauchmann, Boris-Stephan
Sterr, Michael
Kunze, Ines
Stanic, Karen
Kan, Vanessa W.Y.
Besson-Girard, Simon
Katzdobler, Sabrina
Palleis, Carla
Schädler, Julia
Paetzold, Johannes C.
Liebscher, Sabine
Hauser, Anja E.
Gokce, Ozgun
Lickert, Heiko
Steinke, Hanno
Benakis, Corinne
Braun, Christian
Martinez-Jimenez, Celia P.
Buerger, Katharina
Albert, Nathalie L.
Höglinger, Günter
Levin, Johannes
Haass, Christian
Kopczak, Anna
Dichgans, Martin
Havla, Joachim
Kümpfel, Tania
Kerschensteiner, Martin
Schifferer, Martina
Simons, Mikael
Liesz, Arthur
Krahmer, Natalie
Bayraktar, Omer A.
Franzmeier, Nicolai
Plesnila, Nikolaus
Erener, Suheda
Puelles, Victor G.
Delbridge, Claire
Bhatia, Harsharan Singh
Hellal, Farida
Elsner, Markus
Bechmann, Ingo
Ondruschka, Benjamin
Brendel, Matthias
Theis, Fabian J.
Erturk, Ali
author_sort Kolabas, Zeynep Ilgin
collection PubMed
description The bone marrow in the skull is important for shaping immune responses in the brain and meninges, but its molecular makeup among bones and relevance in human diseases remain unclear. Here, we show that the mouse skull has the most distinct transcriptomic profile compared with other bones in states of health and injury, characterized by a late-stage neutrophil phenotype. In humans, proteome analysis reveals that the skull marrow is the most distinct, with differentially expressed neutrophil-related pathways and a unique synaptic protein signature. 3D imaging demonstrates the structural and cellular details of human skull-meninges connections (SMCs) compared with veins. Last, using translocator protein positron emission tomography (TSPO-PET) imaging, we show that the skull bone marrow reflects inflammatory brain responses with a disease-specific spatial distribution in patients with various neurological disorders. The unique molecular profile and anatomical and functional connections of the skull show its potential as a site for diagnosing, monitoring, and treating brain diseases.
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spelling pubmed-104436312023-08-23 Distinct molecular profiles of skull bone marrow in health and neurological disorders Kolabas, Zeynep Ilgin Kuemmerle, Louis B. Perneczky, Robert Förstera, Benjamin Ulukaya, Selin Ali, Mayar Kapoor, Saketh Bartos, Laura M. Büttner, Maren Caliskan, Ozum Sehnaz Rong, Zhouyi Mai, Hongcheng Höher, Luciano Jeridi, Denise Molbay, Muge Khalin, Igor Deligiannis, Ioannis K. Negwer, Moritz Roberts, Kenny Simats, Alba Carofiglio, Olga Todorov, Mihail I. Horvath, Izabela Ozturk, Furkan Hummel, Selina Biechele, Gloria Zatcepin, Artem Unterrainer, Marcus Gnörich, Johannes Roodselaar, Jay Shrouder, Joshua Khosravani, Pardis Tast, Benjamin Richter, Lisa Díaz-Marugán, Laura Kaltenecker, Doris Lux, Laurin Chen, Ying Zhao, Shan Rauchmann, Boris-Stephan Sterr, Michael Kunze, Ines Stanic, Karen Kan, Vanessa W.Y. Besson-Girard, Simon Katzdobler, Sabrina Palleis, Carla Schädler, Julia Paetzold, Johannes C. Liebscher, Sabine Hauser, Anja E. Gokce, Ozgun Lickert, Heiko Steinke, Hanno Benakis, Corinne Braun, Christian Martinez-Jimenez, Celia P. Buerger, Katharina Albert, Nathalie L. Höglinger, Günter Levin, Johannes Haass, Christian Kopczak, Anna Dichgans, Martin Havla, Joachim Kümpfel, Tania Kerschensteiner, Martin Schifferer, Martina Simons, Mikael Liesz, Arthur Krahmer, Natalie Bayraktar, Omer A. Franzmeier, Nicolai Plesnila, Nikolaus Erener, Suheda Puelles, Victor G. Delbridge, Claire Bhatia, Harsharan Singh Hellal, Farida Elsner, Markus Bechmann, Ingo Ondruschka, Benjamin Brendel, Matthias Theis, Fabian J. Erturk, Ali Cell Resource The bone marrow in the skull is important for shaping immune responses in the brain and meninges, but its molecular makeup among bones and relevance in human diseases remain unclear. Here, we show that the mouse skull has the most distinct transcriptomic profile compared with other bones in states of health and injury, characterized by a late-stage neutrophil phenotype. In humans, proteome analysis reveals that the skull marrow is the most distinct, with differentially expressed neutrophil-related pathways and a unique synaptic protein signature. 3D imaging demonstrates the structural and cellular details of human skull-meninges connections (SMCs) compared with veins. Last, using translocator protein positron emission tomography (TSPO-PET) imaging, we show that the skull bone marrow reflects inflammatory brain responses with a disease-specific spatial distribution in patients with various neurological disorders. The unique molecular profile and anatomical and functional connections of the skull show its potential as a site for diagnosing, monitoring, and treating brain diseases. Cell Press 2023-08-17 /pmc/articles/PMC10443631/ /pubmed/37562402 http://dx.doi.org/10.1016/j.cell.2023.07.009 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Resource
Kolabas, Zeynep Ilgin
Kuemmerle, Louis B.
Perneczky, Robert
Förstera, Benjamin
Ulukaya, Selin
Ali, Mayar
Kapoor, Saketh
Bartos, Laura M.
Büttner, Maren
Caliskan, Ozum Sehnaz
Rong, Zhouyi
Mai, Hongcheng
Höher, Luciano
Jeridi, Denise
Molbay, Muge
Khalin, Igor
Deligiannis, Ioannis K.
Negwer, Moritz
Roberts, Kenny
Simats, Alba
Carofiglio, Olga
Todorov, Mihail I.
Horvath, Izabela
Ozturk, Furkan
Hummel, Selina
Biechele, Gloria
Zatcepin, Artem
Unterrainer, Marcus
Gnörich, Johannes
Roodselaar, Jay
Shrouder, Joshua
Khosravani, Pardis
Tast, Benjamin
Richter, Lisa
Díaz-Marugán, Laura
Kaltenecker, Doris
Lux, Laurin
Chen, Ying
Zhao, Shan
Rauchmann, Boris-Stephan
Sterr, Michael
Kunze, Ines
Stanic, Karen
Kan, Vanessa W.Y.
Besson-Girard, Simon
Katzdobler, Sabrina
Palleis, Carla
Schädler, Julia
Paetzold, Johannes C.
Liebscher, Sabine
Hauser, Anja E.
Gokce, Ozgun
Lickert, Heiko
Steinke, Hanno
Benakis, Corinne
Braun, Christian
Martinez-Jimenez, Celia P.
Buerger, Katharina
Albert, Nathalie L.
Höglinger, Günter
Levin, Johannes
Haass, Christian
Kopczak, Anna
Dichgans, Martin
Havla, Joachim
Kümpfel, Tania
Kerschensteiner, Martin
Schifferer, Martina
Simons, Mikael
Liesz, Arthur
Krahmer, Natalie
Bayraktar, Omer A.
Franzmeier, Nicolai
Plesnila, Nikolaus
Erener, Suheda
Puelles, Victor G.
Delbridge, Claire
Bhatia, Harsharan Singh
Hellal, Farida
Elsner, Markus
Bechmann, Ingo
Ondruschka, Benjamin
Brendel, Matthias
Theis, Fabian J.
Erturk, Ali
Distinct molecular profiles of skull bone marrow in health and neurological disorders
title Distinct molecular profiles of skull bone marrow in health and neurological disorders
title_full Distinct molecular profiles of skull bone marrow in health and neurological disorders
title_fullStr Distinct molecular profiles of skull bone marrow in health and neurological disorders
title_full_unstemmed Distinct molecular profiles of skull bone marrow in health and neurological disorders
title_short Distinct molecular profiles of skull bone marrow in health and neurological disorders
title_sort distinct molecular profiles of skull bone marrow in health and neurological disorders
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10443631/
https://www.ncbi.nlm.nih.gov/pubmed/37562402
http://dx.doi.org/10.1016/j.cell.2023.07.009
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