Metadata
Title
Expert publications
Category
general
UUID
4d62aedc22494aeab0d780decaa0deae
Source URL
https://about.uq.edu.au/experts-publication/7452/all
Parent URL
https://about.uq.edu.au/experts/7452
Crawl Time
2026-03-11T08:05:43+00:00
Rendered Raw Markdown
# Expert publications

**Source**: https://about.uq.edu.au/experts-publication/7452/all
**Parent**: https://about.uq.edu.au/experts/7452

[All
(154)](https://about.uq.edu.au/experts-publication/7452/all)
[Journal Article
(87)](https://about.uq.edu.au/experts-publication/7452/4748)
[Other Outputs
(1)](https://about.uq.edu.au/experts-publication/7452/4749)
[Conference Publication
(61)](https://about.uq.edu.au/experts-publication/7452/4751)
[Book Chapter
(5)](https://about.uq.edu.au/experts-publication/7452/4752)

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| 2025  Conference Publication Endotoxemia causes inflammatory bowel diseases-associated anemia and inflammation via TLR4 expressed by CD169+ macrophages Bisht, Kavita, Zhong, Ruiqing, An, Yoon-Kyo, Shatunova, Svetlana, Wang, Ran, Barbier, Valerie, Tang, Yifu, Giri, Rabina, Amiss, Anna, Alexander, Kylie, Millard, Susan, Pettit, Allison, Winkler, Ingrid, Begun, Jakob and Levesque, Jean-Pierre (2025). Endotoxemia causes inflammatory bowel diseases-associated anemia and inflammation via TLR4 expressed by CD169+ macrophages. 54th Annual Scientific Meeting of the ISEH - International Society for Experimental Hematology, Kumamoto, Japan, 24-27 September 2025. Amsterdam, Netherlands: Elsevier. doi: 10.1016/j.exphem.2025.105131 [Endotoxemia causes inflammatory bowel diseases-associated anemia and inflammation via TLR4 expressed by CD169+ macrophages](https://espace.library.uq.edu.au/view/UQ:ed041f3) |
| 2025  Conference Publication Bone marrow macrophage resilience is associated with bone marrow recovery and hematopoiesis postchemotherapy injury Kaur, Simranpreet, Millard, Susan, Choo, Fang-Ming, Mate, Shrutika, Yu, Shuiyuan, Guo, Jintao and Pettit, Allison (2025). Bone marrow macrophage resilience is associated with bone marrow recovery and hematopoiesis postchemotherapy injury. 54th Annual Scientific Meeting of the ISEH - International Society for Experimental Hematology, Kumamoto, Japan, 24-27 September 2025. Amsterdam, Netherlands: Elsevier. doi: 10.1016/j.exphem.2025.105118 [Bone marrow macrophage resilience is associated with bone marrow recovery and hematopoiesis postchemotherapy injury](https://espace.library.uq.edu.au/view/UQ:99875ec) |
| 2025  Journal Article Correction: Mutation in the rat interleukin 34 gene impacts macrophage development, homeostasis and inflammation Huang, Stephen, Patkar, Omkar L., Schulze, Sarah, Carter-Cusack, Dylan, Millard, Susan, Ranpura, Ginell, Green, Emma K., Maxwell, Emma, Kanesarajah, Jeeva, Cowin, Gary, Stimson, Damion, Kurniawan, Nyoman D, Keshvari, Sahar, Allavena, Rachel, Pettit, Allison R., Irvine, Katharine M. and Hume, David A. (2025). Correction: Mutation in the rat interleukin 34 gene impacts macrophage development, homeostasis and inflammation. Life Science Alliance, 8 (10) e202503435, e202503435. doi: 10.26508/lsa.202503435 [Correction: Mutation in the rat interleukin 34 gene impacts macrophage development, homeostasis and inflammation](https://espace.library.uq.edu.au/view/UQ:c4e9db0) |
| 2025  Journal Article Mutation in the rat interleukin 34 gene impacts macrophage development, homeostasis, and inflammation Huang, Stephen, Patkar, Omkar L., Schulze, Sarah, Carter-Cusack, Dylan, Millard, Susan, Ranpura, Ginell, Green, Emma K., Maxwell, Emma, Kanesarajah, Jeeva, Cowin, Gary, Stimson, Damion, Kurniawan, Nyoman D., Keshvari, Sahar, Allavena, Rachel, Pettit, Allison R., Irvine, Katharine M. and Hume, David A. (2025). Mutation in the rat interleukin 34 gene impacts macrophage development, homeostasis, and inflammation. Life Science Alliance, 8 (9) e202503264, e202503264. doi: 10.26508/lsa.202503264 [Mutation in the rat interleukin 34 gene impacts macrophage development, homeostasis, and inflammation](https://espace.library.uq.edu.au/view/UQ:2026764) |
| 2025  Journal Article A comprehensive protocol for simplified mouse DRG fixation, processing and F4/80 immunohistochemistry: overcoming common challenges Tay, Nicolette, Alshammari, Ammar, Kaur, Simranpreet, Pettit, Allison, Mu, Erica, Reid, Anna, Winkler, Ingrid, Vetter, Irina and Starobova, Hana (2025). A comprehensive protocol for simplified mouse DRG fixation, processing and F4/80 immunohistochemistry: overcoming common challenges. Journal of Neuroscience Methods, 418 110434, 1-13. doi: 10.1016/j.jneumeth.2025.110434 [A comprehensive protocol for simplified mouse DRG fixation, processing and F4/80 immunohistochemistry: overcoming common challenges](https://espace.library.uq.edu.au/view/UQ:50f70b0) |
| 2024  Conference Publication Endotoxemia As Possible Cause of Inflammatory Bowel Diseases-Associated Anemia Bisht, Kavita, An, Yoon-Kyo, Shatunova, Svetlana, Wang, Ran, Barbier, Valerie, Giri, Rabina, Amiss, Anna, Tang, Yifu, Alexander, Kylie, Millard, Susan, Winkler, Ingrid G., Pettit, Allison, Begun, Jakob and Levesque, Jean-Pierre (2024). Endotoxemia As Possible Cause of Inflammatory Bowel Diseases-Associated Anemia. 66th ASH Annual Meeting, San Diego, CA United States, 7-10 December 2024. Washington, DC United States: American Society of Hematology. doi: 10.1182/blood-2024-193349 [Endotoxemia As Possible Cause of Inflammatory Bowel Diseases-Associated Anemia](https://espace.library.uq.edu.au/view/UQ:a890ca1) |
| 2024  Conference Publication An Inactivating Mutation in Rat IL-34 Reveals Redundant and Nonredundant Functions of CSF1-IL-34 Signalling in Homeostasis and Inflammation Huang, Stephen, Patkar, Omkar, Schulze, Sarah, Carter-Cusack, Dylan, Ranpura, Ginell, Maxwell, Emma, Keshvari, Sahar, Millard, Susan, Cowin, Gary, Kurniawan, Nyoman, Pettit, Allison, Irvine, Katharine M. and Hume, David A. (2024). An Inactivating Mutation in Rat IL-34 Reveals Redundant and Nonredundant Functions of CSF1-IL-34 Signalling in Homeostasis and Inflammation. 66th ASH Annual Meeting, San Diego, CA, United States, 7-10 December 2024. Washington, DC, United States: American Society of Hematology. doi: 10.1182/blood-2024-208881 [An Inactivating Mutation in Rat IL-34 Reveals Redundant and Nonredundant Functions of CSF1-IL-34 Signalling in Homeostasis and Inflammation](https://espace.library.uq.edu.au/view/UQ:de36345) |
| 2024  Journal Article Induction of osteoblast apoptosis stimulates macrophage efferocytosis and paradoxical bone formation Batoon, Lena, Koh, Amy Jean, Millard, Susan Marie, Grewal, Jobanpreet, Choo, Fang Ming, Kannan, Rahasudha, Kinnaird, Aysia, Avey, Megan, Teslya, Tatyana, Pettit, Allison Robyn, McCauley, Laurie K. and Roca, Hernan (2024). Induction of osteoblast apoptosis stimulates macrophage efferocytosis and paradoxical bone formation. Bone Research, 12 (1) 43, 1-14. doi: 10.1038/s41413-024-00341-9 [Induction of osteoblast apoptosis stimulates macrophage efferocytosis and paradoxical bone formation](https://espace.library.uq.edu.au/view/UQ:c947e3f) |
| 2024  Journal Article Relative contributions of osteal macrophages and osteoclasts to postnatal bone development in CSF1R-deficient rats and phenotype rescue following wild-type bone marrow cell transfer Batoon, Lena, Keshvari, Sahar, Irvine, Katharine M., Ho, Eileen, Caruso, Melanie, Patkar, Omkar L., Sehgal, Anuj, Millard, Susan M., Hume, David A. and Pettit, Allison R. (2024). Relative contributions of osteal macrophages and osteoclasts to postnatal bone development in CSF1R-deficient rats and phenotype rescue following wild-type bone marrow cell transfer. Journal of Leukocyte Biology, 116 (4), 753-765. doi: 10.1093/jleuko/qiae077 [Relative contributions of osteal macrophages and osteoclasts to postnatal bone development in CSF1R-deficient rats and phenotype rescue following wild-type bone marrow cell transfer](https://espace.library.uq.edu.au/view/UQ:61ba31d) |
| 2024  Journal Article Reversible expansion of tissue macrophages in response to macrophage colony-stimulating factor (CSF1) transforms systemic lipid and carbohydrate metabolism Keshvari, Sahar, Masson, Jesse J.R., Ferrari-Cestari, Michelle, Bodea, Liviu-Gabriel, Nooru-Mohamed, Fathima, Tse, Brian W.C., Sokolowski, Kamil A., Batoon, Lena, Patkar, Omkar L., Sullivan, Mitchell A., Ebersbach, Hilmar, Stutz, Cian, Parton, Robert G., Summers, Kim M., Pettit, Allison R., Hume, David A. and Irvine, Katharine M. (2024). Reversible expansion of tissue macrophages in response to macrophage colony-stimulating factor (CSF1) transforms systemic lipid and carbohydrate metabolism. American Journal of Physiology-Endocrinology and Metabolism, 326 (2), E149-E165. doi: 10.1152/ajpendo.00347.2023 [Reversible expansion of tissue macrophages in response to macrophage colony-stimulating factor (CSF1) transforms systemic lipid and carbohydrate metabolism](https://espace.library.uq.edu.au/view/UQ:ecc3c30) |
| 2023  Journal Article Macrophage heterogeneity in the single cell era: facts and artefacts Hume, David A., Millard, Susan M. and Pettit, Allison R. (2023). Macrophage heterogeneity in the single cell era: facts and artefacts. Blood Journal, 142 (16), 1339-1347. doi: 10.1182/blood.2023020597 [Macrophage heterogeneity in the single cell era: facts and artefacts](https://espace.library.uq.edu.au/view/UQ:0cc571d) |
| 2023  Conference Publication 1511 Macrophages regulate endothelial progenitors’ quiescence and self-renewal during homeostasis and cutaneous wound healing via paracrine signaling Sim, S., Kaur, S., Styke, C., Millard, S., Blumenthal, A., Pettit, A. and Khosrotehrani, K. (2023). 1511 Macrophages regulate endothelial progenitors’ quiescence and self-renewal during homeostasis and cutaneous wound healing via paracrine signaling. 1st International Societies for Investigative Dermatology Meeting, Tokyo, Japan, 10 - 13 May 2023. Oxford, United Kingdom: Elsevier. doi: 10.1016/j.jid.2023.03.1528 [1511 Macrophages regulate endothelial progenitors’ quiescence and self-renewal during homeostasis and cutaneous wound healing via paracrine signaling](https://espace.library.uq.edu.au/view/UQ:b0535eb) |
| 2023  Conference Publication Mechanisms underlying the rescue of postnatal bone development in CSF1R-deficient rats following wild-type bone marrow cell transfer Batoon, Lena, Keshvari, Sahar, Irvine, Katharine, Caruso, Melanie, Patkar, Omkar, Sehgal, Anuj, Millard, Susan, Hume, David and Pettit, Allison (2023). Mechanisms underlying the rescue of postnatal bone development in CSF1R-deficient rats following wild-type bone marrow cell transfer. 2022 Annual Meeting of the American Society for Bone and Mineral Research, Austin, TX, United States, 9-12 September 2022. Hoboken, NJ, United States: Wiley-Blackwell. [Mechanisms underlying the rescue of postnatal bone development in CSF1R-deficient rats following wild-type bone marrow cell transfer](https://espace.library.uq.edu.au/view/UQ:a477587) |
| 2023  Conference Publication HSC Niche Molecular Deconvolution Toward Improved Understanding of Intrinsic And Extrinsic HSC Regulation Millard, Susan, Kaur, Simranpreet, Choo, Fang Ming and Pettit, Allison (2023). HSC Niche Molecular Deconvolution Toward Improved Understanding of Intrinsic And Extrinsic HSC Regulation. 52nd Annual Meeting of the International-Society-for-Experimental-Hematology (ISEH), New York, NY United States, 17-20 August 2023. Philadelphia, PA United States: Elsevier. [HSC Niche Molecular Deconvolution Toward Improved Understanding of Intrinsic And Extrinsic HSC Regulation](https://espace.library.uq.edu.au/view/UQ:2296981) |
| 2023  Conference Publication HSC Niche Molecular Deconvolution Toward Improved Understanding Of Intrinsic And Extrinsic HSC Regulation Millard, Susan, Kaur, Simranpreet, Choo, Fang Ming and Pettit, Allison (2023). HSC Niche Molecular Deconvolution Toward Improved Understanding Of Intrinsic And Extrinsic HSC Regulation. 2023 Annual Scientific Meeting of the ISEH – International Society for Experimental Hematology, New York, NY United States, 17-20 August 2023. Philadelphia, PA United States: Elsevier. doi: 10.1016/j.exphem.2023.06.259 [HSC Niche Molecular Deconvolution Toward Improved Understanding Of Intrinsic And Extrinsic HSC Regulation](https://espace.library.uq.edu.au/view/UQ:8c52308) |
| 2022  Journal Article Interleukin‐1 is overexpressed in injured muscles following spinal cord injury and promotes neurogenic heterotopic ossification Tseng, Hsu‐Wen, Kulina, Irina, Girard, Dorothée, Gueguen, Jules, Vaquette, Cedryck, Salga, Marjorie, Fleming, Whitney, Jose, Beulah, Millard, Susan M., Pettit, Allison R., Schroder, Kate, Thomas, Gethin, Wheeler, Lawrie, Genêt, François, Banzet, Sébastien, Alexander, Kylie A. and Levesque, Jean‐Pierre (2022). Interleukin‐1 is overexpressed in injured muscles following spinal cord injury and promotes neurogenic heterotopic ossification. Journal of Bone and Mineral Research, 37 (3), 531-546. doi: 10.1002/jbmr.4482 [Interleukin‐1 is overexpressed in injured muscles following spinal cord injury and promotes neurogenic heterotopic ossification](https://espace.library.uq.edu.au/view/UQ:95ca46d) |
| 2022  Journal Article Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles Tseng, Hsu-Wen, Girard, Dorothée, Alexander, Kylie A., Millard, Susan M., Torossian, Frédéric, Anginot, Adrienne, Fleming, Whitney, Gueguen, Jules, Goriot, Marie-Emmanuelle, Clay, Denis, Jose, Beulah, Nowlan, Bianca, Pettit, Allison R., Salga, Marjorie, Genêt, François, Bousse-Kerdilès, Marie-Caroline Le, Banzet, Sébastien and Lévesque, Jean-Pierre (2022). Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles. Bone Research, 10 (1) 22, 22. doi: 10.1038/s41413-022-00188-y [Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles](https://espace.library.uq.edu.au/view/UQ:3b75d94) |
| 2022  Journal Article Therapeutic potential of macrophage colony-stimulating factor (CSF1) in chronic liver disease Keshvari, Sahar, Genz, Berit, Teakle, Ngari, Caruso, Melanie, Cestari, Michelle F., Patkar, Omkar L., Tse, Brian W. C., Sokolowski, Kamil A., Ebersbach, Hilmar, Jascur, Julia, MacDonald, Kelli P. A., Miller, Gregory, Ramm, Grant A., Pettit, Allison R., Clouston, Andrew D., Powell, Elizabeth E., Hume, David A. and Irvine, Katharine M. (2022). Therapeutic potential of macrophage colony-stimulating factor (CSF1) in chronic liver disease. Disease Models and Mechanisms, 15 (4) dmm049387, 1-15. doi: 10.1242/dmm.049387 [Therapeutic potential of macrophage colony-stimulating factor (CSF1) in chronic liver disease](https://espace.library.uq.edu.au/view/UQ:a2742c4) |
| 2022  Conference Publication Appearances Can Be Deceiving: Macrophage Fragmentation Confounds Ex Vivo Haematopoietic Tissue Analysis Pettit, Allison R., Batoon, Lena, Heng, Ostyn, Hume, David, Irvine, Kate, Kaur, Simranpreet, Levesque, Jean-Pierre, Magor, Graham, Millard, Susan, Noll, Jacqueline, Perkins, Andrew, Raggatt, Liza, Sandrock, Cheyenne, Sehgal, Anuj, Sester, David, Opperman, Khatora Shanae, Summers, Kim, Wu, Andy and Zannettino, Andrew (2022). Appearances Can Be Deceiving: Macrophage Fragmentation Confounds Ex Vivo Haematopoietic Tissue Analysis. 51st Annual Scientific Meeting of the ISEH - International Society for Experimental Hematology, Edinburgh, United Kingdom, 1-4 September 2022. Philadelphia, PA United States: Elsevier. doi: 10.1016/j.exphem.2022.07.018 [Appearances Can Be Deceiving: Macrophage Fragmentation Confounds Ex Vivo Haematopoietic Tissue Analysis](https://espace.library.uq.edu.au/view/UQ:9526fca) |
| 2021  Journal Article Fragmentation of tissue-resident macrophages during isolation confounds analysis of single-cell preparations from mouse hematopoietic tissues Millard, Susan M., Heng, Ostyn, Opperman, Khatora S., Sehgal, Anuj, Irvine, Katharine M., Kaur, Simranpreet, Sandrock, Cheyenne J., Wu, Andy C., Magor, Graham W., Batoon, Lena, Perkins, Andrew C., Noll, Jacqueline E., Zannettino, Andrew C.W., Sester, David P., Levesque, Jean-Pierre, Hume, David A., Raggatt, Liza J., Summers, Kim M. and Pettit, Allison R. (2021). Fragmentation of tissue-resident macrophages during isolation confounds analysis of single-cell preparations from mouse hematopoietic tissues. Cell Reports, 37 (8) 110058, 110058. doi: 10.1016/j.celrep.2021.110058 [Fragmentation of tissue-resident macrophages during isolation confounds analysis of single-cell preparations from mouse hematopoietic tissues](https://espace.library.uq.edu.au/view/UQ:00ad4d9) |