2024 Conference Publication Systems genetics multi-trait analysis of mouse wound healing reveals novel trait interactions with candidate genes characterised by their epidermal expression nicheMuller, N.M., Tan, S.X., Galbraith, J., Zhou, C., Roy, E. and Khosrotehrani, K. (2024). Systems genetics multi-trait analysis of mouse wound healing reveals novel trait interactions with candidate genes characterised by their epidermal expression niche. 53rd Annual ESDR Meeting, Lisbon, Portugal, 4-7 September 2024. Oxford, United Kingdom: Elsevier. doi: 10.1016/j.jid.2024.10.546 |
2024 Journal Article Lymphatic expression of the proliferation marker Ki67 is linked to sentinel node positivity, recurrence and mortality in primary cutaneous melanomaTan, Samuel X., Chong, Sharene, Rowe, Casey, Galbraith, Jack, Dight, James, Zhou, Chenhao, Malt, Maryrose, Smithers, Bernard Mark and Khosrotehrani, Kiarash (2024). Lymphatic expression of the proliferation marker Ki67 is linked to sentinel node positivity, recurrence and mortality in primary cutaneous melanoma. Experimental Dermatology, 33 (3) e15041, 1-7. doi: 10.1111/exd.15041 |
2024 Other Outputs Identifying genetic and epigenetic regulators of skin and hair follicle physiology and disease in mice: a systems-based approach using The Collaborative CrossGalbraith, Jack (2024). Identifying genetic and epigenetic regulators of skin and hair follicle physiology and disease in mice: a systems-based approach using The Collaborative Cross. PhD Thesis, Faculty of Medicine, The University of Queensland. doi: 10.14264/f5962c4 |
2022 Journal Article A murine Kitl allele regulates skin mast cell density across 58 collaborative mouse cross strainsWalker, Graeme J., Galbraith, Jack A., Baz, Betoul, Ferguson, Blake, Handoko, Herlina Y. and Khosrotehrani, Kiarash (2022). A murine Kitl allele regulates skin mast cell density across 58 collaborative mouse cross strains. Journal of Investigative Dermatology, 142 (8), 2275-2280.e4. doi: 10.1016/j.jid.2021.12.032 |
2020 Journal Article Murine dorsal hair type is genetically determined by polymorphisms in candidate genes that influence BMP and WNT signallingVillani, Rehan M., Johnson, Ayaka, Galbraith, Jack A., Baz, Betoul, Handoko, Herlina Y., Walker, Graeme J. and Khosrotehrani, Kiarash (2020). Murine dorsal hair type is genetically determined by polymorphisms in candidate genes that influence BMP and WNT signalling. Experimental Dermatology, 29 (5) exd.14090, 450-461. doi: 10.1111/exd.14090 |