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2026

Journal Article

Correction: Berezowski et al. Biomarkers in Renal Cell Carcinoma: A Systematic Review and Immunohistochemical Validation Study. Cancers 2025, 17, 2588

Berezowski, Brett, Boothe, Robert, Chaplin, Billy, Del Vecchio, Sharon J., Fares, Zakariya, Humphries, Tyrone L. R., Ng, Keng Lim, Noonan, Taylor, Samaratunga, Hemamali, Urquhart, Aaron, Vesey, David A., Wood, Simon T., Gobe, Glenda C. and Ellis, Robert J. (2026). Correction: Berezowski et al. Biomarkers in Renal Cell Carcinoma: A Systematic Review and Immunohistochemical Validation Study. Cancers 2025, 17, 2588. Cancers, 18 (10) 1549, 1549. doi: 10.3390/cancers18101549

Correction: Berezowski et al. Biomarkers in Renal Cell Carcinoma: A Systematic Review and Immunohistochemical Validation Study. Cancers 2025, 17, 2588

2025

Journal Article

Biomarkers in renal cell carcinoma: a systematic review and immunohistochemical validation study

Berezowski, Brett, Boothe, Robert, Chaplin, Billy, Del Vecchio, Sharon J., Fares, Zakariya, Humphries, Tyrone L. R., Ng, Keng Lim, Noonan, Taylor, Samaratunga, Hemamali, Urquhart, Aaron, Vesey, David A., Wood, Simon T., Gobe, Glenda C. and Ellis, Robert J. (2025). Biomarkers in renal cell carcinoma: a systematic review and immunohistochemical validation study. Cancers, 17 (15) 2588, 2588-15. doi: 10.3390/cancers17152588

Biomarkers in renal cell carcinoma: a systematic review and immunohistochemical validation study

2025

Other Outputs

Exploring magnetic resonance for differentiating between progressive and non-progressive chronic kidney disease

Humphries, Tyrone (2025). Exploring magnetic resonance for differentiating between progressive and non-progressive chronic kidney disease. PhD Thesis, Faculty of Medicine, The University of Queensland. doi: 10.14264/e60dcf2

Exploring magnetic resonance for differentiating between progressive and non-progressive chronic kidney disease

2025

Journal Article

Head-to-head comparison of tyrosine kinase inhibitors in renal cell carcinoma using patient-derived cell culture

Urquhart, Aaron J., Glass, Christian H., Humphries, Tyrone L. R., Kassianos, Andrew J., Vesey, David A., Wood, Simon T., Gobe, Glenda C. and Ellis, Robert J. (2025). Head-to-head comparison of tyrosine kinase inhibitors in renal cell carcinoma using patient-derived cell culture. Personalized Medicine, 22 (2), 83-91. doi: 10.1080/17410541.2025.2473303

Head-to-head comparison of tyrosine kinase inhibitors in renal cell carcinoma using patient-derived cell culture

2025

Journal Article

Metabolite pathway alterations identified by magnetic resonance metabolomics in a proximal tubular epithelial cell line treated with TGF‐β1

Humphries, Tyrone L. R., Lee, Soobin, Urquhart, Aaron J., Vesey, David A., Micallef, Aaron S., Winterford, Clay, Kassianos, Andrew J., Galloway, Graham J., Francis, Ross S. and Gobe, Glenda C. (2025). Metabolite pathway alterations identified by magnetic resonance metabolomics in a proximal tubular epithelial cell line treated with TGF‐β1. Physiological Reports, 13 (4) e70249, e70249. doi: 10.14814/phy2.70249

Metabolite pathway alterations identified by magnetic resonance metabolomics in a proximal tubular epithelial cell line treated with TGF‐β1

2024

Journal Article

Identifying biochemical changes in the kidney using proton nuclear magnetic resonance in an adenine diet chronic kidney disease mouse model

Humphries, Tyrone L. R., Gobe, Glenda C., Urquhart, Aaron J., Ellis, Robert J., Galloway, Graham J., Vesey, David A. and Francis, Ross S. (2024). Identifying biochemical changes in the kidney using proton nuclear magnetic resonance in an adenine diet chronic kidney disease mouse model. NMR in Biomedicine, 37 (12) e5257, e5257. doi: 10.1002/nbm.5257

Identifying biochemical changes in the kidney using proton nuclear magnetic resonance in an adenine diet chronic kidney disease mouse model

2024

Conference Publication

Magnetic resonance spectroscopy in chronic kidney disease: the DISCERN-CKD study

Humphries, Tyrone, Dong, Xin, Watson, Julia, Mountford, Carolyn, Ellis, Robert, Vesey, David, Galloway, Graham, Gobe, Glenda and Francis, Ross (2024). Magnetic resonance spectroscopy in chronic kidney disease: the DISCERN-CKD study. 59th Annual Scientific Meeting of the Australian and New Zealand Society of Nephrology (ANZSN), Adelaide, SA, Australia, 31 August–4 September 2024. Richmond, VIC, Australia: John Wiley & Sons. doi: 10.1111/nep.14361

Magnetic resonance spectroscopy in chronic kidney disease: the DISCERN-CKD study

2023

Conference Publication

Evaluating kidney fibrosis using in vivo 1h magnetic resonance spectroscopy in patients with chronic kidney disease and live donors

Humphries, Tyrone, Dong, Xin, Watson, Julia, Mountford, Carolyn, Ellis, Robert, Vesey, David, Galloway, Graham, Gobe, Glenda and Francis, Ross (2023). Evaluating kidney fibrosis using in vivo 1h magnetic resonance spectroscopy in patients with chronic kidney disease and live donors. 58th Annual Scientific Meeting of the Australian and New Zealand Society of Nephrology (ANZSN), Christchurch, New Zealand, 4–6 September 2023. Richmond, VIC Australia: John Wiley & Sons.

Evaluating kidney fibrosis using in vivo 1h magnetic resonance spectroscopy in patients with chronic kidney disease and live donors

2023

Conference Publication

An in vitro model of kidney fibrogenesis identifies altered metabolite pathways in proximal tubular epithelial cells identified by in-cell 1H-nuclear magnetic resonance spectroscopy

Humphries, Tyrone, Lee, Soobin, Urquhart, Aaron, Vesey, David, Micallef, Aaron, Winterford, Clay, Kassianos, Andrew, Galloway, Graham, Francis, Ross and Gobe, Glenda (2023). An in vitro model of kidney fibrogenesis identifies altered metabolite pathways in proximal tubular epithelial cells identified by in-cell 1H-nuclear magnetic resonance spectroscopy. 58th Annual Scientific Meeting of the Australian and New Zealand Society of Nephrology (ANZSN), Christchurch, New Zealand, 4–6 September 2023. Richmond, VIC Australia: John Wiley and Sons. doi: 10.1111/nep.14218

An in vitro model of kidney fibrogenesis identifies altered metabolite pathways in proximal tubular epithelial cells identified by in-cell 1H-nuclear magnetic resonance spectroscopy

2023

Journal Article

Isovalerylglycine and α-Ketobutyrate are novel biomarkers that discriminate clear cell renal cell carcinoma in biopsy specimens using two-dimensional magnetic resonance spectroscopy

Urquhart, Aaron J., Del Vecchio, Sharon J., Lukas, Darren, Ellis, Robert J., Humphries, Tyrone L.R., Ng, Keng Lim, Samaratunga, Hemamali, Galloway, Graham J., Gobe, Glenda C., Wood, Simon T. and Mountford, Carolyn E. (2023). Isovalerylglycine and α-Ketobutyrate are novel biomarkers that discriminate clear cell renal cell carcinoma in biopsy specimens using two-dimensional magnetic resonance spectroscopy. Advances in Biomarker Sciences and Technology, 5, 68-75. doi: 10.1016/j.abst.2023.08.001

Isovalerylglycine and α-Ketobutyrate are novel biomarkers that discriminate clear cell renal cell carcinoma in biopsy specimens using two-dimensional magnetic resonance spectroscopy

2023

Conference Publication

Changes in energy metabolism in the kidney with tubulointerstitial fibrosis: an ex vivo whole tissue 2d-cosy approach

Humphries, Tyrone, Gobe, Glenda, Urquhart, Aaron, Vesey, David, Ellis, Robert, Galloway, Graham and Francis, Ross (2023). Changes in energy metabolism in the kidney with tubulointerstitial fibrosis: an ex vivo whole tissue 2d-cosy approach. 60th ERA Congress, Milan, Italy, 15-18 June 2023. Oxford, United Kingdom: Oxford University Press. doi: 10.1093/ndt/gfad063c_4344

Changes in energy metabolism in the kidney with tubulointerstitial fibrosis: an ex vivo whole tissue 2d-cosy approach

2023

Journal Article

Identifying disease progression in chronic kidney disease using proton magnetic resonance spectroscopy

Humphries, Tyrone L.R., Vesey, David A., Galloway, Graham J., Gobe, Glenda C. and Francis, Ross S. (2023). Identifying disease progression in chronic kidney disease using proton magnetic resonance spectroscopy. Progress in Nuclear Magnetic Resonance Spectroscopy, 134-135, 52-64. doi: 10.1016/j.pnmrs.2023.04.001

Identifying disease progression in chronic kidney disease using proton magnetic resonance spectroscopy

2022

Conference Publication

Identifying biochemical changes in the kidney using nuclear magnetic resonance in an adenine-diet chronic kidney disease mouse model

Humphries, Tyrone, Gobe, Glenda, Urquhart, Aaron, Galloway, Graham, Vesey, David and Francis, Ross (2022). Identifying biochemical changes in the kidney using nuclear magnetic resonance in an adenine-diet chronic kidney disease mouse model. 57th Annual Scientific Meeting of the Australian and New Zealand Society of Nephrology (ANZSN), 0nline, 17–19 October 2022. Richmond, VIC, Australia: John Wiley & Sons. doi: 10.1111/nep.14099

Identifying biochemical changes in the kidney using nuclear magnetic resonance in an adenine-diet chronic kidney disease mouse model

2021

Journal Article

PAR2-induced tissue factor synthesis by primary cultures of human kidney tubular epithelial cells is modified by glucose availability

Humphries, Tyrone L. R., Shen, Kunyu, Iyer, Abishek, Johnson, David W., Gobe, Glenda C., Nikolic-Paterson, David, Fairlie, David P. and Vesey, David A. (2021). PAR2-induced tissue factor synthesis by primary cultures of human kidney tubular epithelial cells is modified by glucose availability. International Journal of Molecular Sciences, 22 (14) 7532, 1-12. doi: 10.3390/ijms22147532

PAR2-induced tissue factor synthesis by primary cultures of human kidney tubular epithelial cells is modified by glucose availability

2021

Journal Article

PAR2 activation on human kidney tubular epithelial cells induces tissue factor synthesis, that enhances blood clotting

Iyer, Abishek, Humphries, Tyrone L. R., Owens, Evan P., Zhao, Kong-Nan, Masci, Paul P., Johnson, David W., Nikolic-Paterson, David, Gobe, Glenda C., Fairlie, David P. and Vesey, David A. (2021). PAR2 activation on human kidney tubular epithelial cells induces tissue factor synthesis, that enhances blood clotting. Frontiers in Physiology, 12 615428, 615428. doi: 10.3389/fphys.2021.615428

PAR2 activation on human kidney tubular epithelial cells induces tissue factor synthesis, that enhances blood clotting

2021

Journal Article

Progress curve analysis of microtitre plate plasma clotting assays. Assessment of tissue factor levels

Humphries, Tyrone L.R., Johnson, Lambro A., Masci, Paul P., Gobe, Glenda C. and Vesey, David A. (2021). Progress curve analysis of microtitre plate plasma clotting assays. Assessment of tissue factor levels. Analytical Biochemistry, 614 114060, 114060. doi: 10.1016/j.ab.2020.114060

Progress curve analysis of microtitre plate plasma clotting assays. Assessment of tissue factor levels

2020

Journal Article

Development of a biomarker panel to distinguish risk of progressive chronic kidney disease

Owens, Evan, Tan, Ken-Soon, Ellis, Robert, Del Vecchio, Sharon, Humphries, Tyrone, Lennan, Erica, Vesey, David, Healy, Helen, Hoy, Wendy and Gobe, Glenda (2020). Development of a biomarker panel to distinguish risk of progressive chronic kidney disease. Biomedicines, 8 (12) 606, 606-16. doi: 10.3390/biomedicines8120606

Development of a biomarker panel to distinguish risk of progressive chronic kidney disease

2020

Conference Publication

Biomarkers that predict progression of chronic kidney disease more accurately than established clinical parameters

Owens, E., Hoy, W., Tan, K., Lennan, E., Cameron, A., Humphries, T., Ellis, R., Healy, H. and Gobe, G. (2020). Biomarkers that predict progression of chronic kidney disease more accurately than established clinical parameters. Annual Scientific Meeting of the Australian and New Zealand Society of Nephrology (ANZSN), Online, 28 November - 2 December 2020. Richmond, VIC Australia: Wiley-Blackwell. doi: 10.1111/nep.13798

Biomarkers that predict progression of chronic kidney disease more accurately than established clinical parameters