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Dr Simon Apte
Dr

Simon Apte

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Overview

Background

Simon Apte is Chief Scientist in the Queensland Lung Transplant Service Research Laboratory at The Prince Charles Hospital. His research focuses on the mechanisms that drive progressive and fibrotic lung disease, particularly silicosis, interstitial lung disease, idiopathic pulmonary fibrosis and lung transplantation.

A major focus of his research is the biology of human alveolar macrophages—the resident immune cells of the distal lung—and how changes in macrophage state contribute to lung injury, fibrosis and repair. His group studies these cells directly from bronchoalveolar lavage, whole-lung lavage and explanted human lungs, using functional experiments together with single-cell and spatial transcriptomics, proteomics, lipidomics and other molecular approaches.

The program is supported by deeply characterised clinical cohorts, an extensive biobank of blood and respiratory samples, and access to explanted human lung tissue through lung transplantation. These resources allow molecular findings to be examined directly in human disease and linked with clinical, genetic and cellular data.

His research also includes telomere biology and cellular ageing, genetic susceptibility to lung disease, development of molecular biomarkers and therapeutic discovery. The overarching aim is to translate discoveries made directly in human lung disease into better diagnostic tools, biomarkers and treatments.

Availability

Dr Simon Apte is:
Available for supervision

Qualifications

  • Bachelor (Honours) of Science (Advanced), The University of Queensland
  • Doctor of Philosophy, The University of Queensland

Research impacts

Simon’s research is focused on translating discoveries made directly in patients with serious lung disease into new treatments, diagnostic tests and approaches for monitoring disease.

A major area of impact has been silicosis associated with engineered-stone exposure. His research has been closely integrated with the clinical evaluation of whole-lung lavage as a treatment for silicosis, creating a rare translational platform in which a therapeutic intervention can be studied alongside clinical outcomes and biological material obtained directly from the distal lung. Samples generated through this program have supported a substantial biobank and enabled development of methods to quantify respirable crystalline silica within lung cells, investigate mechanisms of disease progression and identify potential markers of treatment response.

Whole-lung lavage and bronchoalveolar lavage have also provided access to large numbers of primary human alveolar macrophages, which have become a central experimental platform for the laboratory. These cells are used to define disease-associated macrophage states, investigate mechanisms of pulmonary fibrosis and screen potential therapies in a physiologically relevant human system rather than relying solely on conventional cell lines or animal models. Access to explanted human lungs through lung transplantation, together with matched blood, lavage and clinical data, further enables molecular discoveries to be validated directly in diseased human tissue and provides opportunities for ex vivo therapeutic testing.

The group is also translating molecular discoveries into new diagnostic technologies. This includes development of long-read telomere sequencing for assessment of telomere length and critically short telomeres in pulmonary fibrosis and other lung diseases, with the goal of establishing clinically useful testing for patients in whom telomere dysfunction may influence diagnosis, prognosis or treatment.

A further program is developing Particles in Exhaled Air (PExA) as a minimally invasive means of sampling the distal lung. By combining PExA with proteomic and lipidomic technologies, the group aims to develop biomarkers of lung ageing, silicosis, interstitial lung disease and transplantation, and ultimately to provide methods for monitoring disease and treatment response without invasive bronchoscopy.

Simon’s translational research also extends to chronic respiratory infection and antibody-mediated disease. He is part of an NHMRC Ideas-funded program investigating “cloaking antibodies” in Pseudomonas aeruginosa infection — harmful antibody responses that can interfere with protective immunity and promote persistence of infection. The work aims to identify the B-cell populations and immune mechanisms responsible and to develop strategies that selectively remove or modify harmful antibody responses while preserving protective immunity. This represents a potential new therapeutic approach for chronic Pseudomonas infection in diseases such as cystic fibrosis and bronchiectasis.

Across these programs, the common strategy is to combine access to unique human lung samples with advanced molecular technologies and functional experimentation, then move promising findings toward new treatments, clinically useful biomarkers and diagnostic tests.

Works

Search Professor Simon Apte’s works on UQ eSpace

54 works between 2007 and 2026

21 - 40 of 54 works

2020

Journal Article

Chimeric Virus-Like Particles and Capsomeres Induce Similar CD8+ T Cell Responses but Differ in Capacity to Induce CD4+ T Cell Responses and Antibody Responses

Pattinson, David J., Apte, Simon H., Wibowo, Nani, Rivera-Hernandez, Tania, Groves, Penny L., Middelberg, Anton P. J. and Doolan, Denise L. (2020). Chimeric Virus-Like Particles and Capsomeres Induce Similar CD8+ T Cell Responses but Differ in Capacity to Induce CD4+ T Cell Responses and Antibody Responses. Frontiers in Immunology, 11 564627, 1-13. doi: 10.3389/fimmu.2020.564627

Chimeric Virus-Like Particles and Capsomeres Induce Similar CD8+ T Cell Responses but Differ in Capacity to Induce CD4+ T Cell Responses and Antibody Responses

2020

Journal Article

Pulmonary alveolar proteinosis after lung transplantation

Divithotawela, Chandima, Apte, Simon H., Tan, Maxine E., De Silva, Tharushi A. and Chambers, Daniel C. (2020). Pulmonary alveolar proteinosis after lung transplantation. Respirology Case Reports, 8 (5) e00566, e00566. doi: 10.1002/rcr2.566

Pulmonary alveolar proteinosis after lung transplantation

2020

Journal Article

Successful treatment of telomeropathy‐related interstitial lung disease with immunosuppression and danazol

Chambers, Daniel C., Lutzky, Viviana P., Apte, Simon H., Godbolt, David, Feenstra, John and Mackintosh, John (2020). Successful treatment of telomeropathy‐related interstitial lung disease with immunosuppression and danazol. Respirology Case Reports, 8 (6) e00607, 1-3. doi: 10.1002/rcr2.607

Successful treatment of telomeropathy‐related interstitial lung disease with immunosuppression and danazol

2020

Journal Article

A population of CD4hi CD38hi T cells correlates with disease severity in patients with acute malaria

Apte, Simon H, Minigo, Gabriela, Groves, Penny L, Spargo, Jessie C, Plebanski, Magdalena, Grigg, Matthew J, Kenangalem, Enny, Burel, Julie G, Loughland, Jessica R, Flanagan, Katie L, Piera, Kim A, William, Timothy, Price, Ric N, Woodberry, Tonia, Barber, Bridget E, Anstey, Nicholas M and Doolan, Denise L (2020). A population of CD4hi CD38hi T cells correlates with disease severity in patients with acute malaria. Clinical and Translational Immunology, 9 (11) e1209, 1-18. doi: 10.1002/cti2.1209

A population of CD4hi CD38hi T cells correlates with disease severity in patients with acute malaria

2019

Journal Article

SMG1 heterozygosity exacerbates haematopoietic cancer development in Atm null mice by increasing persistent DNA damage and oxidative stress

Ho, Uda, Luff, John, James, Alexander, Lee, Cheok Soon, Quek, Hazel, Lai, Hui-Chi, Apte, Simon, Lim, Yi Chieh, Lavin, Martin F. and Roberts, Tara L. (2019). SMG1 heterozygosity exacerbates haematopoietic cancer development in Atm null mice by increasing persistent DNA damage and oxidative stress. Journal of Cellular and Molecular Medicine, 23 (12) jcmm.14685, 8151-8160. doi: 10.1111/jcmm.14685

SMG1 heterozygosity exacerbates haematopoietic cancer development in Atm null mice by increasing persistent DNA damage and oxidative stress

2019

Journal Article

Chimeric Murine Polyomavirus Virus-Like Particles Induce Plasmodium Antigen-Specific CD8(+) T Cell and Antibody Responses

Pattinson, David J., Apte, Simon H., Wibowo, Nani, Chuan, Yap P., Rivera-Hernandez, Tania, Groves, Penny L., Lua, Linda H., Middelberg, Anton P. J. and Doolan, Denise L. (2019). Chimeric Murine Polyomavirus Virus-Like Particles Induce Plasmodium Antigen-Specific CD8(+) T Cell and Antibody Responses. Frontiers in Cellular and Infection Microbiology, 9 (JUN) 215, 215. doi: 10.3389/fcimb.2019.00215

Chimeric Murine Polyomavirus Virus-Like Particles Induce Plasmodium Antigen-Specific CD8(+) T Cell and Antibody Responses

2018

Journal Article

Defined Small Molecules Produced by Himalayan Medicinal Plants Display Immunomodulatory Properties

Wangchuk, Phurpa, Apte, Simon H., Smout, Michael J., Groves, Penny L., Loukas, Alex and Doolan, Denise L. (2018). Defined Small Molecules Produced by Himalayan Medicinal Plants Display Immunomodulatory Properties. International journal of molecular sciences, 19 (11) 3490, 3490. doi: 10.3390/ijms19113490

Defined Small Molecules Produced by Himalayan Medicinal Plants Display Immunomodulatory Properties

2018

Journal Article

The influence of physicochemical properties of lipopeptide adjuvants on immune response: a rationale for engineering a potent vaccine

Eskandari, Sharareh, Pattinson, David, Stephenson, Rachel J., Groves, Penny L., Apte, Simon H., Sedaghat, Bita, Chandurudu, Saranya, Doolan, Denise L. and Toth, Istvan (2018). The influence of physicochemical properties of lipopeptide adjuvants on immune response: a rationale for engineering a potent vaccine. Chemistry: A European Journal, 24 (39), 9892-9902. doi: 10.1002/chem.201801378

The influence of physicochemical properties of lipopeptide adjuvants on immune response: a rationale for engineering a potent vaccine

2017

Journal Article

Novel Plasmodium antigens identified via genome-based antibody screen induce protection associated with polyfunctional T cell responses

Schussek, Sophie, Trieu, Angela, Apte, Simon H., Sidney, John, Sette, Alessandro and Doolan, Denise L. (2017). Novel Plasmodium antigens identified via genome-based antibody screen induce protection associated with polyfunctional T cell responses. Scientific reports, 7 (1) 15053, 1-18. doi: 10.1038/s41598-017-15354-0

Novel Plasmodium antigens identified via genome-based antibody screen induce protection associated with polyfunctional T cell responses

2017

Conference Publication

REDUCED <i>PLASMODIUM</i> BURDEN IN HUMANS ASSOCIATES WITH CD38<sub>+</sub> CD4<sub>+</sub> T CELLS DISPLAYING CYTOLYTIC POTENTIAL

Burel, Julie G., Apte, Simon H., Groves, Penny L., Klein, Kere, McCarthy, James S. and Doolan, Denise (2017). REDUCED PLASMODIUM BURDEN IN HUMANS ASSOCIATES WITH CD38+ CD4+ T CELLS DISPLAYING CYTOLYTIC POTENTIAL. 65th Annual Meeting of the American-Society-of-Tropical-Medicine-and-Hygiene (ASTMH), Atlanta Ga, Nov 13-16, 2016. MCLEAN: AMER SOC TROP MED & HYGIENE.

REDUCED <i>PLASMODIUM</i> BURDEN IN HUMANS ASSOCIATES WITH CD38<sub>+</sub> CD4<sub>+</sub> T CELLS DISPLAYING CYTOLYTIC POTENTIAL

2017

Journal Article

Dichotomous miR expression and immune responses following primary blood-stage malaria

Burel, Julie G., Apte, Simon H., Groves, Penny L., Boyle, Michelle J., Langer, Christine, Beeson, James G., McCarthy, James S. and Doolan, Denise L. (2017). Dichotomous miR expression and immune responses following primary blood-stage malaria. JCI Insight, 2 (15) e93434. doi: 10.1172/jci.insight.93434

Dichotomous miR expression and immune responses following primary blood-stage malaria

2017

Journal Article

Polyfunctional and IFN- monofunctional human CD4 T cell populations are molecularly distinct

Burel, Julie G., Apte, Simon H., Groves, Penny L., McCarthy, James S. and Doolan, Denise L. (2017). Polyfunctional and IFN- monofunctional human CD4 T cell populations are molecularly distinct. JCI Insight, 2 (3) e87499, e87499. doi: 10.1172/jci.insight.87499

Polyfunctional and IFN- monofunctional human CD4 T cell populations are molecularly distinct

2016

Journal Article

Plasmodium vivax but not Plasmodium falciparum blood-stage infection in humans is associated with the expansion of a CD8+T cell population with cytotoxic potential

Burel, Julie G., Apte, Simon H., McCarthy, James S. and Doolan, Denise L. (2016). Plasmodium vivax but not Plasmodium falciparum blood-stage infection in humans is associated with the expansion of a CD8+T cell population with cytotoxic potential. PLoS Neglected Tropical Diseases, 10 (12) e0005031, e0005031. doi: 10.1371/journal.pntd.0005031

Plasmodium vivax but not Plasmodium falciparum blood-stage infection in humans is associated with the expansion of a CD8+T cell population with cytotoxic potential

2016

Journal Article

Reduced Plasmodium parasite burden associates with CD38+ CD4+ T cells displaying cytolytic potential and impaired IFN-γ production

Burel, Julie G., Apte, Simon H., Groves, Penny L., Klein, Kerenaftali, McCarthy, James S. and Doolan, Denise L. (2016). Reduced Plasmodium parasite burden associates with CD38+ CD4+ T cells displaying cytolytic potential and impaired IFN-γ production. PLoS Pathogens, 12 (9) e1005839, e1005839. doi: 10.1371/journal.ppat.1005839

Reduced Plasmodium parasite burden associates with CD38+ CD4+ T cells displaying cytolytic potential and impaired IFN-γ production

2016

Journal Article

Quantitative assessment of the functional plasticity of memory CD8+ T cells

Baz, Adriana, Groves, Penny, Buttigieg, Kathy, Apte, Simon H., Kienzle, Norbert and Kelso, Anne (2016). Quantitative assessment of the functional plasticity of memory CD8+ T cells. European Journal of Immunology, 46 (4), 863-873. doi: 10.1002/eji.201545726

Quantitative assessment of the functional plasticity of memory CD8+ T cells

2016

Journal Article

Synthesis of mannosylated lipopeptides with receptor targeting properties

Sedaghat, Bita, Stephenson, Rachel J., Giddam, Ashwini Kumar, Eskandari, Sharareh, Apte, Simon H., Pattinson, David J., Doolan, Denise L. and Toth, Istvan (2016). Synthesis of mannosylated lipopeptides with receptor targeting properties. Bioconjugate Chemistry, 27 (3), 533-548. doi: 10.1021/acs.bioconjchem.5b00547

Synthesis of mannosylated lipopeptides with receptor targeting properties

2016

Journal Article

Systems approaches towards molecular profiling of human immunity

Burel, Julie G., Apte, Simon H. and Doolan, Denise L. (2016). Systems approaches towards molecular profiling of human immunity. Trends in Immunology, 37 (1), 53-67. doi: 10.1016/j.it.2015.11.006

Systems approaches towards molecular profiling of human immunity

2016

Journal Article

Systematic evaluation of self-adjuvanting lipopeptide nano-vaccine platforms for the induction of potent CD8+ T-cell responses

Apte, Simon H., Stephenson, Rachel J., Simerska, Pavla, Groves, Penny L., Aljohani, Salwa, Eskandari, Sharareh, Toth, Istvan and Doolan, Denise L. (2016). Systematic evaluation of self-adjuvanting lipopeptide nano-vaccine platforms for the induction of potent CD8+ T-cell responses. Nanomedicine, 11 (2), 137-152. doi: 10.2217/nnm.15.184

Systematic evaluation of self-adjuvanting lipopeptide nano-vaccine platforms for the induction of potent CD8+ T-cell responses

2015

Journal Article

Synthesis and characterisation of self-assembled and self-adjuvanting asymmetric multi-epitope lipopeptides of ovalbumin

Eskandari, Sharareh, Stephenson, Rachel J., Fuaad, Abdullah Ahmad, Apte, Simon H., Doolan, Denise L. and Toth, Istvan (2015). Synthesis and characterisation of self-assembled and self-adjuvanting asymmetric multi-epitope lipopeptides of ovalbumin. Chemistry - A European Journal, 21 (3), 1251-1261. doi: 10.1002/chem.201404997

Synthesis and characterisation of self-assembled and self-adjuvanting asymmetric multi-epitope lipopeptides of ovalbumin

2015

Journal Article

Development of a cytokine-secreting-based assay for the identification, sorting and transcriptomic analysis of polyfunctional human T cells

Burel, Julie G., Apte, Simon H. and Doolan, Denise L. (2015). Development of a cytokine-secreting-based assay for the identification, sorting and transcriptomic analysis of polyfunctional human T cells. European Cytokine Network, 26 (4), 67-72. doi: 10.1684/ecn.2015.0369

Development of a cytokine-secreting-based assay for the identification, sorting and transcriptomic analysis of polyfunctional human T cells

Funding

Current funding

  • 2026 - 2029
    Treatment of Pseudomonas aeruginosa by thwarting antibody-dependent enhancement of disease
    NHMRC IDEAS Grants
    Open grant

Past funding

  • 2024
    Oxidised cholesterols as key mediators of fibrotic lung disease (TPCH grant led by Metro North)
    Prince Charles Hospital Foundation
    Open grant
  • 2021 - 2024
    Impact and treatment of cloaking antibodies in Cystic Fibrosis
    Cystic Fibrosis Foundation USA
    Open grant
  • 2021 - 2025
    Silicosis - Harnessing new ideas to conquer the re-emergence of an ancient lung disease - The SHIELD Study
    NHMRC MRFF EPCDR Silicosis Research
    Open grant
  • 2012 - 2014
    ResTeach Funding 2012 0.1 FTE School of Medicine
    UQ ResTeach
    Open grant

Supervision

Availability

Dr Simon Apte is:
Available for supervision

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Media

Enquiries

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