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2021

Journal Article

Stable colony-stimulating factor 1 fusion protein treatment increases hematopoietic stem cell pool and enhances their mobilisation in mice

Kaur, Simranpreet, Sehgal, Anuj, Wu, Andy C., Millard, Susan M., Batoon, Lena, Sandrock, Cheyenne J., Ferrari-Cestari, Michelle, Levesque, Jean-Pierre, Hume, David A., Raggatt, Liza J. and Pettit, Allison R. (2021). Stable colony-stimulating factor 1 fusion protein treatment increases hematopoietic stem cell pool and enhances their mobilisation in mice. Journal of Hematology and Oncology, 14 (1) 3, 1-19. doi: 10.1186/s13045-020-00997-w

Stable colony-stimulating factor 1 fusion protein treatment increases hematopoietic stem cell pool and enhances their mobilisation in mice

2020

Journal Article

Neurogenic heterotopic ossifications develop independently of granulocyte‐colony stimulating factor and neutrophils

Tseng, Hsu‐Wen, Kulina, Irina, Salga, Marjorie, Fleming, Whitney, Vaquette, Cedryck, Genêt, François, Levesque, Jean‐Pierre and Alexander, Kylie A (2020). Neurogenic heterotopic ossifications develop independently of granulocyte‐colony stimulating factor and neutrophils. Journal of Bone and Mineral Research, 35 (11) jbmr.4118, 2242-2251. doi: 10.1002/jbmr.4118

Neurogenic heterotopic ossifications develop independently of granulocyte‐colony stimulating factor and neutrophils

2020

Journal Article

When the nervous system turns skeletal muscles into bones: how to solve the conundrum of neurogenic heterotopic ossification

Alexander, Kylie A., Tseng, Hsu-Wen, Salga, Marjorie, Genêt, François and Levesque, Jean-Pierre (2020). When the nervous system turns skeletal muscles into bones: how to solve the conundrum of neurogenic heterotopic ossification. Current Osteoporosis Reports, 18 (6), 666-676. doi: 10.1007/s11914-020-00636-w

When the nervous system turns skeletal muscles into bones: how to solve the conundrum of neurogenic heterotopic ossification

2020

Journal Article

Bacterial lipopolysaccharides suppress erythroblastic islands and erythropoiesis in the bone marrow in an extrinsic and G- CSF-, IL-1-, and TNF-independent manner

Bisht, Kavita, Tay, Joshua, Wellburn, Rebecca N., McGirr, Crystal, Fleming, Whitney, Nowlan, Bianca, Barbier, Valerie, Winkler, Ingrid G. and Levesque, Jean-Pierre (2020). Bacterial lipopolysaccharides suppress erythroblastic islands and erythropoiesis in the bone marrow in an extrinsic and G- CSF-, IL-1-, and TNF-independent manner. Frontiers in Immunology, 11 583550, 1-16. doi: 10.3389/fimmu.2020.583550

Bacterial lipopolysaccharides suppress erythroblastic islands and erythropoiesis in the bone marrow in an extrinsic and G- CSF-, IL-1-, and TNF-independent manner

2020

Journal Article

Acute myeloid leukemia chemo-resistance is mediated by E-selectin receptor CD162 in bone marrow niches

Erbani, Johanna, Tay, Joshua, Barbier, Valerie, Levesque, Jean-Pierre and Winkler, Ingrid G. (2020). Acute myeloid leukemia chemo-resistance is mediated by E-selectin receptor CD162 in bone marrow niches. Frontiers in Cell and Developmental Biology, 8 668, 668. doi: 10.3389/fcell.2020.00668

Acute myeloid leukemia chemo-resistance is mediated by E-selectin receptor CD162 in bone marrow niches

2020

Journal Article

Endothelial E-selectin inhibition improves acute myeloid leukaemia therapy by disrupting vascular niche-mediated chemoresistance

Barbier, Valerie, Erbani, Johanna, Fiveash, Corrine, Davies, Julie M., Tay, Joshua, Tallack, Michael R., Lowe, Jessica, Magnani, John L., Pattabiraman, Diwakar R., Perkins, Andrew C., Lisle, Jessica, Rasko, John E. J., Levesque, Jean-Pierre and Winkler, Ingrid G. (2020). Endothelial E-selectin inhibition improves acute myeloid leukaemia therapy by disrupting vascular niche-mediated chemoresistance. Nature Communications, 11 (1) 2042, 2042. doi: 10.1038/s41467-020-15817-5

Endothelial E-selectin inhibition improves acute myeloid leukaemia therapy by disrupting vascular niche-mediated chemoresistance

2020

Journal Article

Imaging flow cytometry reveals that granulocyte colony-stimulating factor treatment causes loss of erythroblastic islands in the mouse bone marrow

Tay, Joshua, Bisht, Kavita, McGirr, Crystal, Millard, Susan M., Pettit, Allison R., Winkler, Ingrid G. and Levesque, Jean-Pierre (2020). Imaging flow cytometry reveals that granulocyte colony-stimulating factor treatment causes loss of erythroblastic islands in the mouse bone marrow. Experimental Hematology, 82, 33-42. doi: 10.1016/j.exphem.2020.02.003

Imaging flow cytometry reveals that granulocyte colony-stimulating factor treatment causes loss of erythroblastic islands in the mouse bone marrow

2020

Journal Article

CD27, CD201, FLT3, CD48, and CD150 cell surface staining identifies long-term mouse hematopoietic stem cells in immunodeficient non-obese diabetic severe combined immune deficient derived strains

Nowlan, Bianca, Williams, Elizabeth D., Doran, Michael R. and Levesque, Jean-Pierre (2020). CD27, CD201, FLT3, CD48, and CD150 cell surface staining identifies long-term mouse hematopoietic stem cells in immunodeficient non-obese diabetic severe combined immune deficient derived strains. Haematologica, 105 (1), 71-82. doi: 10.3324/haematol.2018.212910

CD27, CD201, FLT3, CD48, and CD150 cell surface staining identifies long-term mouse hematopoietic stem cells in immunodeficient non-obese diabetic severe combined immune deficient derived strains

2019

Journal Article

Oncostatin M is a novel niche factor that restrains hematopoietic stem cell mobilization in response to G-CSF and CXCR4 antagonist plerixafor

Bisht, Kavita, McGirr, Crystal, Alexander, Kylie A, Fleming, Whitney, Sims, Natalie, Newen, Gerhard Müller-, Winkler, Ingrid G and Levesque, Jean-Pierre (2019). Oncostatin M is a novel niche factor that restrains hematopoietic stem cell mobilization in response to G-CSF and CXCR4 antagonist plerixafor. Blood, 134 (Supplement_1), 4469-4469. doi: 10.1182/blood-2019-127431

Oncostatin M is a novel niche factor that restrains hematopoietic stem cell mobilization in response to G-CSF and CXCR4 antagonist plerixafor

2019

Journal Article

Complement receptor C3aR1 controls neutrophil mobilization following spinal cord injury through physiological antagonism of CXCR2

Brennan, Faith H., Jogia, Trisha, Gillespie, Ellen R., Blomster, Linda V., Li, Xaria X., Nowlan, Bianca, Williams, Gail M., Jacobson, Esther, Osborne, Geoff W., Meunier, Frederic A., Taylor, Stephen M., Campbell, Kate E., MacDonald, Kelli P.A., Levesque, Jean-Pierre, Woodruff, Trent M. and Ruitenberg, Marc J. (2019). Complement receptor C3aR1 controls neutrophil mobilization following spinal cord injury through physiological antagonism of CXCR2. JCI Insight, 4 (9) e98254. doi: 10.1172/jci.insight.98254

Complement receptor C3aR1 controls neutrophil mobilization following spinal cord injury through physiological antagonism of CXCR2

2019

Journal Article

Inhibition of JAK1/2 Tyrosine Kinases Reduces Neurogenic Heterotopic Ossification After Spinal Cord Injury

Alexander, Kylie A., Tseng, Hsu-Wen, Fleming, Whitney, Jose, Beulah, Salga, Marjorie, Kulina, Irina, Millard, Susan M., Pettit, Allison R., Genet, Francois and Levesque, Jean-Pierre (2019). Inhibition of JAK1/2 Tyrosine Kinases Reduces Neurogenic Heterotopic Ossification After Spinal Cord Injury. Frontiers in Immunology, 10 (MAR) 377. doi: 10.3389/fimmu.2019.00377

Inhibition of JAK1/2 Tyrosine Kinases Reduces Neurogenic Heterotopic Ossification After Spinal Cord Injury

2019

Journal Article

HIF prolyl hydroxylase inhibitor FG-4497 enhances mouse hematopoietic stem cell mobilization via VEGFR2/KDR

Bisht, Kavita, Brunck, Marion E., Matsumoto, Taichi, McGirr, Crystal, Nowlan, Bianca, Fleming, Whitney, Keech, Thomas, Magor, Graham, Perkins, Andrew C., Davies, Julie, Walkinshaw, Gail, Flippin, Lee, Winkler, Ingrid G. and Levesque, Jean-Pierre (2019). HIF prolyl hydroxylase inhibitor FG-4497 enhances mouse hematopoietic stem cell mobilization via VEGFR2/KDR. Blood Advances, 3 (3), 406-418. doi: 10.1182/bloodadvances.2018017566

HIF prolyl hydroxylase inhibitor FG-4497 enhances mouse hematopoietic stem cell mobilization via VEGFR2/KDR

2019

Journal Article

Blocking neuromuscular junctions with botulinum toxin A injection enhances neurological heterotopic ossification development after spinal cord injury in mice

Salga, Marjorie, Tseng, Hsu-Wen, Alexander, Kylie A., Jose, Beulah, Vaquette, Cedryck, Debaud, Charlotte, Gatin, Laure, Genêt, François and Levesque, Jean-Pierre (2019). Blocking neuromuscular junctions with botulinum toxin A injection enhances neurological heterotopic ossification development after spinal cord injury in mice. Annals of Physical and Rehabilitation Medicine, 62 (3), 189-192. doi: 10.1016/j.rehab.2019.01.005

Blocking neuromuscular junctions with botulinum toxin A injection enhances neurological heterotopic ossification development after spinal cord injury in mice

2018

Journal Article

Self-repopulating recipient bone marrow resident macrophages promote long-term hematopoietic stem cell engraftment

Kaur, Simranpreet, Raggatt, Liza J., Millard, Susan M., Wu, Andy C., Batoon, Lena, Jacobsen, Rebecca N., Winkler, Ingrid G., MacDonald, Kelli P., Perkins, Andrew C., Hume, David A., Levesque, Jean-Pierre and Pettit, Allison R. (2018). Self-repopulating recipient bone marrow resident macrophages promote long-term hematopoietic stem cell engraftment. Blood, 132 (7), 735-749. doi: 10.1182/blood-2018-01-829663

Self-repopulating recipient bone marrow resident macrophages promote long-term hematopoietic stem cell engraftment

2017

Journal Article

Macrophages Driving Heterotopic Ossification: Convergence of Genetically-Driven and Trauma-Driven Mechanisms

Levesque, Jean-Pierre, Sims, Natalie A., Pettit, Allison R., Alexander, Kylie A., Tseng, Hsu-Wen, Torossian, Frédéric, Genêt, François, Lataillade, Jean-Jacques and Le Bousse-Kerdilès, Marie-Caroline (2017). Macrophages Driving Heterotopic Ossification: Convergence of Genetically-Driven and Trauma-Driven Mechanisms. Journal of Bone and Mineral Research, 33 (2), 365-366. doi: 10.1002/jbmr.3346

Macrophages Driving Heterotopic Ossification: Convergence of Genetically-Driven and Trauma-Driven Mechanisms

2017

Journal Article

Macrophage-derived oncostatin M contributes to human and mouse neurogenic heterotopic ossifications

Torossian, Frédéric, Guerton, Bernadette, Anginot, Adrienne, Alexander, Kylie A., Desterke, Christophe , Soave, Sabrina, Tseng, Hsu-Wen, Arouche, Nassim, Boutin, Laetitia, Kulina, Irina, Salga, Marjorie, Jose, Beulah, Pettit, Allison R., Clay, Denis, Rochet, Nathalie, Vlachos, Erica, Genet, Guillaume, Debaud, Charlotte, Denormandie, Philippe, Genet, François, Sims, Natalie A., Banzet, Sébastien, Levesque, Jean-Pierre, Lataillade, Jean-Jacques and Le Bousse-Kerdilès, Marie-Caroline (2017). Macrophage-derived oncostatin M contributes to human and mouse neurogenic heterotopic ossifications. JCI Insight, 2 (21) e96034. doi: 10.1172/jci.insight.96034

Macrophage-derived oncostatin M contributes to human and mouse neurogenic heterotopic ossifications

2017

Journal Article

CD169+ macrophages are critical for osteoblast maintenance and promote intramembranous and endochondral ossification during bone repair

Batoon, Lena, Millard, Susan Marie, Wullschleger, Martin Eduar, Preda, Corina, Wu, Andy Chiu-Ku, Kaur, Simranpreet, Tseng, Hsu-Wen, Hume, David Arthur, Levesque, Jean-Pierre, Raggatt, Liza Jane and Pettit, Allison Robyn (2017). CD169+ macrophages are critical for osteoblast maintenance and promote intramembranous and endochondral ossification during bone repair. Biomaterials, 196, 51-66. doi: 10.1016/j.biomaterials.2017.10.033

CD169+ macrophages are critical for osteoblast maintenance and promote intramembranous and endochondral ossification during bone repair

2017

Journal Article

Peripheral denervation participates in heterotopic ossification in a spinal cord injury model

Debaud, Charlotte, Salga, Marjorie, Begot, Laurent, Holy, Xavier, Chedik, Malha, de l'Escalopier, Nicolas, Torossian, Frederic, Levesque, Jean-Pierre, Lataillade, Jean-Jacques, Le Bousse-Kerdiles, Marie-Caroline and Genet, Francois (2017). Peripheral denervation participates in heterotopic ossification in a spinal cord injury model. PLoS One, 12 (8) e0182454, e0182454. doi: 10.1371/journal.pone.0182454

Peripheral denervation participates in heterotopic ossification in a spinal cord injury model

2017

Journal Article

HIF-1α-stabilizing agent FG-4497 rescues human CD34+ cell mobilization in response to G-CSF in immunodeficient mice

Nowlan, Bianca, Futrega, Kathryn, Brunck, Marion, Walkinshaw, Gail, Flippin, Lee E., Doran, Michael R. and Levesque, Jean-Pierre (2017). HIF-1α-stabilizing agent FG-4497 rescues human CD34+ cell mobilization in response to G-CSF in immunodeficient mice. Experimental Hematology, 52, 50-55. doi: 10.1016/j.exphem.2017.05.004

HIF-1α-stabilizing agent FG-4497 rescues human CD34+ cell mobilization in response to G-CSF in immunodeficient mice

2017

Journal Article

Engineering a humanized bone organ model in mice to study bone metastases

Martine, Laure C., Holzapfel, Boris M., McGovern, Jacqui A., Wagner, Ferdinand, Quent, Verena M., Hesami, Parisa, Wunner, Felix M., Vaquette, Cedryck, De-Juan-Pardo, Elena M., Brown, Toby D., Nowlan, Bianca, Wu, Dan Jing, Hutmacher, Cosmo Orlando, Moi, Davide, Oussenko, Tatiana, Piccinini, Elia, Zandstra, Peter W., Mazzieri, Roberta, Levesque, Jean-Pierre, Dalton, Paul D., Taubenberger, Anna V. and Hutmacher, Dietmar W. (2017). Engineering a humanized bone organ model in mice to study bone metastases. Nature Protocols, 12 (4), 639-663. doi: 10.1038/nprot.2017.002

Engineering a humanized bone organ model in mice to study bone metastases